Deep Oil Spills : Facts, Fate, and Effects
Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservo...
Ausführliche Beschreibung
Autor*in: |
Murawski, Steven A. [herausgeberIn] Ainsworth, Cameron H. [herausgeberIn] Gilbert, Sherryl [herausgeberIn] Hollander, David J [herausgeberIn] Paris, Claire B [herausgeberIn] Schlüter, Michael [herausgeberIn] Wetzel, Dana L. [herausgeberIn] |
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Format: |
E-Book |
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Sprache: |
Englisch |
Erschienen: |
Cham: Springer ; 2020 |
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Ausgabe: |
1st ed. 2020 |
Schlagwörter: |
Ölunfall / Gewässersanierung / Bodensanierung / Ölpest / Tiefsee / Deepwater Horizon |
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Schlagwörter: | |
Formangabe: |
Aufsatzsammlung |
Umfang: |
1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color) |
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Reihe: |
Springer eBooks ; Earth and Environmental Science Springer eBook Collection |
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Links: | |
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ISBN: |
978-3-030-11605-7 |
DOI / URN: |
10.1007/978-3-030-11605-7 |
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Katalog-ID: |
1668645637 |
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245 | 1 | 0 | |a Deep Oil Spills |b Facts, Fate, and Effects |c edited by Steven A. Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel |
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520 | |a Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index | ||
520 | |a Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. | ||
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9783030116057 978-3-030-11605-7 10.1007/978-3-030-11605-7 doi (DE-627)1668645637 (DE-599)KEP044415850 (DE-He213)978-3-030-11605-7 (EBP)044415850 DE-627 ger DE-627 rda eng XA-DE QH541.5.S3 QH541.5.F7 RBKF thema RBKF bicssc SCI039000 bisacsh 58.52 bkl Deep Oil Spills Facts, Fate, and Effects edited by Steven A. Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel 1st ed. 2020 Cham Springer 2020 1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Springer eBooks Earth and Environmental Science Springer eBook Collection Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. Aquatic biology Marine & Freshwater Sciences Marine Sciences Environmental chemistry Environmental management Biotechnology Aquatic ecology . Freshwater. Water quality. Environmental engineering. Water pollution. Aufsatzsammlung (DE-588)4143413-4 (DE-627)105605727 (DE-576)209726091 gnd-content s (DE-588)4139780-0 (DE-627)105632848 (DE-576)20969727X Ölunfall gnd s (DE-588)4201602-2 (DE-627)105164720 (DE-576)210143053 Gewässersanierung gnd s (DE-588)4137352-2 (DE-627)104219599 (DE-576)209676906 Bodensanierung gnd s (DE-588)4129524-9 (DE-627)104451246 (DE-576)209611235 Ölpest gnd s (DE-588)4185436-6 (DE-627)105287172 (DE-576)210032421 Tiefsee gnd g (DE-588)1237648599 (DE-627)1764376455 (DE-576)343640708 Deepwater Horizon gnd (DE-627) Murawski, Steven A. herausgeberin edt Ainsworth, Cameron H. herausgeberin edt Gilbert, Sherryl herausgeberin edt Hollander, David J herausgeberin edt Paris, Claire B herausgeberin edt Schlüter, Michael herausgeberin edt Wetzel, Dana L. herausgeberin edt 9783030116040 Erscheint auch als Druck-Ausgabe 978-3-030-11604-0 https://doi.org/10.1007/978-3-030-11605-7 X:SPRINGER Resolving-System lizenzpflichtig https://swbplus.bsz-bw.de/bsz1668645637cov.jpg V:DE-576 X:SPRINGER image/jpeg 20190712131940 Cover https://link.springer.com/book/10.1007/978-3-030-11605-7 application Inhaltsbeschreibung ZDB-2-EES 2020 ZDB-2-SEB ZDB-2-SXEE 2020 GBV_ILN_22 ISIL_DE-18 SYSFLAG_1 GBV_KXP SSG-OLC-PHA GBV_ILN_23 ISIL_DE-830 GBV_ILN_31 ISIL_DE-27 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_120 ISIL_DE-715 GBV_ILN_130 ISIL_DE-700 GBV_ILN_285 ISIL_DE-517 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_381 ISIL_DE-Ki130 GBV_ILN_2014 ISIL_DE-90 GBV_ILN_2015 ISIL_DE-93 GBV_ILN_2017 ISIL_DE-576 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2148 ISIL_DE-950 58.52 Technischer Bodenschutz technischer Gewässerschutz (DE-627)106420747 BO 045F 551.4 22 01 0018 3736700660 00 --%%-- --%%-- s --%%-- Olr-seb-ees Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. zu 08-08-20 23 01 0830 3688520467 00 --%%-- --%%-- s --%%-- olr-springer i z 19-06-20 31 01 0027 357427209X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden. z 11-01-20 40 01 0007 3828246508 OLR-SPRINGER-EES-2020 nl xsn 22-12-20 60 01 0705 3563475938 00 --%%-- --%%-- s --%%-- SpringerLink Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 11-12-19 65 01 0003 3543835696 03 --%%-- ebook --%%-- --%%-- OLR-SEB-ZDB-2-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. k3o 21-11-19 110 01 3110 3525193602 00 --%%-- --%%-- s --%%-- OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 19-10-19 120 01 0715 3577376279 00 --%%-- --%%-- g --%%-- alma z 21-01-20 130 01 0700 3610424931 OLR-SEB Vervielfältigungen (z. B. Kopien, Downloads) nur für den eigenen wissenschaftlichen Gebrauch. