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Formation and removal of pesticides and pesticide transformation products during water treatment operations.

机译:在水处理过程中形成和去除农药和农药转化产品。

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摘要

A comprehensive suite of over 60 pesticides (herbicides, insecticides, and fungicides) representing a variety of classes at environmentally relevant concentrations (low microg/L) were screened for reactivity under typical drinking water conditions and dosages. The most common oxidants/transformation agents in water treatment systems were examined for reactivity including free and combined chlorine, chlorine dioxide, pe1manganate, ozone, hydrogen peroxide, ultraviolet radiation, and high pH (alkaline hydrolysis). Due to the broad nature of the study, pesticide compounds were analyzed as multiple mixes broken into two groups based on analytical methods, those analyzed by GC/ECD and those by LC/MS. Combinations of reactive disinfectant/oxidant and pesticide most likely to lead to significant degradate formation within water utilities were quantitatively identified.;Results from the screening study portion of this work were prioritized based on reactivity, anticipated occurrence, anticipated toxicity implications, and other considerations. The most important systems were then studied in detail to determine major degradation products, kinetic rates, and other information specific to the disinfectant/oxidant - pesticide combination. One detailed system in particular, fipronil and several commonly utilized oxidants, was investigated. Findings indicate that fipronil is readily degraded by free chlorine, chlorine dioxide and permanganate but not by monochloramine. Furthermore, permanganate oxidation produces a degradation byproduct, fipronil sulfone, which accumulates within the system if no other oxidant is utilized.;This body of work provides highly valuable information on the most reactive oxidant/pesticides systems, signifying the highest potential for degradation formation. Additionally, detailed information on a widely used insecticide is supplied. This work helps to direct future research and provides treatment facilities guidance as to relative removals of problematic pesticide compounds as well as an initial alert to future potential problems arising from degradate formation.
机译:筛选了60多种农药(除草剂,杀虫剂和杀真菌剂)的全面组合,这些农药在典型的饮用水条件和剂量下具有与环境相关的浓度(低microg / L)代表各种类别的反应性。检查了水处理系统中最常见的氧化剂/转化剂的反应性,包括游离和混合的氯,二氧化氯,锰酸锰,臭氧,过氧化氢,紫外线和高pH(碱性水解)。由于研究的广泛性,根据分析方法,将农药化合物分为多种混合物进行了分析,分为两组,分别为GC / ECD分析法和LC / MS分析法。定量确定了最有可能导致自来水公司内明显降解的反应性消毒剂/氧化剂和农药的组合。;根据反应性,预期的发生,预期的毒性影响和其他考虑因素,对这项工作的筛选研究部分的结果进行了优先排序。然后,对最重要的系统进行了详细研究,以确定主要的降解产物,动力学速率以及其他特定于消毒剂/氧化剂-农药组合的信息。研究了一种详细的系统,特别是氟虫腈和几种常用的氧化剂。发现表明氟虫腈很容易被游离氯,二氧化氯和高锰酸盐降解,但不被一氯胺降解。此外,高锰酸盐氧化会产生降解副产物氟虫腈,如果不使用其他氧化剂,则会在系统中累积。该工作组提供了关于最具活性的氧化剂/农药系统的极有价值的信息,这表明降解形成的可能性最高。此外,还提供了有关广泛使用的杀虫剂的详细信息。这项工作有助于指导未来的研究,并为处理设备中有关问题农药化合物的相对清除提供指导,并为因降解形成而引起的未来潜在问题提供初步警报。

著录项

  • 作者

    Chamberlain, Evelyn Fay.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Environmental Sciences.;Engineering Civil.;Water Resource Management.;Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:41

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