The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos

碩士 === 國立臺灣大學 === 農業化學系 === 86 === Purification of bioactive ingredient from pesticides could increase activity and reduce usage amounts of pesticide. In this study, instead of classical asymmetric synthesis, separation of enantiomers were performed...

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Main Authors: Tai, Kok Thong, 戴國棟
Other Authors: Yei-Shung Wang
Format: Others
Language:zh-TW
Published: 1998
Online Access:http://ndltd.ncl.edu.tw/handle/01020693766049859231
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spelling ndltd-TW-086NTU004060462016-06-29T04:13:45Z http://ndltd.ncl.edu.tw/handle/01020693766049859231 The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos 有機磷殺蟲劑芬滅松光學活性物之分離,分解及毒性. Tai, Kok Thong 戴國棟 碩士 國立臺灣大學 農業化學系 86 Purification of bioactive ingredient from pesticides could increase activity and reduce usage amounts of pesticide. In this study, instead of classical asymmetric synthesis, separation of enantiomers were performed with high performance liquid chromatography (HPLC) through Whelk-O1 chiral column, daphnia will use as bioassay organism for toxicity test. In the other hand, cholinesterase is used to detect the inhibitory ability of the enantiomers. In the toxicity tests of daphnia, the (+)-Fenamiphos, (-)-Fenamiphos and (+)-Fenamiphos give LC50 values of 0.0016μg/mL, 0.0061μg/mL and 0.0019μg/mL. There is no significance difference of LC50 values between (+)-Fenamiphos and (+)-Fenamiphos, and LC50 values of (-)-Fenamiphos show significance different. And the inhibition tests of cholinesterase give I50values of 0.0080μg/mL, 0.15μg/mL and 0.46μg/mL, Both of the two enantiomers and the racemate show significance different in inhibitory activity of cholinesterase. In the study of degradation in soil and water sample, the half-life of (+)- Fenamiphos, (-)-Fenamiphos and (+)-Fenamiphos in soils are: Td soil ( 24.5, 38.83, 39. 37 days), Tc soil ( 60.43, 38.69, 11.32 days), Pc soil ( 34.47, 192.54, 173.28 days) and Lk soil ( 41.01, 130.78, 18.83days), respectively. And the half-life in water sample: Moon sun lake water sample ( 57.28, 64.18, 52.51 days), Ta du river ( 51.73, 50.22, 75.34 days) and Green lake ( 29, 50.59, 106.6 days), respectively. Yei-Shung Wang 王一雄 --- 1998 學位論文 ; thesis 71 zh-TW
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description 碩士 === 國立臺灣大學 === 農業化學系 === 86 === Purification of bioactive ingredient from pesticides could increase activity and reduce usage amounts of pesticide. In this study, instead of classical asymmetric synthesis, separation of enantiomers were performed with high performance liquid chromatography (HPLC) through Whelk-O1 chiral column, daphnia will use as bioassay organism for toxicity test. In the other hand, cholinesterase is used to detect the inhibitory ability of the enantiomers. In the toxicity tests of daphnia, the (+)-Fenamiphos, (-)-Fenamiphos and (+)-Fenamiphos give LC50 values of 0.0016μg/mL, 0.0061μg/mL and 0.0019μg/mL. There is no significance difference of LC50 values between (+)-Fenamiphos and (+)-Fenamiphos, and LC50 values of (-)-Fenamiphos show significance different. And the inhibition tests of cholinesterase give I50values of 0.0080μg/mL, 0.15μg/mL and 0.46μg/mL, Both of the two enantiomers and the racemate show significance different in inhibitory activity of cholinesterase. In the study of degradation in soil and water sample, the half-life of (+)- Fenamiphos, (-)-Fenamiphos and (+)-Fenamiphos in soils are: Td soil ( 24.5, 38.83, 39. 37 days), Tc soil ( 60.43, 38.69, 11.32 days), Pc soil ( 34.47, 192.54, 173.28 days) and Lk soil ( 41.01, 130.78, 18.83days), respectively. And the half-life in water sample: Moon sun lake water sample ( 57.28, 64.18, 52.51 days), Ta du river ( 51.73, 50.22, 75.34 days) and Green lake ( 29, 50.59, 106.6 days), respectively.
author2 Yei-Shung Wang
author_facet Yei-Shung Wang
Tai, Kok Thong
戴國棟
author Tai, Kok Thong
戴國棟
spellingShingle Tai, Kok Thong
戴國棟
The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos
author_sort Tai, Kok Thong
title The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos
title_short The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos
title_full The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos
title_fullStr The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos
title_full_unstemmed The separation, Degaradation and Toxicity of Enatiomer of organophosphorusInsecticide Fenamiphos
title_sort separation, degaradation and toxicity of enatiomer of organophosphorusinsecticide fenamiphos
publishDate 1998
url http://ndltd.ncl.edu.tw/handle/01020693766049859231
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