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 18-03-20 285 01 0517 3589309458 00 --%%-- --%%-- s --%%-- OLR-ESP-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 07-02-20 370 01 4370 3572511615 olr-springer Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 05-01-20 381 01 4381 358907583X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 07-02-20 2014 01 DE-90 3566464805 00 --%%-- --%%-- --%%-- kp l01 18-12-19 2014 02 DE-90 3566464813 00 --%%-- --%%-- --%%-- kp l02 18-12-19 2015 01 DE-93 3584114799 00 --%%-- --%%-- p --%%-- Campuslizenz l01 31-01-20 2017 01 DE-576 3491038804 00 --%%-- --%%-- --%%-- n Besitznachweis BSZ nur für Dateneinspielung, keine echte Lizenz vorhanden l01 04-07-19 2027 01 DE-105 3564747885 00 --%%-- --%%-- --%%-- n Campuslizenz l01 13-12-19 2148 01 DE-950 3567761234 00 --%%-- eBook Springer --%%-- kp Elektronischer Volltext - Campuslizenz l01 20-12-19 22 01 0018 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 22 01 0018 Nur für Angehörige der Universität Hamburg: Volltextzugang von außerhalb des Campus http://emedien.sub.uni-hamburg.de/han/SpringerEbooks/doi.org/10.1007/978-3-030-11605-7 23 01 0830 Springer EBook https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 e-book Springer https://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Campuszugriff http://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Externer Zugriff http://han.sub.uni-goettingen.de/han/Springer-eBook-EarthEnvironmentalScience/doi.org/10.1007/978-3-030-11605-7 60 01 0705 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 65 01 0003 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 110 01 3110 https://doi.org/10.1007/978-3-030-11605-7 120 01 0715 http://49gbv-uob-primo.hosted.exlibrisgroup.com/openurl/49GBV_UOB/UOB_services_page?u.ignore_date_coverage=true&rft.mms_id=991014961547903501 130 01 0700 https://doi.org/10.1007/978-3-030-11605-7 285 01 0517 E-books (Springer) https://doi.org/10.1007/978-3-030-11605-7 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://doi.org/10.1007/978-3-030-11605-7 381 01 4381 Zugriff nur für GEOMAR-Mitarbeiter / Access for GEOMAR employees only https://doi.org/10.1007/978-3-030-11605-7 2014 01 DE-90 Zugang im Netz des KIT https://doi.org/10.1007/978-3-030-11605-7 2014 02 DE-90 Zugang im Netz der HKA https://doi.org/10.1007/978-3-030-11605-7 2015 01 DE-93 https://doi.org/10.1007/978-3-030-11605-7 2148 01 DE-950 https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 00 e-book Paket Springer, Earth & environmental sciences 2027 01 DE-105 00 s ebook 23 01 0830 2019-01927, 2019-01928, 2019-01929, 2019-02052, 2019-02053, 2019-02054, 2019-02055, 2019-02056, 2019-02059 22 01 0018 Olr-seb-ees 23 01 0830 olr-springer 31 01 0027 OLR-SEB 40 01 0007 OLR-SPRINGER-EES-2020 60 01 0705 SpringerLink 65 01 0003 OLR-SEB-ZDB-2-EES 110 01 3110 OLR-SEB 120 01 0715 alma 130 01 0700 OLR-SEB 285 01 0517 OLR-ESP-EES 370 01 4370 olr-springer 381 01 4381 OLR-SEB 23 01 0830 2020.06.19 |
spelling |
9783030116057 978-3-030-11605-7 10.1007/978-3-030-11605-7 doi (DE-627)1668645637 (DE-599)KEP044415850 (DE-He213)978-3-030-11605-7 (EBP)044415850 DE-627 ger DE-627 rda eng XA-DE QH541.5.S3 QH541.5.F7 RBKF thema RBKF bicssc SCI039000 bisacsh 58.52 bkl Deep Oil Spills Facts, Fate, and Effects edited by Steven A. Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel 1st ed. 2020 Cham Springer 2020 1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Springer eBooks Earth and Environmental Science Springer eBook Collection Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. Aquatic biology Marine & Freshwater Sciences Marine Sciences Environmental chemistry Environmental management Biotechnology Aquatic ecology . Freshwater. Water quality. Environmental engineering. Water pollution. Aufsatzsammlung (DE-588)4143413-4 (DE-627)105605727 (DE-576)209726091 gnd-content s (DE-588)4139780-0 (DE-627)105632848 (DE-576)20969727X Ölunfall gnd s (DE-588)4201602-2 (DE-627)105164720 (DE-576)210143053 Gewässersanierung gnd s (DE-588)4137352-2 (DE-627)104219599 (DE-576)209676906 Bodensanierung gnd s (DE-588)4129524-9 (DE-627)104451246 (DE-576)209611235 Ölpest gnd s (DE-588)4185436-6 (DE-627)105287172 (DE-576)210032421 Tiefsee gnd g (DE-588)1237648599 (DE-627)1764376455 (DE-576)343640708 Deepwater Horizon gnd (DE-627) Murawski, Steven A. herausgeberin edt Ainsworth, Cameron H. herausgeberin edt Gilbert, Sherryl herausgeberin edt Hollander, David J herausgeberin edt Paris, Claire B herausgeberin edt Schlüter, Michael herausgeberin edt Wetzel, Dana L. herausgeberin edt 9783030116040 Erscheint auch als Druck-Ausgabe 978-3-030-11604-0 https://doi.org/10.1007/978-3-030-11605-7 X:SPRINGER Resolving-System lizenzpflichtig https://swbplus.bsz-bw.de/bsz1668645637cov.jpg V:DE-576 X:SPRINGER image/jpeg 20190712131940 Cover https://link.springer.com/book/10.1007/978-3-030-11605-7 