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Identification and characterization of tebuconazole transformation products in soil by combining suspect screening and molecular typology

机译:结合可疑筛查和分子类型学对土壤中戊唑醇转化产物进行鉴定和表征

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摘要

Pesticides generate transformation products (TPs) when they are released into the environment. These TPs may be of ecotoxicological importance. Past studies have demonstrated how difficult it is to predict the occurrence of pesticide TPs and their environmental risk. The monitoring approaches mostly used in current regulatory frameworks target only known ecotoxicologically relevant TPs. Here, we present a novel combined approach which identifies and categorizes known and unknown pesticide TPs in soil by combining suspect screening time-of-flight mass spectrometry with in silica molecular typology. We used an empirical and theoretical pesticide TP library for compound identification by both non-target and target time-of-flight (tandem) mass spectrometry, followed by structural proposition through a molecular structure correlation program. In silica molecular typology was then used to group TPs according to common molecular descriptors and to indirectly elucidate their environmental parameters by analogy to known pesticide compounds with similar molecular descriptors. This approach was evaluated via the identification of TPs of the triazole fungicide tebuconazole occurring in soil during a field dissipation study. Overall, 22 empirical and 12 yet unknown TPs were detected, and categorized into three groups with defined environmental properties. This approach combining suspect screening time-of-flight mass spectrometry with molecular typology could be extended to other organic pollutants and used to rationalize the choice of TPs to be investigated towards a more comprehensive environmental risk assessment scheme. (C) 2015 Elsevier Ltd. All rights reserved.
机译:农药释放到环境中时会生成转化产物(TP)。这些TP可能具有生态毒理学重要性。过去的研究表明,预测农药TP的发生及其环境风险有多么困难。当前监管框架中最常用的监测方法仅针对已知的生态毒理学相关的TP。在这里,我们提出了一种新颖的组合方法,该方法通过将可疑的飞行时间质谱分析与硅胶分子类型学相结合,对土壤中已知和未知农药TP进行识别和分类。我们使用了经验性和理论性农药TP库,通过非目标和目标飞行时间(串联)质谱对化合物进行鉴定,然后通过分子结构相关程序进行结构命题。然后在二氧化硅分子类型学中,根据常见的分子描述符将TP进行分组,并通过类似于具有类似分子描述符的已知农药化合物的方法间接阐明其环境参数。在田间耗散研究期间,通过鉴定土壤中出现的三唑类杀菌剂戊唑醇的总磷来评估这种方法。总体上,检测到22个经验性TP和12个未知的TP,并将其分为具有定义的环境属性的三组。这种将可疑的飞行时间质谱分析与分子类型学结合起来的方法可以扩展到其他有机污染物,并用于合理化TPs的选择,以研究更全面的环境风险评估方案。 (C)2015 Elsevier Ltd.保留所有权利。

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