Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants
Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generati...
Ausführliche Beschreibung
Autor*in: |
Zhan, Xinmin [verfasserIn] |
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Format: |
E-Book |
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Sprache: |
Englisch |
Erschienen: |
London: IWA Publishing ; 2018 |
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Schlagwörter: |
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Umfang: |
1 Online-Ressource (161 pages) |
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Links: | |
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ISBN: |
978-1-78040-631-2 |
Katalog-ID: |
1011483041 |
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520 | |a Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks | ||
520 | |a 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N | ||
520 | |a 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index | ||
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9781780406312 : electronic bk. 978-1-78040-631-2 (DE-627)1011483041 (DE-599)GBV1011483041 (EBC)EBC5217492 (EBR)ebr11497391 (EBL)EBL5217492 (EBP)036778125 DE-627 eng DE-627 rda eng 628.3 363.738746 Zhan, Xinmin verfasserin aut Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London IWA Publishing 2018 1 Online-Ressource (161 pages) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index Sewage disposal plants Gases from plants Sewage disposal plants. Gases from plants Electronic books Hu, Zhenhu oth Wu, Guangxue oth 9781780406305 Erscheint auch als Druck-Ausgabe Zhan, Xinmin Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London : IWA Publishing,c2018 https://ebookcentral.proquest.com/lib/kxp/detail.action?docID=5217492 X:EBC Aggregator lizenzpflichtig Volltext ZDB-30-PAD ZDB-30-PQE GBV_ILN_24 ISIL_DE-8 SYSFLAG_1 GBV_KXP GBV_ILN_39 ISIL_DE-547 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_206 ISIL_DE-Brg3 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2021 ISIL_DE-289 GBV_ILN_2026 ISIL_DE-100 GBV_ILN_2144 ISIL_DE-955 GBV_ILN_2148 ISIL_DE-950 GBV_ILN_2522 ISIL_DE-Kn182 BO 045F 628.3 045F 363.738746 24 01 0008 3645433937 00 --%%-- --%%-- s --%%-- olr-mieteebc 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. 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9781780406312 : electronic bk. 978-1-78040-631-2 (DE-627)1011483041 (DE-599)GBV1011483041 (EBC)EBC5217492 (EBR)ebr11497391 (EBL)EBL5217492 (EBP)036778125 DE-627 eng DE-627 rda eng 628.3 363.738746 Zhan, Xinmin verfasserin aut Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London IWA Publishing 2018 1 Online-Ressource (161 pages) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index Sewage disposal plants Gases from plants Sewage disposal plants. Gases from plants Electronic books Hu, Zhenhu oth Wu, Guangxue oth 9781780406305 Erscheint auch als Druck-Ausgabe Zhan, Xinmin Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London : IWA Publishing,c2018 https://ebookcentral.proquest.com/lib/kxp/detail.action?docID=5217492 X:EBC Aggregator lizenzpflichtig Volltext ZDB-30-PAD ZDB-30-PQE GBV_ILN_24 ISIL_DE-8 SYSFLAG_1 GBV_KXP GBV_ILN_39 ISIL_DE-547 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_206 ISIL_DE-Brg3 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2021 ISIL_DE-289 GBV_ILN_2026 ISIL_DE-100 GBV_ILN_2144 ISIL_DE-955 GBV_ILN_2148 ISIL_DE-950 GBV_ILN_2522 ISIL_DE-Kn182 BO 045F 628.3 045F 363.738746 24 01 0008 3645433937 00 --%%-- --%%-- s --%%-- olr-mieteebc 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. Zugriff auf den Volltext nur für Universitätsangehörige innerhalb des Netzes der Universität Kiel (Campuslizenz). z 30-04-20 39 01 0547 