application Inhaltsbeschreibung ZDB-2-EES 2020 ZDB-2-SEB ZDB-2-SXEE 2020 GBV_ILN_22 ISIL_DE-18 SYSFLAG_1 GBV_KXP SSG-OLC-PHA GBV_ILN_23 ISIL_DE-830 GBV_ILN_31 ISIL_DE-27 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_120 ISIL_DE-715 GBV_ILN_130 ISIL_DE-700 GBV_ILN_285 ISIL_DE-517 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_381 ISIL_DE-Ki130 GBV_ILN_2014 ISIL_DE-90 GBV_ILN_2015 ISIL_DE-93 GBV_ILN_2017 ISIL_DE-576 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2148 ISIL_DE-950 58.52 Technischer Bodenschutz technischer Gewässerschutz (DE-627)106420747 BO 045F 551.4 22 01 0018 3736700660 00 --%%-- --%%-- s --%%-- Olr-seb-ees Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. zu 08-08-20 23 01 0830 3688520467 00 --%%-- --%%-- s --%%-- olr-springer i z 19-06-20 31 01 0027 357427209X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden. z 11-01-20 40 01 0007 3828246508 OLR-SPRINGER-EES-2020 nl xsn 22-12-20 60 01 0705 3563475938 00 --%%-- --%%-- s --%%-- SpringerLink Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 11-12-19 65 01 0003 3543835696 03 --%%-- ebook --%%-- --%%-- OLR-SEB-ZDB-2-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. k3o 21-11-19 110 01 3110 3525193602 00 --%%-- --%%-- s --%%-- OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 19-10-19 120 01 0715 3577376279 00 --%%-- --%%-- g --%%-- alma z 21-01-20 130 01 0700 3610424931 OLR-SEB Vervielfältigungen (z. B. Kopien, Downloads) nur für den eigenen wissenschaftlichen Gebrauch. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 18-03-20 285 01 0517 3589309458 00 --%%-- --%%-- s --%%-- OLR-ESP-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 07-02-20 370 01 4370 3572511615 olr-springer Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 05-01-20 381 01 4381 358907583X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 07-02-20 2014 01 DE-90 3566464805 00 --%%-- --%%-- --%%-- kp l01 18-12-19 2014 02 DE-90 3566464813 00 --%%-- --%%-- --%%-- kp l02 18-12-19 2015 01 DE-93 3584114799 00 --%%-- --%%-- p --%%-- Campuslizenz l01 31-01-20 2017 01 DE-576 3491038804 00 --%%-- --%%-- --%%-- n Besitznachweis BSZ nur für Dateneinspielung, keine echte Lizenz vorhanden l01 04-07-19 2027 01 DE-105 3564747885 00 --%%-- --%%-- --%%-- n Campuslizenz l01 13-12-19 2148 01 DE-950 3567761234 00 --%%-- eBook Springer --%%-- kp Elektronischer Volltext - Campuslizenz l01 20-12-19 22 01 0018 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 22 01 0018 Nur für Angehörige der Universität Hamburg: Volltextzugang von außerhalb des Campus http://emedien.sub.uni-hamburg.de/han/SpringerEbooks/doi.org/10.1007/978-3-030-11605-7 23 01 0830 Springer EBook https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 e-book Springer https://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Campuszugriff http://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Externer Zugriff http://han.sub.uni-goettingen.de/han/Springer-eBook-EarthEnvironmentalScience/doi.org/10.1007/978-3-030-11605-7 60 01 0705 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 65 01 0003 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 110 01 3110 https://doi.org/10.1007/978-3-030-11605-7 120 01 0715 http://49gbv-uob-primo.hosted.exlibrisgroup.com/openurl/49GBV_UOB/UOB_services_page?u.ignore_date_coverage=true&rft.mms_id=991014961547903501 130 01 0700 https://doi.org/10.1007/978-3-030-11605-7 285 01 0517 E-books (Springer) https://doi.org/10.1007/978-3-030-11605-7 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://doi.org/10.1007/978-3-030-11605-7 381 01 4381 Zugriff nur für GEOMAR-Mitarbeiter / Access for GEOMAR employees only https://doi.org/10.1007/978-3-030-11605-7 2014 01 DE-90 Zugang im Netz des KIT https://doi.org/10.1007/978-3-030-11605-7 2014 02 DE-90 Zugang im Netz der HKA https://doi.org/10.1007/978-3-030-11605-7 2015 01 DE-93 https://doi.org/10.1007/978-3-030-11605-7 2148 01 DE-950 https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 00 e-book Paket Springer, Earth & environmental sciences 2027 01 DE-105 00 s ebook 23 01 0830 2019-01927, 2019-01928, 2019-01929, 2019-02052, 2019-02053, 2019-02054, 2019-02055, 2019-02056, 2019-02059 22 01 0018 Olr-seb-ees 23 01 0830 olr-springer 31 01 0027 OLR-SEB 40 01 0007 OLR-SPRINGER-EES-2020 60 01 0705 SpringerLink 65 01 0003 OLR-SEB-ZDB-2-EES 110 01 3110 OLR-SEB 120 01 0715 alma 130 01 0700 OLR-SEB 285 01 0517 OLR-ESP-EES 370 01 4370 olr-springer 381 01 4381 OLR-SEB 23 01 0830 2020.06.19 |
allfields_unstemmed |
