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Photochemical Transformations of Dichloroacetamide Safeners

机译:二氯乙酰胺安全剂的光化学转化

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摘要

Safeners are widely used ingredients in commercial herbicide formulations, but their environmental fate has garnered relatively little scrutiny because of their classification as "inert" by the US EPA. Here, we investigated the photolysis of one popular class of safeners, dichloroacetamides, to better understand their persistence and formation potential for bioactive transformation products in surface waters. Of four commonly used dichloracetamide safeners only benoxacor underwent direct photolysis. Benoxacor had a half-life of 7.7 min when irradiated at pH 7, thus photolysis will likely be an important fate pathway in surface waters. Other dichloroacetamide safeners AD-67, dichlormid, and furilazole, while resistant to direct photolysis, were slowly degraded by indirect photolysis pathways in the presence of common photosensitizers including nitrate, nitrite, and humic acids. Half-lives of these compounds were greater than 8 hours. Reactive entities involved in these reactions are likely •OH and 1O2 as verified by selective quenchers, such as isopropanol (•OH) and sodium bromate (1O2). Where possible, we identified photoproducts using NMR and high-resolution mass spectrometry. Only benoxacor photolysis yielded detectable and identifiable transformation products. These products were generally more polar, and were entirely dechlorinated through photolysis, suggesting they are likely to have limited bioactivity relative to benoxacor.
机译:安全剂是商用除草剂配方中广泛使用的成分,但由于其被美国EPA归类为“惰性”,因此其环境命运受到的审查较少。在这里,我们研究了一种常见的安全剂二氯乙酰胺的光解作用,以更好地了解其在地表水中生物活性转化产物的持久性和形成潜力。在四种常用的二氯乙酰胺安全剂中,只有苯氧沙星进行了直接光解。在pH为7时,Benoxacor的半衰期为7.7分钟,因此光解可能是地表水中重要的命运途径。其他二氯乙酰胺安全剂AD-67,二氯甲酰胺和呋喃唑虽然可以抵抗直接光解,但在常见的光敏剂(包括硝酸盐,亚硝酸盐和腐殖酸)的存在下,会通过间接光解途径缓慢降解。这些化合物的半衰期大于8小时。经选择性淬灭剂证实,参与这些反应的反应性实体可能是•OH和1O2,例如异丙醇(•OH)和溴酸钠(1O2)。在可能的情况下,我们使用NMR和高分辨率质谱鉴定了光产物。只有贝诺沙克光解产生可检测和可鉴定的转化产物。这些产品通常更具极性,并且通过光解作用被完全脱氯,这表明它们相对于贝诺沙星的生物活性可能有限。

著录项

  • 作者

    Kral, Andrew.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Environmental engineering.
  • 学位 M.S.
  • 年度 2018
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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