4456554525 00 --%%-- --%%-- s --%%-- Proquest_AC pq ke 12-01-24 60 01 0705 4452472133 00 --%%-- --%%-- s --%%-- 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 10-01-24 65 01 0003 3738874585 Proquest-AcadCompl 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 12-08-20 206 01 3350 4068120455 00 --%%-- Online-Ressource g --%%-- OLR-EBL If you are a ThHF affiliate and the E-Book is not fully accessible, please send us a purchase or short time loan request. All others: Inter-library loans and guest access on campus premises is not possible. zh 19-02-22 370 01 4370 3976628395 olr-dda ebc 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 09-09-21 2021 01 DE-289 3844821376 00 --%%-- --%%-- --%%-- n l01 29-01-21 2026 01 DE-100 3679543913 00 --%%-- --%%-- --%%-- k l01 31-05-20 2144 01 DE-955 3568004526 00 --%%-- --%%-- --%%-- n E-Book-Ausleihe für Hochschulangehörige l01 20-12-19 2148 01 DE-950 4062910683 00 --%%-- eBook ProQuest --%%-- n PDA-Angebot - nur für Hochschulangehörige der HfWU l01 17-02-22 2522 01 DE-Kn182 4409423878 00 --%%-- --%%-- --%%-- --%%-- l01 16-11-23 24 01 0008 https://ebookcentral.proquest.com/lib/christianalbrechts/detail.action?docID=5217492 39 01 0547 https://ebookcentral.proquest.com/lib/ufb/detail.action?docID=5217492 60 01 0705 https://ebookcentral.proquest.com/lib/helmutschmidt/detail.action?docID=5217492 65 01 0003 https://ebookcentral.proquest.com/lib/ulbhalle-ebooks/detail.action?docID=5217492 206 01 3350 Full Text only for ThHf affiliates https://thh-friedensau.idm.oclc.org/login?url=http://ebookcentral.proquest.com/lib/thhfriedensau/detail.action?docID=5217492 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von auβerhalb nur für HCU-Angehörige möglich https://ebookcentral.proquest.com/lib/hcuhamburg-ebooks/detail.action?docID=5217492 2021 01 DE-289 https://ebookcentral.proquest.com/lib/kiz-uniulm/detail.action?docID=5217492 2026 01 DE-100 https://ebookcentral.proquest.com/lib/ubhohenheim/detail.action?docID=5217492 2144 01 DE-955 https://ebookcentral.proquest.com/lib/hs-rottenburg/detail.action?docID=5217492 2148 01 DE-950 https://ebookcentral.proquest.com/lib/hfwu/detail.action?docID=5217492 2522 01 DE-Kn182 https://ebookcentral.proquest.com/lib/dlr-ebooks/detail.action?docID=5217492 39 01 0547 z10288o 24 01 0008 olr-mieteebc 39 01 0547 Proquest_AC 39 01 0547 eb 65 01 0003 Proquest-AcadCompl 206 01 3350 OLR-EBL 370 01 4370 olr-dda ebc |
allfields_unstemmed |
9781780406312 : electronic bk. 978-1-78040-631-2 (DE-627)1011483041 (DE-599)GBV1011483041 (EBC)EBC5217492 (EBR)ebr11497391 (EBL)EBL5217492 (EBP)036778125 DE-627 eng DE-627 rda eng 628.3 363.738746 Zhan, Xinmin verfasserin aut Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London IWA Publishing 2018 1 Online-Ressource (161 pages) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index Sewage disposal plants Gases from plants Sewage disposal plants. Gases from plants Electronic books Hu, Zhenhu oth Wu, Guangxue oth 9781780406305 Erscheint auch als Druck-Ausgabe Zhan, Xinmin Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London : IWA Publishing,c2018 https://ebookcentral.proquest.com/lib/kxp/detail.action?docID=5217492 X:EBC Aggregator lizenzpflichtig Volltext ZDB-30-PAD ZDB-30-PQE GBV_ILN_24 ISIL_DE-8 SYSFLAG_1 GBV_KXP GBV_ILN_39 ISIL_DE-547 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_206 ISIL_DE-Brg3 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2021 ISIL_DE-289 GBV_ILN_2026 ISIL_DE-100 GBV_ILN_2144 ISIL_DE-955 GBV_ILN_2148 ISIL_DE-950 GBV_ILN_2522 ISIL_DE-Kn182 BO 045F 628.3 045F 363.738746 24 01 0008 3645433937 00 --%%-- --%%-- s --%%-- olr-mieteebc 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. Zugriff auf den Volltext nur für