9783030116057 978-3-030-11605-7 10.1007/978-3-030-11605-7 doi (DE-627)1668645637 (DE-599)KEP044415850 (DE-He213)978-3-030-11605-7 (EBP)044415850 DE-627 ger DE-627 rda eng XA-DE QH541.5.S3 QH541.5.F7 RBKF thema RBKF bicssc SCI039000 bisacsh 58.52 bkl Deep Oil Spills Facts, Fate, and Effects edited by Steven A. Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel 1st ed. 2020 Cham Springer 2020 1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Springer eBooks Earth and Environmental Science Springer eBook Collection Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. Aquatic biology Marine & Freshwater Sciences Marine Sciences Environmental chemistry Environmental management Biotechnology Aquatic ecology . Freshwater. Water quality. Environmental engineering. Water pollution. Aufsatzsammlung (DE-588)4143413-4 (DE-627)105605727 (DE-576)209726091 gnd-content s (DE-588)4139780-0 (DE-627)105632848 (DE-576)20969727X Ölunfall gnd s (DE-588)4201602-2 (DE-627)105164720 (DE-576)210143053 Gewässersanierung gnd s (DE-588)4137352-2 (DE-627)104219599 (DE-576)209676906 Bodensanierung gnd s (DE-588)4129524-9 (DE-627)104451246 (DE-576)209611235 Ölpest gnd s (DE-588)4185436-6 (DE-627)105287172 (DE-576)210032421 Tiefsee gnd g (DE-588)1237648599 (DE-627)1764376455 (DE-576)343640708 Deepwater Horizon gnd (DE-627) Murawski, Steven A. herausgeberin edt Ainsworth, Cameron H. herausgeberin edt Gilbert, Sherryl herausgeberin edt Hollander, David J herausgeberin edt Paris, Claire B herausgeberin edt Schlüter, Michael herausgeberin edt Wetzel, Dana L. herausgeberin edt 9783030116040 Erscheint auch als Druck-Ausgabe 978-3-030-11604-0 https://doi.org/10.1007/978-3-030-11605-7 X:SPRINGER Resolving-System lizenzpflichtig https://swbplus.bsz-bw.de/bsz1668645637cov.jpg V:DE-576 X:SPRINGER image/jpeg 20190712131940 Cover https://link.springer.com/book/10.1007/978-3-030-11605-7 application Inhaltsbeschreibung ZDB-2-EES 2020 ZDB-2-SEB ZDB-2-SXEE 2020 GBV_ILN_22 ISIL_DE-18 SYSFLAG_1 GBV_KXP SSG-OLC-PHA GBV_ILN_23 ISIL_DE-830 GBV_ILN_31 ISIL_DE-27 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_120 ISIL_DE-715 GBV_ILN_130 ISIL_DE-700 GBV_ILN_285 ISIL_DE-517 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_381 ISIL_DE-Ki130 GBV_ILN_2014 ISIL_DE-90 GBV_ILN_2015 ISIL_DE-93 GBV_ILN_2017 ISIL_DE-576 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2148 ISIL_DE-950 58.52 Technischer Bodenschutz technischer Gewässerschutz (DE-627)106420747 BO 045F 551.4 22 01 0018 3736700660 00 --%%-- --%%-- s --%%-- Olr-seb-ees Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. zu 08-08-20 23 01 0830 3688520467 00 --%%-- --%%-- s --%%-- olr-springer i z 19-06-20 31 01 0027 357427209X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden. z 11-01-20 40 01 0007 3828246508 OLR-SPRINGER-EES-2020 nl xsn 22-12-20 60 01 0705 3563475938 00 --%%-- --%%-- s --%%-- SpringerLink Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 11-12-19 65 01 0003 3543835696 03 --%%-- ebook --%%-- --%%-- OLR-SEB-ZDB-2-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. k3o 21-11-19 110 01 3110 3525193602 00 --%%-- --%%-- s --%%-- OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 19-10-19 120 01 0715 3577376279 00 --%%-- --%%-- g --%%-- alma z 21-01-20 130 01 0700 3610424931 OLR-SEB Vervielfältigungen (z. B. Kopien, Downloads) nur für den eigenen wissenschaftlichen Gebrauch. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 18-03-20 285 01 0517 3589309458 00 --%%-- --%%-- s --%%-- OLR-ESP-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 07-02-20 370 01 4370 3572511615 olr-springer Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 05-01-20 381 01 4381 358907583X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 07-02-20 2014 01 DE-90 3566464805 00 --%%-- --%%-- --%%-- kp l01 18-12-19 2014 02 DE-90 3566464813 00 --%%-- --%%-- --%%-- kp l02 18-12-19 2015 01 DE-93 3584114799 00 --%%-- --%%-- p --%%-- Campuslizenz l01 31-01-20 2017 01 DE-576 3491038804 00 --%%-- --%%-- --%%-- n Besitznachweis BSZ nur für Dateneinspielung, keine echte Lizenz vorhanden l01 04-07-19 2027 01 DE-105 3564747885 00 --%%-- --%%-- --%%-- n Campuslizenz l01 13-12-19 2148 01 DE-950 3567761234 00 --%%-- eBook Springer --%%-- kp Elektronischer Volltext - Campuslizenz l01 20-12-19 22 01 0018 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 22 01 0018 Nur für Angehörige der Universität Hamburg: Volltextzugang von außerhalb des Campus http://emedien.sub.uni-hamburg.de/han/SpringerEbooks/doi.org/10.1007/978-3-030-11605-7 23 01 0830 Springer EBook https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 e-book Springer https://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Campuszugriff http://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Externer Zugriff http://han.sub.uni-goettingen.de/han/Springer-eBook-EarthEnvironmentalScience/doi.org/10.1007/978-3-030-11605-7 60 01 0705 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 65 01 0003 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 110 01 3110 https://doi.org/10.1007/978-3-030-11605-7 120 01 0715 http://49gbv-uob-primo.hosted.exlibrisgroup.com/openurl/49GBV_UOB/UOB_services_page?u.ignore_date_coverage=true&rft.mms_id=991014961547903501 130 01 0700 https://doi.org/10.1007/978-3-030-11605-7 285 01 0517 E-books (Springer) https://doi.org/10.1007/978-3-030-11605-7 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://doi.org/10.1007/978-3-030-11605-7 381 01 4381 Zugriff nur für GEOMAR-Mitarbeiter / Access for GEOMAR employees only https://doi.org/10.1007/978-3-030-11605-7 2014 01 DE-90 Zugang im Netz des KIT https://doi.org/10.1007/978-3-030-11605-7 2014 02 DE-90 Zugang im Netz der HKA https://doi.org/10.1007/978-3-030-11605-7 2015 01 DE-93 https://doi.org/10.1007/978-3-030-11605-7 2148 01 DE-950 https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 00 e-book Paket Springer, Earth & environmental sciences 2027 01 DE-105 00 s ebook 23 01 0830 2019-01927, 2019-01928, 2019-01929, 2019-02052, 2019-02053, 2019-02054, 2019-02055, 2019-02056, 2019-02059 22 01 0018 Olr-seb-ees 23 01 0830 olr-springer 31 01 0027 OLR-SEB 40 01 0007 OLR-SPRINGER-EES-2020 60 01 0705 SpringerLink 65 01 0003 OLR-SEB-ZDB-2-EES 110 01 3110 OLR-SEB 120 01 0715 alma 130 01 0700 OLR-SEB 285 01 0517 OLR-ESP-EES 370 01 4370 olr-springer 381 01 4381 OLR-SEB 23 01 0830 2020.06.19 |
allfieldsGer |
9783030116057 978-3-030-11605-7 10.1007/978-3-030-11605-7 doi (DE-627)1668645637 (DE-599)KEP044415850 (DE-He213)978-3-030-11605-7 (EBP)044415850 DE-627 ger DE-627 rda eng XA-DE QH541.5.S3 QH541.5.F7 RBKF thema RBKF bicssc SCI039000 bisacsh 58.52 bkl Deep Oil Spills Facts, Fate, and Effects edited by Steven A. Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel 1st ed. 2020 Cham Springer 2020 1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Springer eBooks Earth and Environmental Science Springer eBook Collection Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. Aquatic biology Marine & Freshwater Sciences Marine Sciences Environmental chemistry Environmental management Biotechnology Aquatic ecology . Freshwater. Water quality. Environmental engineering. Water pollution. Aufsatzsammlung (DE-588)4143413-4 (DE-627)105605727 (DE-576)209726091 gnd-content s (DE-588)4139780-0 (DE-627)105632848 (DE-576)20969727X Ölunfall gnd s (DE-588)4201602-2 (DE-627)105164720 (DE-576)210143053 Gewässersanierung gnd s (DE-588)4137352-2 (DE-627)104219599 (DE-576)209676906 Bodensanierung gnd s (DE-588)4129524-9 (DE-627)104451246 (DE-576)209611235 Ölpest gnd s (DE-588)4185436-6 (DE-627)105287172 (DE-576)210032421 Tiefsee gnd g (DE-588)1237648599 (DE-627)1764376455 (DE-576)343640708 Deepwater Horizon gnd (DE-627) Murawski, Steven A. herausgeberin edt Ainsworth, Cameron H. herausgeberin edt Gilbert, Sherryl herausgeberin edt Hollander, David J herausgeberin edt Paris, Claire B herausgeberin edt Schlüter, Michael herausgeberin edt Wetzel, Dana L. herausgeberin edt 9783030116040 Erscheint auch als Druck-Ausgabe 978-3-030-11604-0 https://doi.org/10.1007/978-3-030-11605-7 X:SPRINGER Resolving-System lizenzpflichtig https://swbplus.bsz-bw.de/bsz1668645637cov.jpg V:DE-576 X:SPRINGER image/jpeg 20190712131940 Cover https://link.springer.com/book/10.1007/978-3-030-11605-7 application Inhaltsbeschreibung ZDB-2-EES 2020 ZDB-2-SEB ZDB-2-SXEE 2020 GBV_ILN_22 ISIL_DE-18 SYSFLAG_1 GBV_KXP SSG-OLC-PHA GBV_ILN_23 ISIL_DE-830 GBV_ILN_31 ISIL_DE-27 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_120 ISIL_DE-715 GBV_ILN_130 ISIL_DE-700 GBV_ILN_285 ISIL_DE-517 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_381 ISIL_DE-Ki130 GBV_ILN_2014 ISIL_DE-90 GBV_ILN_2015 ISIL_DE-93 GBV_ILN_2017 ISIL_DE-576 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2148 ISIL_DE-950 58.52 Technischer Bodenschutz technischer Gewässerschutz (DE-627)106420747 BO 045F 551.4 22 01 0018 3736700660 00 --%%-- --%%-- s --%%-- Olr-seb-ees Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. zu 08-08-20 23 01 0830 3688520467 00 --%%-- --%%-- s --%%-- olr-springer i z 19-06-20 31 01 0027 357427209X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden. z 11-01-20 40 01 0007 3828246508 OLR-SPRINGER-EES-2020 nl xsn 22-12-20 60 01 0705 3563475938 00 --%%-- --%%-- s --%%-- SpringerLink Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 11-12-19 65 01 0003 3543835696 03 --%%-- ebook --%%-- --%%-- OLR-SEB-ZDB-2-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. k3o 21-11-19 110 01 3110 3525193602 00 --%%-- --%%-- s --%%-- OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 19-10-19 120 01 0715 3577376279 00 --%%-- --%%-- g --%%-- alma z 21-01-20 130 01 0700 3610424931 OLR-SEB Vervielfältigungen (z. B. Kopien, Downloads) nur für den eigenen wissenschaftlichen Gebrauch. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 18-03-20 285 01 0517 3589309458 00 --%%-- --%%-- s --%%-- OLR-ESP-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 07-02-20 370 01 4370 3572511615 olr-springer Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 05-01-20 381 01 4381 358907583X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 07-02-20 2014 01 DE-90 3566464805 00 --%%-- --%%-- --%%-- kp l01 18-12-19 2014 02 DE-90 3566464813 00 --%%-- --%%-- --%%-- kp l02 18-12-19 2015 01 DE-93 3584114799 00 --%%-- --%%-- p --%%-- Campuslizenz l01 31-01-20 2017 01 DE-576 3491038804 00 --%%-- --%%-- --%%-- n Besitznachweis BSZ nur für Dateneinspielung, keine echte Lizenz vorhanden l01 04-07-19 2027 01 DE-105 3564747885 00 --%%-- --%%-- --%%-- n Campuslizenz l01 13-12-19 2148 01 DE-950 3567761234 00 --%%-- eBook Springer --%%-- kp Elektronischer Volltext - Campuslizenz l01 20-12-19 22 01 0018 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 22 01 0018 Nur für Angehörige der Universität Hamburg: Volltextzugang von außerhalb des Campus http://emedien.sub.uni-hamburg.de/han/SpringerEbooks/doi.org/10.1007/978-3-030-11605-7 23 01 0830 Springer EBook https://doi.org/10.1007/978-3-030-11605-7 31 01 0027 e-book Springer https://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Campuszugriff http://doi.org/10.1007/978-3-030-11605-7 40 01 0007 Volltext, Externer Zugriff http://han.sub.uni-goettingen.de/han/Springer-eBook-EarthEnvironmentalScience/doi.org/10.1007/978-3-030-11605-7 60 01 0705 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 65 01 0003 Volltextzugang Campus https://doi.org/10.1007/978-3-030-11605-7 110 01 3110 https://doi.org/10.1007/978-3-030-11605-7 120 01 0715 http://49gbv-uob-primo.hosted.exlibrisgroup.com/openurl/49GBV_UOB/UOB_services_page?u.ignore_date_coverage=true&rft.mms_id=991014961547903501 130 01 0700 https://doi.org/10.1007/978-3-030-11605-7 285 01 0517 E-books (Springer) https://doi.org/10.1007/978-3-030-11605-7 370 01 4370 E-Book: Zugriff im HCU-Netz. 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9783030116057 978-3-030-11605-7 10.1007/978-3-030-11605-7 doi (DE-627)1668645637 (DE-599)KEP044415850 (DE-He213)978-3-030-11605-7 (EBP)044415850 DE-627 ger DE-627 rda eng XA-DE QH541.5.S3 QH541.5.F7 RBKF thema RBKF bicssc SCI039000 bisacsh 58.52 bkl Deep Oil Spills Facts, Fate, and Effects edited by Steven A. Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel 1st ed. 2020 Cham Springer 2020 1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Springer eBooks Earth and Environmental Science Springer eBook Collection Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. Aquatic biology Marine & Freshwater Sciences Marine Sciences Environmental chemistry Environmental management Biotechnology Aquatic ecology . Freshwater. Water quality. Environmental engineering. Water pollution. Aufsatzsammlung (DE-588)4143413-4 (DE-627)105605727 (DE-576)209726091 gnd-content s (DE-588)4139780-0 (DE-627)105632848 (DE-576)20969727X Ölunfall gnd s (DE-588)4201602-2 (DE-627)105164720 (DE-576)210143053 Gewässersanierung gnd s (DE-588)4137352-2 (DE-627)104219599 (DE-576)209676906 Bodensanierung gnd s (DE-588)4129524-9 (DE-627)104451246 (DE-576)209611235 Ölpest gnd s (DE-588)4185436-6 (DE-627)105287172 (DE-576)210032421 Tiefsee gnd g (DE-588)1237648599 (DE-627)1764376455 (DE-576)343640708 Deepwater Horizon gnd (DE-627) Murawski, Steven A. herausgeberin edt Ainsworth, Cameron H. herausgeberin edt Gilbert, Sherryl herausgeberin edt Hollander, David J herausgeberin edt Paris, Claire B herausgeberin edt Schlüter, Michael herausgeberin edt Wetzel, Dana L. herausgeberin edt 9783030116040 Erscheint auch als Druck-Ausgabe 978-3-030-11604-0 https://doi.org/10.1007/978-3-030-11605-7 X:SPRINGER Resolving-System lizenzpflichtig https://swbplus.bsz-bw.de/bsz1668645637cov.jpg V:DE-576 X:SPRINGER image/jpeg 20190712131940 Cover https://link.springer.com/book/10.1007/978-3-030-11605-7 application Inhaltsbeschreibung ZDB-2-EES 2020 ZDB-2-SEB ZDB-2-SXEE 2020 GBV_ILN_22 ISIL_DE-18 SYSFLAG_1 GBV_KXP SSG-OLC-PHA GBV_ILN_23 ISIL_DE-830 GBV_ILN_31 ISIL_DE-27 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_120 ISIL_DE-715 GBV_ILN_130 ISIL_DE-700 GBV_ILN_285 ISIL_DE-517 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_381 ISIL_DE-Ki130 GBV_ILN_2014 ISIL_DE-90 GBV_ILN_2015 ISIL_DE-93 GBV_ILN_2017 ISIL_DE-576 GBV_ILN_2027 ISIL_DE-105 GBV_ILN_2148 ISIL_DE-950 58.52 Technischer Bodenschutz technischer Gewässerschutz (DE-627)106420747 BO 045F 551.4 22 01 0018 3736700660 00 --%%-- --%%-- s --%%-- Olr-seb-ees Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. zu 08-08-20 23 01 0830 3688520467 00 --%%-- --%%-- s --%%-- olr-springer i z 19-06-20 31 01 0027 357427209X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden. z 11-01-20 40 01 0007 3828246508 OLR-SPRINGER-EES-2020 nl xsn 22-12-20 60 01 0705 3563475938 00 --%%-- --%%-- s --%%-- SpringerLink Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 11-12-19 65 01 0003 3543835696 03 --%%-- ebook --%%-- --%%-- OLR-SEB-ZDB-2-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. k3o 21-11-19 110 01 3110 3525193602 00 --%%-- --%%-- s --%%-- OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 19-10-19 120 01 0715 3577376279 00 --%%-- --%%-- g --%%-- alma z 21-01-20 130 01 0700 3610424931 OLR-SEB Vervielfältigungen (z. B. Kopien, Downloads) nur für den eigenen wissenschaftlichen Gebrauch. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots z 18-03-20 285 01 0517 3589309458 00 --%%-- --%%-- s --%%-- OLR-ESP-EES Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. z 07-02-20 370 01 4370 3572511615 olr-springer Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 05-01-20 381 01 4381 358907583X OLR-SEB Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. 