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电化学-质谱法在环境中氧化过程的机理研究和模拟中的应用。

Electrochemistry-mass spectrometry for mechanistic studies and simulation of oxidation processes in the environment.

机构信息

Central Division of Analytical Chemistry, ZCH, Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.

出版信息

Anal Bioanal Chem. 2011 Feb;399(5):1859-68. doi: 10.1007/s00216-010-4575-x. Epub 2010 Dec 19.

DOI:10.1007/s00216-010-4575-x
PMID:21170519
Abstract

Electrochemistry (EC) coupled to mass spectrometry (MS) has already been successfully applied to metabolism research for pharmaceutical applications, especially for the oxidation behaviour of drug substances. Xenobiotics (chemicals in the environment) also undergo various conversions; some of which are oxidative reactions. Therefore, EC-MS might be a suitable tool for the investigation of oxidative behaviour of xenobiotics. A further evaluation of this approach to environmental research is presented in the present paper using sulfonamide antibiotics. The results with sulfadiazine showed that EC-MS is a powerful tool for the elucidation of the oxidative degradation mechanism within a short time period. In addition, it was demonstrated that EC-MS can be used as a fast and easy method to model the chemical binding of xenobiotics to soil. The reaction of sulfadiazine with catechol, as a model substance for organic matter in soil, led to the expected chemical structure. Finally, by using EC-MS a first indication was obtained of the persistence of a component under chemical oxidation conditions for the comparison of the oxidative stability of different classes of xenobiotics. Overall, using just a few examples, the study demonstrates that EC-MS can be applied as a versatile tool for mechanistic studies of oxidative degradation pathways of xenobiotics and their possible interaction with soil organic matter as well as their oxidative stability in the environment. Further studies are needed to evaluate the full range of possibilities of the application of EC-MS in environmental research.

摘要

电化学(EC)与质谱(MS)相结合已经成功应用于药物应用的代谢研究,特别是对于药物物质的氧化行为。外源性化学物质(环境中的化学物质)也会经历各种转化;其中一些是氧化反应。因此,EC-MS 可能是研究外源性化学物质氧化行为的合适工具。本文进一步评估了这种方法在环境研究中的应用,使用了磺胺类抗生素。磺胺嘧啶的结果表明,EC-MS 是一种在短时间内阐明氧化降解机制的强大工具。此外,还证明了 EC-MS 可用于模拟外源性化学物质与土壤的化学结合,作为一种快速简便的方法。磺胺嘧啶与儿茶酚的反应,作为土壤中有机物的模型物质,导致了预期的化学结构。最后,通过使用 EC-MS,首次获得了在化学氧化条件下一个成分的持久性,以比较不同类别的外源性化学物质的氧化稳定性。总的来说,通过仅使用几个示例,该研究表明 EC-MS 可作为一种通用工具,用于研究外源性化学物质的氧化降解途径的机制及其与土壤有机物的可能相互作用,以及它们在环境中的氧化稳定性。需要进一步的研究来评估 EC-MS 在环境研究中的应用的全部可能性。

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