Universitätsangehörige innerhalb des Netzes der Universität Kiel (Campuslizenz). z 30-04-20 39 01 0547 4456554525 00 --%%-- --%%-- s --%%-- Proquest_AC pq ke 12-01-24 60 01 0705 4452472133 00 --%%-- --%%-- s --%%-- 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 10-01-24 65 01 0003 3738874585 Proquest-AcadCompl 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 12-08-20 206 01 3350 4068120455 00 --%%-- Online-Ressource g --%%-- OLR-EBL If you are a ThHF affiliate and the E-Book is not fully accessible, please send us a purchase or short time loan request. All others: Inter-library loans and guest access on campus premises is not possible. zh 19-02-22 370 01 4370 3976628395 olr-dda ebc 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 09-09-21 2021 01 DE-289 3844821376 00 --%%-- --%%-- --%%-- n l01 29-01-21 2026 01 DE-100 3679543913 00 --%%-- --%%-- --%%-- k l01 31-05-20 2144 01 DE-955 3568004526 00 --%%-- --%%-- --%%-- n E-Book-Ausleihe für Hochschulangehörige l01 20-12-19 2148 01 DE-950 4062910683 00 --%%-- eBook ProQuest --%%-- n PDA-Angebot - nur für Hochschulangehörige der HfWU l01 17-02-22 2522 01 DE-Kn182 4409423878 00 --%%-- --%%-- --%%-- --%%-- l01 16-11-23 24 01 0008 https://ebookcentral.proquest.com/lib/christianalbrechts/detail.action?docID=5217492 39 01 0547 https://ebookcentral.proquest.com/lib/ufb/detail.action?docID=5217492 60 01 0705 https://ebookcentral.proquest.com/lib/helmutschmidt/detail.action?docID=5217492 65 01 0003 https://ebookcentral.proquest.com/lib/ulbhalle-ebooks/detail.action?docID=5217492 206 01 3350 Full Text only for ThHf affiliates https://thh-friedensau.idm.oclc.org/login?url=http://ebookcentral.proquest.com/lib/thhfriedensau/detail.action?docID=5217492 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von auβerhalb nur für HCU-Angehörige möglich https://ebookcentral.proquest.com/lib/hcuhamburg-ebooks/detail.action?docID=5217492 2021 01 DE-289 https://ebookcentral.proquest.com/lib/kiz-uniulm/detail.action?docID=5217492 2026 01 DE-100 https://ebookcentral.proquest.com/lib/ubhohenheim/detail.action?docID=5217492 2144 01 DE-955 https://ebookcentral.proquest.com/lib/hs-rottenburg/detail.action?docID=5217492 2148 01 DE-950 https://ebookcentral.proquest.com/lib/hfwu/detail.action?docID=5217492 2522 01 DE-Kn182 https://ebookcentral.proquest.com/lib/dlr-ebooks/detail.action?docID=5217492 39 01 0547 z10288o 24 01 0008 olr-mieteebc 39 01 0547 Proquest_AC 39 01 0547 eb 65 01 0003 Proquest-AcadCompl 206 01 3350 OLR-EBL 370 01 4370 olr-dda ebc |
allfieldsGer |
9781780406312 : electronic bk. 978-1-78040-631-2 (DE-627)1011483041 (DE-599)GBV1011483041 (EBC)EBC5217492 (EBR)ebr11497391 (EBL)EBL5217492 (EBP)036778125 DE-627 eng DE-627 rda eng 628.3 363.738746 Zhan, Xinmin verfasserin aut Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London IWA Publishing 2018 1 Online-Ressource (161 pages) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index Sewage disposal plants Gases from plants Sewage disposal plants. Gases from plants Electronic books Hu, Zhenhu oth Wu, Guangxue oth 9781780406305 Erscheint auch als Druck-Ausgabe Zhan, Xinmin Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London : IWA Publishing,c2018 https://ebookcentral.proquest.com/lib/kxp/detail.action?docID=5217492 X:EBC Aggregator lizenzpflichtig Volltext ZDB-30-PAD ZDB-30-PQE GBV_ILN_24 ISIL_DE-8 SYSFLAG_1 GBV_KXP GBV_ILN_39 ISIL_DE-547 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_206 ISIL_DE-Brg3 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2021 ISIL_DE-289 GBV_ILN_2026 ISIL_DE-100 GBV_ILN_2144 ISIL_DE-955 GBV_ILN_2148 ISIL_DE-950 GBV_ILN_2522 ISIL_DE-Kn182 BO 045F 628.3 045F 363.738746 24 01 0008 3645433937 00 --%%-- --%%-- s --%%-- olr-mieteebc 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. Zugriff auf den Volltext nur für Universitätsangehörige innerhalb des Netzes der Universität Kiel (Campuslizenz). z 30-04-20 39 01 0547 4456554525 00 --%%-- --%%-- s --%%-- Proquest_AC pq ke 12-01-24 60 01 0705 4452472133 00 --%%-- --%%-- s --%%-- 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 10-01-24 65 01 0003 3738874585 Proquest-AcadCompl Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. 