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Murawski, Cameron H. Ainsworth, Sherryl Gilbert, David J. Hollander, Claire B. Paris, Michael Schlüter, Dana L. Wetzel</subfield></datafield><datafield tag="250" ind1=" " ind2=" "><subfield code="a">1st ed. 2020</subfield></datafield><datafield tag="264" ind1=" " ind2="1"><subfield code="a">Cham</subfield><subfield code="b">Springer</subfield><subfield code="c">2020</subfield></datafield><datafield tag="300" ind1=" " ind2=" "><subfield code="a">1 Online-Ressource (XIV, 611 p. 152 illus., 110 illus. in color)</subfield></datafield><datafield tag="336" ind1=" " ind2=" "><subfield code="a">Text</subfield><subfield code="b">txt</subfield><subfield code="2">rdacontent</subfield></datafield><datafield tag="337" ind1=" " ind2=" "><subfield code="a">Computermedien</subfield><subfield code="b">c</subfield><subfield code="2">rdamedia</subfield></datafield><datafield tag="338" ind1=" " ind2=" "><subfield code="a">Online-Ressource</subfield><subfield code="b">cr</subfield><subfield code="2">rdacarrier</subfield></datafield><datafield tag="490" ind1="0" ind2=" "><subfield code="a">Springer eBooks</subfield><subfield code="a">Earth and Environmental Science</subfield></datafield><datafield tag="490" ind1="0" ind2=" "><subfield code="a">Springer eBook Collection</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production.</subfield></datafield><datafield tag="650" ind1=" " ind2="0"><subfield code="a">Aquatic biology</subfield></datafield><datafield tag="650" ind1=" " ind2="0"><subfield code="a">Marine & Freshwater Sciences</subfield></datafield><datafield tag="650" ind1=" " ind2="0"><subfield code="a">Marine Sciences</subfield></datafield><datafield tag="650" ind1=" " ind2="0"><subfield code="a">Environmental chemistry</subfield></datafield><datafield tag="650" ind1=" " ind2="0"><subfield code="a">Environmental management</subfield></datafield><datafield tag="650" ind1=" " ind2="0"><subfield 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Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. |
abstractGer |
Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. |
abstract_unstemmed |
Inhaltsverzeichnis: Section I. Introduction -- 1. Introduction to the Volume -- Section II. Physics and Chemistry of Deep Oil Well Blowouts -- 2. The importance of understanding fundamental physics and chemistry of deep oil blowouts -- 3. Physical and chemical properties of oil and gas under reservoir and deep-sea conditions -- 4. Jet formation at the blowout site -- 5. Behavior of rising droplets and bubbles – impact on the physics of deep-sea blowouts and oil fate -- Section III. Transport and Degradation of Oil and Gas from Deep Spills -- 6. The importance of understanding transport and degradation of oil and gasses from deep sea blowouts -- 7. Biodegradation of petroleum hydrocarbons in the deep sea -- 8 Partitioning of organics between oil and water phases with and without the application of dispersants -- 9. Dynamic coupling of near-field and far-field models -- 10. Effects of oil properties and slick thickness on dispersant field effectiveness and oil fate -- 11. Far-field modeling of a deep-sea blowout: sensitivity studies of initial conditions, biodegradation, sedimentation and sub-surface dispersant injection on surface slicks and oil plume concentrations -- Section IV. Oil Spill Records in Deep Sea Sediments -- 12. Formation and sinking of MOSSFA (Marine Oil Snow Sedimentation and Flocculent Accumulation) events: Past and Present -- 13. The sedimentary record of MOSSFA events in the Gulf of Mexico: A comparison of the Deepwater Horizon (2010) and Ixtoc 1 (1979) oil spills -- 14. Characterization of the sedimentation associated with the Deepwater Horizon blowout: depositional pulse, initial response, and stabilization -- 15. Applications of FTICR-MS in oil spill studies -- 16. Changes in redox conditions of surface sediments following the Deepwater Horizon and Ixtoc 1 events -- 17. Long-term preservation of oil spill events in sediments: the case for the Deepwater Horizon spill in the northern Gulf of Mexico -- 18. Effect of marine snow on microbial oil degradation -- 19. Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of Mexico -- 20. 