• Title/Summary/Keyword: chlorinated organophosphorus pesticides

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Mass Spectra of Chlorinated Organophosphorus Pesticides (염소화 유기인제 농약의 질량 분석법)

  • Hong, Jongki;Eo, Yunwoo;Rhee, Jaeseong;Kim, Taekjae;Kim, Kangjin
    • Analytical Science and Technology
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    • v.6 no.1
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    • pp.93-106
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    • 1993
  • Fragmentation patterns on electron impact of 8 chlorinated organophosphorus pesticides were investigated. In most cases, characteristic ions could e identified and the peak clusters due to the $^{35}Cl$ and $^{37}Cl$ isotopes in the fragment ions were found to be highly characteristic. The fragmentation patterns of phosphorus moiety were coincident with previous report in the aspect of mechanism.

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Electron Impact Fragmentations of Chlorinated Organophosphorus Pesticides

  • Hong, Jong Gi;Kim, Do Gyun;Paeng, Gi Jeong
    • Bulletin of the Korean Chemical Society
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    • v.21 no.8
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    • pp.785-792
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    • 2000
  • Mass spectral fragmentations of six chlorinated organophosphorus pesticides were investigated using electron impact mass spectrometry. Understanding the fragmentation pathways, based on the fragment ions of mass spectra, should be useful in the structural elucidation and chemical identification of these compounds. The pro-posed fragmentation pathways were verified by collision-induced dissociation B/E-linked scan spectra. ln most cases,the structures of characteristic fragment ions could be expected by the observation of the peak clusters due to 35Cl and 37Cl isotopes. According to substituted groups on phosphorus atom, phosphate and phospho-rothioate exhibited significantIy differentfragmentation patterns. Especially, phosphate and phosphorothioate with diethyl ester produced more diverse fragment ions than that with dimethyl ester.

Degradation Patterns of Orgaonophosphorus Insecticide, Chlorpyrifos by Functionalized Zerovalent Iron (기능화된 Zerovalent Iron에 의한 유기인계 살충제 Chlorpyrifos의 분해 특성)

  • Kim, Dai-Hyeon;Choi, Choong-Lyeal;Kim, Tae-Hwa;Park, Man;Kim, Jang-Eok
    • Applied Biological Chemistry
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    • v.50 no.4
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    • pp.321-326
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    • 2007
  • An organophosphorus insecticide, chlorpyrifos, has been of a great concern due to persistence, toxicity and accumulation in soils and groundwaters. This study deals with degradation efficiency and dechlorination kinetics of chlorpyrifos by various types of zerovalent irons (ZVIs) for effective remediation of the soils contaminated with chlorinated pesticides. Chlorpyrifos degradation rate was increased with increasing ZVI treatment amount and reaction time. The degradation rate and dechlorination kinetics of chlorpyrifos increased in the order of mZVI > nZVI > cZVI in solutions and soils. Dechlorination number value of chlorpyrifos by cZVI, nZVI and mZVI treatment exhibited 1.08, 3.09 and 3.18, respectively. In soils, degradation efficiency and kinetics of chlorpyrifos significantly were affected by moisture content because of the limited contact between ZVIs and chlorpyrifos. These results suggest that nanosized and functionalized mZVI could be effectively applied to degradation of chlorinated pesticides in the soil and aqueous environments.

Exposure of chlorpyrifos impairs the normal function of boar spermatozoa

  • Adikari Arachchige Dilki Indrachapa Adikari;Young-Joo Yi
    • Korean Journal of Agricultural Science
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    • v.49 no.2
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    • pp.307-316
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    • 2022
  • The misuse of pesticides has resulted in environmental pollution, which directly or indirectly affects all life on earth. Chlorpyrifos is a chlorinated organophosphorus pesticide that is commonly used in agriculture. The aim of this study was to investigate the effects of chlorpyrifos on the fertilization function of boar spermatozoa. Sperm samples from boars were subjected to varying concentrations of chlorpyrifos from 10 to 200 µM for two incubation periods, 30 min or 2 hrs. The boar spermatozoa were then evaluated for motility, motion kinematics, viability, acrosome integrity, chromatin stability, and generation of intracellular reactive oxygen species (ROS). There was a significant percentage reduction in sperm motility and motion kinematic parameters after both incubation periods (p < 0.05). The proportion of viable spermatozoa decreased after incubation for 30 min and 2 hrs in a dose-dependent manner (p < 0.05). A significantly lower percentage of normal acrosomes was observed in spermatozoa exposed to 200 µM chlorpyrifos over both incubation periods, compared to the controls. The damage to sperm DNA was significantly higher when the exposure time to chlorpyrifos was longer. There was a significant increase in the ROS levels in spermatozoa incubated with chlorpyrifos for 2 hrs (p < 0.05). From the results of the present study, it is concluded that direct exposure of boar spermatozoa to chlorpyrifos altered boar sperm characteristics, suggesting potential toxicity that may affect the male reproductive function.