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Kinetic bromine isotope effect: example from the microbial debromination of brominated phenols

机译:动力学溴同位素效应:以溴化苯酚的微生物脱溴为例

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The increasing use of kinetic isotope effects for environmental studies has motivated the development of new compound-specific isotope analysis techniques for emerging pollutants. Recently, high-precision bromine isotope analysis in individual brominated organic compounds was proposed, by the coupling of gas chromatography to a multi-collector inductively coupled plasma mass spectrometer using strontium as an external spike for instrumental bias correction. The present study, for the first time, demonstrates an application of this technique for determining bromine kinetic isotope effects during biological reaction, focusing on the reductive debromination of brominated phenols under anaerobic conditions. Results show bromine isotope enrichment factors (ε) of ?0.76±0.08, ?0.46±0.19, and ?0.20±0.06‰for the debromination of 4-bromophenol, 2,4-dibromophenol, and 2,4,6-tribromophenol, respectively. These values are rather low, yet still high enough to be obtained with satisfying certainty. This further implies that the analytical method may be also appropriate for future environmental applications.
机译:动力学同位素效应在环境研究中的越来越多的使用,推动了针对新兴污染物的新型化合物特异性同位素分析技术的发展。近来,通过将气相色谱法耦合到使用锶作为外部尖峰的多收集器电感耦合等离子体质谱仪上,提出了一种单独的溴化有机化合物的高精度溴同位素分析方法,用于仪器偏差校正。本研究首次证明了该技术在确定生物反应过程中溴动力学同位素效应方面的应用,重点是在厌氧条件下溴化苯酚的还原脱溴作用。结果表明,对于4-溴苯酚,2,4-二溴苯酚和2,4,6-三溴苯酚的脱溴,溴同位素富集因子(ε)分别为0.76±0.08、0.46±0.19和0.20±0.06‰。 。这些值相当低,但仍然足够高,可以肯定地获得。这进一步暗示该分析方法也可能适用于未来的环境应用。

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