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Kein systematisches Downloaden durch Robots. i z 09-09-21 2021 01 DE-289 3844821376 00 --%%-- --%%-- --%%-- n l01 29-01-21 2026 01 DE-100 3679543913 00 --%%-- --%%-- --%%-- k l01 31-05-20 2144 01 DE-955 3568004526 00 --%%-- --%%-- --%%-- n E-Book-Ausleihe für Hochschulangehörige l01 20-12-19 2148 01 DE-950 4062910683 00 --%%-- eBook ProQuest --%%-- n PDA-Angebot - nur für Hochschulangehörige der HfWU l01 17-02-22 2522 01 DE-Kn182 4409423878 00 --%%-- --%%-- --%%-- --%%-- l01 16-11-23 24 01 0008 https://ebookcentral.proquest.com/lib/christianalbrechts/detail.action?docID=5217492 39 01 0547 https://ebookcentral.proquest.com/lib/ufb/detail.action?docID=5217492 60 01 0705 https://ebookcentral.proquest.com/lib/helmutschmidt/detail.action?docID=5217492 65 01 0003 https://ebookcentral.proquest.com/lib/ulbhalle-ebooks/detail.action?docID=5217492 206 01 3350 Full Text only for ThHf affiliates https://thh-friedensau.idm.oclc.org/login?url=http://ebookcentral.proquest.com/lib/thhfriedensau/detail.action?docID=5217492 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von auβerhalb nur für HCU-Angehörige möglich https://ebookcentral.proquest.com/lib/hcuhamburg-ebooks/detail.action?docID=5217492 2021 01 DE-289 https://ebookcentral.proquest.com/lib/kiz-uniulm/detail.action?docID=5217492 2026 01 DE-100 https://ebookcentral.proquest.com/lib/ubhohenheim/detail.action?docID=5217492 2144 01 DE-955 https://ebookcentral.proquest.com/lib/hs-rottenburg/detail.action?docID=5217492 2148 01 DE-950 https://ebookcentral.proquest.com/lib/hfwu/detail.action?docID=5217492 2522 01 DE-Kn182 https://ebookcentral.proquest.com/lib/dlr-ebooks/detail.action?docID=5217492 39 01 0547 z10288o 24 01 0008 olr-mieteebc 39 01 0547 Proquest_AC 39 01 0547 eb 65 01 0003 Proquest-AcadCompl 206 01 3350 OLR-EBL 370 01 4370 olr-dda ebc |
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9781780406312 : electronic bk. 978-1-78040-631-2 (DE-627)1011483041 (DE-599)GBV1011483041 (EBC)EBC5217492 (EBR)ebr11497391 (EBL)EBL5217492 (EBP)036778125 DE-627 eng DE-627 rda eng 628.3 363.738746 Zhan, Xinmin verfasserin aut Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London IWA Publishing 2018 1 Online-Ressource (161 pages) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index Sewage disposal plants Gases from plants Sewage disposal plants. Gases from plants Electronic books Hu, Zhenhu oth Wu, Guangxue oth 9781780406305 Erscheint auch als Druck-Ausgabe Zhan, Xinmin Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants London : IWA Publishing,c2018 https://ebookcentral.proquest.com/lib/kxp/detail.action?docID=5217492 X:EBC Aggregator lizenzpflichtig Volltext ZDB-30-PAD ZDB-30-PQE GBV_ILN_24 ISIL_DE-8 SYSFLAG_1 GBV_KXP GBV_ILN_39 ISIL_DE-547 GBV_ILN_60 ISIL_DE-705 GBV_ILN_65 ISIL_DE-3 GBV_ILN_206 ISIL_DE-Brg3 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2021 ISIL_DE-289 GBV_ILN_2026 ISIL_DE-100 GBV_ILN_2144 ISIL_DE-955 GBV_ILN_2148 ISIL_DE-950 GBV_ILN_2522 ISIL_DE-Kn182 BO 045F 628.3 045F 363.738746 24 01 0008 3645433937 00 --%%-- --%%-- s --%%-- olr-mieteebc 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. Zugriff auf den Volltext nur für Universitätsangehörige innerhalb des Netzes der Universität