Untersuchungen zum Verhalten von insektizidhaltigen Wässern bei Prozessen der chemischen Naßoxidation
AOP (Advanced Oxidation Processes) , biochemical degradation, Daphnia-Test, Imidacloprid, insecticides, lumination-bacteria-Test, Ozone, Photocatalysis, Pirimicarb, Titandioxide, UV-Light, hydrogenperoxid. - The aim of the present work was the investigation of the behavior of insecticide-containing...
Ausführliche Beschreibung
Autor*in: | |
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Hochschulschrift: |
Bremen, Univ., Diss, 1999 |
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E-Book |
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Sprache: |
Deutsch |
Erschienen: |
1999 |
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Ausgabe: |
[Elektronische Ressource] |
Schlagwörter: |
Nassoxidation / Imidacloprid / Abbaureaktion / Prozessoptimierung Nassoxidation / Pirimicarb / Abbaureaktion / Prozessoptimierung Nassoxidation / Insektizid / Abbaureaktion / Abwasseranalyse / Toxizitätstest / Schnelltest |
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Formangabe: |
Hochschulschrift |
Umfang: |
172 S |
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Katalog-ID: |
320022110 |
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00,H10,2292 dnb 959499318 DE-101 (DE-627)320022110 (DE-599)DNB959499318 (OCoLC)174641505 DE-627 ger DE-627 rakwb ger XA-DE 38 42 30 sdnb Untersuchungen zum Verhalten von insektizidhaltigen Wässern bei Prozessen der chemischen Naßoxidation vorgelegt von Axel Bernecker [Elektronische Ressource] 1999 172 S Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Bremen, Univ., Diss, 1999 AOP (Advanced Oxidation Processes) , biochemical degradation, Daphnia-Test, Imidacloprid, insecticides, lumination-bacteria-Test, Ozone, Photocatalysis, Pirimicarb, Titandioxide, UV-Light, hydrogenperoxid. - The aim of the present work was the investigation of the behavior of insecticide-containing water in different wet-oxidation-processes. As model pollutants the insecticides pirimicarb and imidacloprid were selected. Destination of these investigations was the optimization of the process influencing parameters like temperature, pH-value and added concentration of oxidizing agent and/or catalyst. It could be shown, that under laboratory conditions the utilization of the different oxidation processes, the - photolytical oxidation with ultraviolet light and hydrogen peroxide, - photolytical oxidation with ultraviolet light and ozone - photocatalysis with ultraviolet light and titanium oxide, leads to a degradation of both insecticides. The evaluation of the performed toxicity tests shows that in the luminescent bacteria test for both pesticides before and after treatment no inhibition of the light intensity occurred. In the Daphnia tests however it was shown that in the case of pirimicarb the toxicity towards Daphnia mobility decreases during all irradiation experiments. In the case of imidacloprid ... Hochschulschrift (DE-588)4113937-9 (DE-627)105825778 (DE-576)209480580 gnd-content s (DE-588)4171200-6 (DE-627)105396613 (DE-576)209935448 Nassoxidation gnd s (DE-588)4308479-5 (DE-627)123816661 (DE-576)211106763 Imidacloprid gnd s (DE-588)4136352-8 (DE-627)105658138 (DE-576)209668466 Abbaureaktion gnd s (DE-588)4176074-8 (DE-627)105359262 (DE-576)209968133 Prozessoptimierung gnd DE-101 s (DE-588)4171200-6 (DE-627)105396613 (DE-576)209935448 Nassoxidation gnd s (DE-588)4589497-8 (DE-627)325962758 (DE-576)21401911X Pirimicarb gnd s (DE-588)4136352-8 (DE-627)105658138 (DE-576)209668466 Abbaureaktion gnd s (DE-588)4176074-8 (DE-627)105359262 (DE-576)209968133 Prozessoptimierung gnd DE-101 s (DE-588)4171200-6 (DE-627)105396613 (DE-576)209935448 Nassoxidation gnd s (DE-588)4027122-5 (DE-627)104778563 (DE-576)208969306 Insektizid gnd s (DE-588)4136352-8 (DE-627)105658138 (DE-576)209668466 Abbaureaktion gnd s (DE-588)4122754-2 (DE-627)105760188 (DE-576)209553960 Abwasseranalyse gnd s (DE-588)4060540-1 (DE-627)106139169 (DE-576)209135689 Toxizitätstest gnd s (DE-588)4179878-8 (DE-627)105330183 (DE-576)209994339 Schnelltest gnd DE-101 Bernecker, Axel oth Bremen uvp http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss38_Bern99.pdf Verlag Volltext http://elib.suub.uni-bremen.de/dissertations/chemistry/Bernecker_A1999/Bernecker_A1999.pdf Verlag Volltext http://d-nb.info/959499318 Verlag Volltext GBV_ILN_20 ISIL_DE-84 SYSFLAG_1 GBV_KXP GBV_ILN_22 ISIL_DE-18 GBV_ILN_30 ISIL_DE-104 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_370 ISIL_DE-1373 BO 20 01 0084 653118902 x 22-06-04 22 01 0018 554831562 SUBolrd xu 07-05-02 30 01 0104 719579252 z 14-05-05 40 01 0007 57844321X xsn 09-11-04 60 01 0705 578443228 z 16-11-02 110 01 3110 719579244 xz 14-05-05 370 01 4370 82241810X x 08-06-07 20 01 0084 http://d-nb.info/959499318 22 01 0018 http://deposit.ddb.de/cgi-bin/dokserv?idn=959499318 30 01 0104 http://deposit.ddb.de/cgi-bin/dokserv?idn=959499318 40 01 0007 http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss38_Bern99.pdf 60 01 0705 http://d-nb.info/959499318 110 01 3110 http://d-nb.info/959499318 370 01 4370 http://deposit.ddb.de/cgi-bin/dokserv?idn=959499318 60 01 0705 10 ho 30 01 0104 OLRD 60 01 0705 OLRD 110 01 3110 OLRD 370 01 4370 OLRD 22 01 0018 SUBolrd |
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38 42 30 sdnb Untersuchungen zum Verhalten von insektizidhaltigen Wässern bei Prozessen der chemischen Naßoxidation vorgelegt von Axel Bernecker s (DE-588)4171200-6 (DE-627)105396613 (DE-576)209935448 Nassoxidation gnd s (DE-588)4308479-5 (DE-627)123816661 (DE-576)211106763 Imidacloprid gnd s (DE-588)4136352-8 (DE-627)105658138 (DE-576)209668466 Abbaureaktion gnd s (DE-588)4176074-8 (DE-627)105359262 (DE-576)209968133 Prozessoptimierung gnd DE-101 s (DE-588)4589497-8 (DE-627)325962758 (DE-576)21401911X Pirimicarb gnd s (DE-588)4027122-5 (DE-627)104778563 (DE-576)208969306 Insektizid gnd s (DE-588)4122754-2 (DE-627)105760188 (DE-576)209553960 Abwasseranalyse gnd s (DE-588)4060540-1 (DE-627)106139169 (DE-576)209135689 Toxizitätstest gnd s (DE-588)4179878-8 (DE-627)105330183 (DE-576)209994339 Schnelltest gnd |
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sdnb 38 gnd Nassoxidation gnd Imidacloprid gnd Abbaureaktion gnd Prozessoptimierung gnd Pirimicarb gnd Insektizid gnd Abwasseranalyse gnd Toxizitätstest gnd Schnelltest |
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untersuchungen zum verhalten von insektizidhaltigen wässern bei prozessen der chemischen naßoxidation |
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Untersuchungen zum Verhalten von insektizidhaltigen Wässern bei Prozessen der chemischen Naßoxidation |
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AOP (Advanced Oxidation Processes) , biochemical degradation, Daphnia-Test, Imidacloprid, insecticides, lumination-bacteria-Test, Ozone, Photocatalysis, Pirimicarb, Titandioxide, UV-Light, hydrogenperoxid. - The aim of the present work was the investigation of the behavior of insecticide-containing water in different wet-oxidation-processes. As model pollutants the insecticides pirimicarb and imidacloprid were selected. Destination of these investigations was the optimization of the process influencing parameters like temperature, pH-value and added concentration of oxidizing agent and/or catalyst. It could be shown, that under laboratory conditions the utilization of the different oxidation processes, the - photolytical oxidation with ultraviolet light and hydrogen peroxide, - photolytical oxidation with ultraviolet light and ozone - photocatalysis with ultraviolet light and titanium oxide, leads to a degradation of both insecticides. The evaluation of the performed toxicity tests shows that in the luminescent bacteria test for both pesticides before and after treatment no inhibition of the light intensity occurred. In the Daphnia tests however it was shown that in the case of pirimicarb the toxicity towards Daphnia mobility decreases during all irradiation experiments. In the case of imidacloprid ... |
