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Bacterial biomarkers thermally released from dissolved organic matter

机译:从溶解的有机物中热释放的细菌生物标志物

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摘要

Hopane biomarker products were detected using microscale sealed vessel (MSSV) pyrolysis gas chromatography-mass spectrometry (GC-MS) analysis of dissolved organic matter from natural aquatic systems colonised by bacterial populations. MSSV pyrolysis can reduce the polyhydroxylated alkyl side chain of bacteriohopanepolyols, yielding saturated hopane products which are more amenable to GC-MS detection than their functionalised precursors. This example demonstrates how the thermal conditions of MSSV pyrolysis can reduce the biologically-inherited structural functionality of naturally occurring organic matter such that additional structural fragments can be detected using GC methods. This approach complements traditional analytical pyrolysis methods by providing additional speciation information useful for establishing the structures and source inputs of recent or extant organic material. (c) 2006 Published by Elsevier Ltd.
机译:使用微型密封容器(MSSV)热解气相色谱-质谱(GC-MS)分析细菌种群定殖的天然水生系统中的溶解有机物,检测烷生物标志物产品。 MSSV热解可以减少细菌杂多酚的多羟基烷基侧链,产生饱和的hop烷产物,比其功能化的前体更适合于GC-MS检测。该示例说明了MSSV热解的热条件如何降低天然存在的有机物的生物遗传结构功能,从而可以使用GC方法检测其他结构片段。该方法通过提供有助于建立新近或现存有机材料的结构和来源输入的附加物种信息,对传统的分析热解方法进行补充。 (c)2006年由Elsevier Ltd.发布。

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