Kiel (Campuslizenz). z 30-04-20 39 01 0547 4456554525 00 --%%-- --%%-- s --%%-- Proquest_AC pq ke 12-01-24 60 01 0705 4452472133 00 --%%-- --%%-- s --%%-- 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 10-01-24 65 01 0003 3738874585 Proquest-AcadCompl 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 12-08-20 206 01 3350 4068120455 00 --%%-- Online-Ressource g --%%-- OLR-EBL If you are a ThHF affiliate and the E-Book is not fully accessible, please send us a purchase or short time loan request. All others: Inter-library loans and guest access on campus premises is not possible. zh 19-02-22 370 01 4370 3976628395 olr-dda ebc 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 09-09-21 2021 01 DE-289 3844821376 00 --%%-- --%%-- --%%-- n l01 29-01-21 2026 01 DE-100 3679543913 00 --%%-- --%%-- --%%-- k l01 31-05-20 2144 01 DE-955 3568004526 00 --%%-- --%%-- --%%-- n E-Book-Ausleihe für Hochschulangehörige l01 20-12-19 2148 01 DE-950 4062910683 00 --%%-- eBook ProQuest --%%-- n PDA-Angebot - nur für Hochschulangehörige der HfWU l01 17-02-22 2522 01 DE-Kn182 4409423878 00 --%%-- --%%-- --%%-- --%%-- l01 16-11-23 24 01 0008 https://ebookcentral.proquest.com/lib/christianalbrechts/detail.action?docID=5217492 39 01 0547 https://ebookcentral.proquest.com/lib/ufb/detail.action?docID=5217492 60 01 0705 https://ebookcentral.proquest.com/lib/helmutschmidt/detail.action?docID=5217492 65 01 0003 https://ebookcentral.proquest.com/lib/ulbhalle-ebooks/detail.action?docID=5217492 206 01 3350 Full Text only for ThHf affiliates https://thh-friedensau.idm.oclc.org/login?url=http://ebookcentral.proquest.com/lib/thhfriedensau/detail.action?docID=5217492 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von auβerhalb nur für HCU-Angehörige möglich https://ebookcentral.proquest.com/lib/hcuhamburg-ebooks/detail.action?docID=5217492 2021 01 DE-289 https://ebookcentral.proquest.com/lib/kiz-uniulm/detail.action?docID=5217492 2026 01 DE-100 https://ebookcentral.proquest.com/lib/ubhohenheim/detail.action?docID=5217492 2144 01 DE-955 https://ebookcentral.proquest.com/lib/hs-rottenburg/detail.action?docID=5217492 2148 01 DE-950 https://ebookcentral.proquest.com/lib/hfwu/detail.action?docID=5217492 2522 01 DE-Kn182 https://ebookcentral.proquest.com/lib/dlr-ebooks/detail.action?docID=5217492 39 01 0547 z10288o 24 01 0008 olr-mieteebc 39 01 0547 Proquest_AC 39 01 0547 eb 65 01 0003 Proquest-AcadCompl 206 01 3350 OLR-EBL 370 01 4370 olr-dda ebc |
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Plants</subfield></datafield><datafield tag="264" ind1=" " ind2="1"><subfield code="a">London</subfield><subfield code="b">IWA Publishing</subfield><subfield code="c">2018</subfield></datafield><datafield tag="300" ind1=" " ind2=" "><subfield code="a">1 Online-Ressource (161 pages)</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="520" ind1=" " ind2=" "><subfield code="a">Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions 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Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2− -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2−-N</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 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abstract |
Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index |
abstractGer |
Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index |
abstract_unstemmed |
