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Stereoselective environmental fate of fosthiazate in soil and water-sediment microcosms

机译:土壤和水沉积物微观散滤液的立体选择性环境命运

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摘要

The stereoselective fates of chiral pesticides in the environment has been reported in many studies. However, there is little data focused on the fate of chiral fosthiazate in the soil and aquatic ecosystems at chiral view. This study investigated the stereoselective fate of fosthiazate in the soil and aquatic ecosystems using ultra-performance liquid chromatography tandem mass spectrometry (UPLC-MS/MS) and liquid chromatography tandem time-of-flight mass spectrometry (LC-TOF/MS/MS). Significant stereoselective degradation among four fosthiazate stereoisomers were found in both greenhouse soil and water-sediment microcosms. In greenhouse soil, (1R,3S)-fosthiazate degraded faster than other three stereoisomers with the half-life of 2.7 d. The fosthiazate stereisomers in the seawater-sediment microcosm degraded more rapidly than in the river water-sediment microcosm. However, (1S,3R)-fosthiazate and (1S,3S)-fosthiazate possessed shorter degradation half-lives than their enantiomers in both microcosms, with the half-lives ranging from 3.4 d to 15.8 d. Ten degradation products were identified in the water-sediment microcosms, and, six of them were reported for the first time. Oxidation and hydrolysis were confirmed as the main degradation pathways of fosthiazate in the water-sediment microcosms. Our results revealed that the (1R,3S)-fosthiazate and (1R,3R)-fosthiazate may cause more serious eco-toxicity due to the longer half-lives than the other two stereoisomers in environment.
机译:许多研究报告了环境中手性农药的立体选择性束缚。然而,在手性观点的土壤和水生生态系统中,几乎没有专注于手性亚辛酸酯的命运。本研究调查了使用超级性液相色谱串联质谱(UPLC-MS / MS)和液相色谱串联飞行时间质谱法(LC-TOF / MS / MS)的土壤和水生生态系统在土壤和水生生态系统中的立体选择性命运。(LC-TOF / MS / MS) 。在温室土壤和水沉积物微观中发现了四种贫膦酸盐立体异构体之间的显着立体选择性降解。在温室土壤中,(1R,3S) - 重量比其他三种立体异构体更快地降解2.7天。海水沉积物中的灭菌剂态菌剂比河水沉积物微观迅速更快地降解。然而,(1S,3R) - 重量和(1S,3S) - 从两种微观体中的对映体具有较短的降解半衰期,半衰期范围为3.4 d至15.8天。在水沉积物微观中鉴定出十种降解产物,第一次报告其中六个。确认氧化和水解作为水沉积物微观散膦酸酯的主要降解途径。我们的研究结果表明,(1R,3S) - 硫化物和(1R,3R) - 羟化酯可能导致比环境中其他两个立体异构体更长的半衰期导致更严重的生态毒性。

著录项

  • 来源
    《Environmental research》 |2021年第3期|110696.1-110696.8|共8页
  • 作者单位

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

    Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China;

    Department of Chemistry College of Sciences Nanjing Agricultural University Nanjing 210095 China;

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

    Department of Pesticide Science College of Plant Protection Nanjing Agricultural University State & Local Joint Engineering Research Center of Green Pesticide Invention and Application Nanjing 210095 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fosthiazate; Chirality; Mass spectrometry; Environmental implications; Degradation pathway;

    机译:寄生酯;手平性;质谱;环境影响;降解途径;
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