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AOP (Advanced Oxidation Processes) , biochemical degradation, Daphnia-Test, Imidacloprid, insecticides, lumination-bacteria-Test, Ozone, Photocatalysis, Pirimicarb, Titandioxide, UV-Light, hydrogenperoxid. - The aim of the present work was the investigation of the behavior of insecticide-containing water in different wet-oxidation-processes. As model pollutants the insecticides pirimicarb and imidacloprid were selected. Destination of these investigations was the optimization of the process influencing parameters like temperature, pH-value and added concentration of oxidizing agent and/or catalyst. It could be shown, that under laboratory conditions the utilization of the different oxidation processes, the - photolytical oxidation with ultraviolet light and hydrogen peroxide, - photolytical oxidation with ultraviolet light and ozone - photocatalysis with ultraviolet light and titanium oxide, leads to a degradation of both insecticides. The evaluation of the performed toxicity tests shows that in the luminescent bacteria test for both pesticides before and after treatment no inhibition of the light intensity occurred. In the Daphnia tests however it was shown that in the case of pirimicarb the toxicity towards Daphnia mobility decreases during all irradiation experiments. In the case of imidacloprid ... |
abstract_unstemmed |
AOP (Advanced Oxidation Processes) , biochemical degradation, Daphnia-Test, Imidacloprid, insecticides, lumination-bacteria-Test, Ozone, Photocatalysis, Pirimicarb, Titandioxide, UV-Light, hydrogenperoxid. - The aim of the present work was the investigation of the behavior of insecticide-containing water in different wet-oxidation-processes. As model pollutants the insecticides pirimicarb and imidacloprid were selected. Destination of these investigations was the optimization of the process influencing parameters like temperature, pH-value and added concentration of oxidizing agent and/or catalyst. It could be shown, that under laboratory conditions the utilization of the different oxidation processes, the - photolytical oxidation with ultraviolet light and hydrogen peroxide, - photolytical oxidation with ultraviolet light and ozone - photocatalysis with ultraviolet light and titanium oxide, leads to a degradation of both insecticides. The evaluation of the performed toxicity tests shows that in the luminescent bacteria test for both pesticides before and after treatment no inhibition of the light intensity occurred. In the Daphnia tests however it was shown that in the case of pirimicarb the toxicity towards Daphnia mobility decreases during all irradiation experiments. In the case of imidacloprid ... |
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title_short |
Untersuchungen zum Verhalten von insektizidhaltigen Wässern bei Prozessen der chemischen Naßoxidation |
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http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss38_Bern99.pdf http://elib.suub.uni-bremen.de/dissertations/chemistry/Bernecker_A1999/Bernecker_A1999.pdf http://d-nb.info/959499318 |
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