Cover -- Copyright -- Contents -- Preface -- Chapter 1: Warming climate and greenhouse gases -- 1.1 Warming Climate -- 1.2 Greenhouse Gases and Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions from industrial wastewater treatment -- 3.3.3 N2O emissions -- 3.4 Greenhouse Gas Emissions from Biogas Utilization -- 3.5 Greenhouse Gas Emissions from Sludge Disposal -- 3.5.1 Land application -- 3.5.2 Incineration -- 3.5.3 Landfill -- 3.5.4 Composting -- 3.6 Uncertainty -- 3.6.1 CH4 emissions from domestic wastewater -- 3.6.2 CH4 emissions from industrial wastewater -- 3.6.3 N2O emissions from wastewater treatment facilities -- 3.6.4 Source of uncertainties -- 3.7 Summary -- 3.8 References -- Chapter 4: Measurement of direct greenhouse gas emissions in WWTPs -- 4.1 Introduction -- 4.2 Off-Gas Measurement -- 4.2.1 Enclosed wastewater treatment facilities -- 4.2.2 Off-gas measurement techniques for open aerated tanks 4.2.3 Measurement of off-gas in non-aerated tanks -- 4.2.3.1 Static chamber technique -- 4.2.3.2 Surface emission isolation flux chamber (SEIFC) -- 4.3 Quantification of N2O Emission Through Measuring Dissolved N2O Concentration in the Liquid Phase -- 4.3.1 N2O emission and generation -- 4.3.2 Dissolved N2O measurement with the air stripping technique -- 4.3.3 Dissolved N2O measurement using N2O sensor -- 4.3.4 Estimation of KLa combining dissolved N2O concentration measurement and off-gas measurement -- 4.4 Measurement of Dissolved Methane Concentration -- 4.4.1 Headspace method -- 4.4.2 Salting-out method -- 4.5 Summary -- 4.6 References -- Chapter 5: Methane emission and mitigation in municipal wastewater treatment plants -- 5.1 Introduction -- 5.2 Methane Emission in WWTPs -- 5.2.1 Total methane emission from municipal wastewater treatment plants -- 5.2.2 A/O process WWTPs -- 5.2.3 Sequencing batch reactor process WWTPs -- 5.2.4 A2O process-based WWTPs -- 5.2.5 Oxidation ditch process-based WWTPs -- 5.3 Parameters Affecting Methane Emissions in WWTPs -- 5.3.1 Effect of temperature and seasonal change -- 5.3.2 Dissolved oxygen concentration -- 5.3.3 COD concentration and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2â -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2â-N 6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying polyphosphate accumulating processes -- 6.5.4 High ammonium wastewater treatment processes -- 6.5.4.1 Partial nitrification -- 6.5.4.2 Partial nitrification-Anammox process -- 6.5.5 N2O emission in autotrophic denitrification process -- 6.6 Summary and Future Trends -- 6.7 References -- Chapter 7: Life cycle assessment of a wastewater treatment plant -- 7.1 Direct and Indirect GHG Emissions -- 7.2 Life Cycle Assessment -- 7.3 A Brief History of Life Cycle Assessment -- 7.4 Stages of Life Cycle Assessment -- 7.4.1 Goal and scope definition -- 7.4.2 Life cycle inventory analysis -- 7.4.3 Life cycle impact assessment -- 7.4.4 Interpretation -- 7.5 LCA of a WWTP -- 7.6 Case Study: LCA of a Municipal WWTP in Kunming City, China -- 7.6.1 Introduction -- 7.6.2 Materials and methods -- 7.6.2.1 Goal and scope definition -- 7.6.2.2 Life cycle inventory analysis -- Electricity -- Chemicals -- WWTP operation -- Effluent to water source -- Disposal of biosolids -- 7.6.2.3 Impact assessment -- 7.7 Interpretation of Results and Discussion -- 7.8 Summary -- 7.9 References -- Index |
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title_short |
Greenhouse Gas Emission and Mitigation in Municipal Wastewater Treatment Plants |
