羧酸作为石油烃生物降解标志物的质谱分析

IF 11.1 2区 化学 Q1 CHEMISTRY, ANALYTICAL
Kevin Iyere Ehiosun , Régis Grimaud , Ryszard Lobinski
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引用次数: 5

摘要

代谢物被认为是细菌降解碳氢化合物的标记物,其表征正变得越来越重要。多年来,羧酸已被用作好氧和厌氧烃生物降解的有用指标。这种兴趣伴随着广泛和稳健的分析方法的发展,用于监测,非靶向鉴定,以及复杂基质中羧酸的特异性和敏感性测定。这篇综述批判性地讨论了质谱法作为一种可靠的分析技术来鉴定和量化羧酸代谢物。注意样品前处理、选择性基团预浓缩和质谱前的气液相色谱,以减轻基质效应和电离歧视。综述了近年来质谱法在羧酸监测和烃类生物降解评价中的具体应用。目前,没有单一的技术是足以全面分析羧酸。通过质谱法直接表征羧酸是最终目标,但尽管最近取得了重大进展,挑战仍然存在。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mass spectrometric analysis for carboxylic acids as viable markers of petroleum hydrocarbon biodegradation

The characterization of metabolites, which are considered markers of bacterial degradation of hydrocarbons, is gaining in importance. Over the years, carboxylic acids have served as useful indicators of aerobic and anaerobic hydrocarbon biodegradation. This interest has been accompanied by the extensive and robust development of analytical methods for monitoring, untargeted identification, and specific and sensitive determination of carboxylic acids in complex matrices. This review discusses critically the state-of-the-art of mass spectrometry as a reliable analytical technique to identify and quantify carboxylic acid metabolites. Attention is paid to sample pre-treatment, selective group pre-concentration, and gas and liquid chromatography preceding mass spectrometry to alleviate matrix effects and ionization discrimination. Recent specific applications of mass spectrometry in monitoring carboxylic acids for assessing hydrocarbon biodegradation are reviewed. Presently, no single technique is sufficient for holistic profiling of carboxylic acids. The direct characterization of carboxylic acids by mass spectrometry is the ultimate goal but despite recent significant developments, challenges persist.

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来源期刊
Trends in Environmental Analytical Chemistry
Trends in Environmental Analytical Chemistry Chemistry-Analytical Chemistry
CiteScore
21.20
自引率
2.70%
发文量
34
审稿时长
44 days
期刊介绍: Trends in Environmental Analytical Chemistry is an authoritative journal that focuses on the dynamic field of environmental analytical chemistry. It aims to deliver concise yet insightful overviews of the latest advancements in this field. By acquiring high-quality chemical data and effectively interpreting it, we can deepen our understanding of the environment. TrEAC is committed to keeping up with the fast-paced nature of environmental analytical chemistry by providing timely coverage of innovative analytical methods used in studying environmentally relevant substances and addressing related issues.
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