40 years of weathering of coastal oil residues in the southern Gulf of Mexico -- Section V. Impacts of Deep Spills on Plankton, Fishes, and Protected Resources -- 21. Overview of ecological impacts of deep spills -- 22. Deep-sea benthic faunal impacts and community evolution before, during and after the Deepwater Horizon event -- 23. Impact and resilience of benthic foraminifera in the aftermath of the Deepwater Horizon and Ixtoc 1 oil spills -- 24. Chronic sublethal effects observed in wild caught fish following two major oil spills in the Gulf of Mexico: Deepwater Horizon and Ixtoc 1 -- 25. Impacts of deep spills on fish and fisheries -- 26. Impacts of the Deepwater Horizon oil spill on marine mammals and sea turtles -- Section VI. Toxicology of Deep Oil Spills -- 27. Ecotoxicology of deep ocean spills -- 28 A synthesis of Deepwater Horizon oil, chemical dispersant and chemically dispersed oil aquatic standard laboratory acute and chronic toxicity studies -- 29. Digging deeper than LC/EC50: non-traditional endpoints and non-model species in oil spill toxicology -- 30. Genetics and oil: transcriptomics, epigenetics and population genomics as tools to understand animal responses to exposure across different time scales -- Section VI. I Ecosystem-level modeling of deep oil spill impacts -- 31. A synthesis of top down and bottom up impacts of the Deepwater Horizon oil spill using ecosystem modeling -- 32. Comparing ecosystem model outcomes between Ixtoc 1 and Deepwater Horizon oil spills -- 33. Effects of the Deepwater Horizon oil spill on Human Communities: Catch and Economic Impacts -- Section VIII. Summary -- 34. Summary of Major Themes – Deep Oil Spills -- Index Klappentext: The demand for oil and gas has brought exploration and production to unprecedented depths of the world’s oceans. Currently, over 50% of the oil from the Gulf of Mexico now comes from waters in excess of 1,500 meters (one mile) deep, where no oil was produced just 20 years ago. The Deepwater Horizon oil spill blowout did much to change the perception of oil spills as coming just from tanker accidents, train derailments, and pipeline ruptures. In fact, beginning with the Ixtoc 1 spill off Campeche, Mexico in 1979-1980, there have been a series of large spill events originating at the sea bottom and creating a myriad of new environmental and well control challenges. This volume explores the physics, chemistry, sub-surface oil deposition and environmental impacts of deep oil spills. Key lessons learned from the responses to previous deep spills, as well as unresolved scientific questions for additional research are highlighted, all of which are appropriate for governmental regulators, politicians, industry decision-makers, first responders, researchers and students wanting an incisive overview of issues surrounding deep-water oil and gas production. |
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Deep Oil Spills |
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Kein systematisches Downloaden durch Robots.</subfield><subfield code="y">zu</subfield><subfield code="z">08-08-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">23</subfield><subfield code="1">01</subfield><subfield code="x">0830</subfield><subfield code="b">3688520467</subfield><subfield code="c">00</subfield><subfield code="f">--%%--</subfield><subfield code="d">--%%--</subfield><subfield code="e">s</subfield><subfield code="j">--%%--</subfield><subfield code="h">olr-springer</subfield><subfield code="u">i</subfield><subfield code="y">z</subfield><subfield code="z">19-06-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">31</subfield><subfield code="1">01</subfield><subfield code="x">0027</subfield><subfield code="b">357427209X</subfield><subfield code="h">OLR-SEB</subfield><subfield code="k">Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden.</subfield><subfield code="y">z</subfield><subfield code="z">11-01-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">40</subfield><subfield code="1">01</subfield><subfield code="x">0007</subfield><subfield code="b">3828246508</subfield><subfield code="h">OLR-SPRINGER-EES-2020</subfield><subfield code="u">nl</subfield><subfield code="y">xsn</subfield><subfield code="z">22-12-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">60</subfield><subfield code="1">01</subfield><subfield code="x">0705</subfield><subfield code="b">3563475938</subfield><subfield code="c">00</subfield><subfield code="f">--%%--</subfield><subfield code="d">--%%--</subfield><subfield code="e">s</subfield><subfield code="j">--%%--</subfield><subfield code="h">SpringerLink</subfield><subfield code="k">Vervielfältigungen (z.B. 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Kein systematisches Downloaden durch Robots.</subfield><subfield code="y">z</subfield><subfield code="z">19-10-19</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">120</subfield><subfield code="1">01</subfield><subfield code="x">0715</subfield><subfield code="b">3577376279</subfield><subfield code="c">00</subfield><subfield code="f">--%%--</subfield><subfield code="d">--%%--</subfield><subfield code="e">g</subfield><subfield code="j">--%%--</subfield><subfield code="h">alma</subfield><subfield code="y">z</subfield><subfield code="z">21-01-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">130</subfield><subfield code="1">01</subfield><subfield code="x">0700</subfield><subfield code="b">3610424931</subfield><subfield code="h">OLR-SEB</subfield><subfield code="k">Vervielfältigungen (z. B. Kopien, Downloads) nur für den eigenen wissenschaftlichen Gebrauch. Keine Weitergabe an Dritte. 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