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Global Warming Potential -- 1.3 Generation of CO2 in Wastewater Treatment Plants -- 1.4 Generation of CH4 in Wastewater Treatment Plants -- 1.5 N2O Generation in Wastewater Treatment Facilities -- 1.5.1 N2O emission during nitrification -- 1.5.2 N2O emission during denitrification -- 1.6 Summary -- 1.7 References -- Chapter 2: Greenhouse gas emissions from wastewater treatment facilities -- 2.1 Direct and Indirect GHG Emissions -- 2.2 GHG Emission and Generation -- 2.3 Emission Factors of GHG Emission -- 2.4 Emissions of Dissolved Gas to the Atmosphere -- 2.5 GHG Generation and Emission in WWTPs -- 2.6 Summary -- 2.7 References -- Chapter 3: IPCC framework for calculating greenhouse gas emissions from wastewater treatment -- 3.1 Introduction -- 3.2 Greenhouse Gas Emissions from Wastewater Treatment and Discharge -- 3.3 IPCC Guidelines for the Estimation of National GHG Emissions of Wastewater Treatment -- 3.3.1 CH4 emissions from domestic wastewater treatment -- 3.3.2 CH4 emissions 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and effect of C/N ratio -- 5.4 Methane Oxidation -- 5.4.1 Aerobic methane oxidation -- 5.4.2 Anaerobic methane oxidation -- 5.4.3 Chemical oxidation of CH4 -- 5.5 Mitigation Strategies for Methane Emission in WWTPs -- 5.5.1 Electricity generation from methane -- 5.6 Summary -- 5.7 References -- Chapter 6: N2O emission during biological nitrogen removal -- 6.1 Overview of Nitrogen Cycle -- 6.2 Identification of N2O Emission Pathways in BNR -- 6.3 Factors Affecting N2O Emission During Nitrification -- 6.3.1 Dissolved oxygen -- 6.3.2 NO2− -- 6.3.3 pH -- 6.4 Operating Factors Affecting N2O Emission During Denitrification -- 6.4.1 Organic carbon (types and C/N ratios) -- 6.4.2 NO2−-N</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">6.4.3 DO -- 6.4.4 pH -- 6.4.5 Cu -- 6.5 N2O Emission from Different Biological Wastewater Treatment Processes -- 6.5.1 Conventional biological nitrogen removal processes -- 6.5.2 Multiple A/O processes -- 6.5.3 Denitrifying 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code="a">ISIL_DE-Kn182</subfield></datafield><datafield tag="951" ind1=" " ind2=" "><subfield code="a">BO</subfield></datafield><datafield tag="953" ind1=" " ind2=" "><subfield code="2">045F</subfield><subfield code="a">628.3</subfield></datafield><datafield tag="953" ind1=" " ind2=" "><subfield code="2">045F</subfield><subfield code="a">363.738746</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">24</subfield><subfield code="1">01</subfield><subfield code="x">0008</subfield><subfield code="b">3645433937</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-mieteebc</subfield><subfield code="k">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.</subfield><subfield code="k">Zugriff auf den Volltext nur für Universitätsangehörige innerhalb des Netzes der Universität Kiel (Campuslizenz).</subfield><subfield code="y">z</subfield><subfield code="z">30-04-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">39</subfield><subfield code="1">01</subfield><subfield code="x">0547</subfield><subfield code="b">4456554525</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">Proquest_AC</subfield><subfield code="u">pq</subfield><subfield code="y">ke</subfield><subfield code="z">12-01-24</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">4452472133</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="k">Vervielfältigungen (z.B. 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Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt.</subfield><subfield code="y">k3o</subfield><subfield code="z">12-08-20</subfield></datafield><datafield tag="980" ind1=" " ind2=" "><subfield code="2">206</subfield><subfield code="1">01</subfield><subfield code="x">3350</subfield><subfield code="b">4068120455</subfield><subfield code="c">00</subfield><subfield code="f">--%%--</subfield><subfield code="d">Online-Ressource</subfield><subfield code="e">g</subfield><subfield code="j">--%%--</subfield><subfield code="h">OLR-EBL</subfield><subfield code="k">If you are a ThHF affiliate and the E-Book is not fully accessible, please send us a purchase or short time loan request. 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