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Synthesis and characterization of anaerobic degradation biomarkers of n-alkanes via hydroxylation/carboxylation pathways

机译:通过羟基化/羧化途径合成正构烷烃的厌氧降解生物标志物及其表征

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摘要

Metabolite profiling is a powerful method in research on anaerobic biodegradation of hydrocarbons. Hydroxylation and carboxylation are proposed pathways in anaerobic degradation but very little direct evidence is available about metabolites and signature biomarkers. 2-Acetylalkanoic acid is a potential signature metabolite because of its unique and specific structure among possible intermediates. A procedure for the synthesis of four homologues with various carbon chain lengths was proposed and the characteristics of 2-acetylalkanoic acid esters were investigated using four derivatization processes, namely methyl, ethyl, n-butyl and trimethylsilyl esterification. Four intermediate fragments observed were at m/z 73 + 14n, 87 + 14n, 102 + 14n (n = 1, 2 and 4 for methyl, ethyl and n-butyl ester, respectively) and [M - 42](+) for three of the derivatization methods. For silylation, characteristic ions were observed at m/z 73, 117, [M - 42](+) and [M - 55](+). These are basic and significant data for the future identification of potential intermediates of the hydroxylation and carboxylation pathways in hydrocarbon degradation.
机译:代谢物分析是碳氢化合物厌氧生物降解研究的有力方法。羟化和羧化是厌氧降解的拟议途径,但是关于代谢物和生物标志物的直接证据很少。 2-乙酰基链烷酸是潜在的标志性代谢物,因为其在可能的中间体中具有独特而特定的结构。提出了合成具有不同碳链长度的四个同系物的方法,并使用甲基,乙基,正丁基和三甲基甲硅烷基酯化四个衍生化方法研究了2-乙酰基链烷酸酯的特性。观察到的四个中间片段分别为m / z 73 + 14n,87 + 14n,102 + 14n(对于甲基,乙基和正丁酯,分别为n = 1、2和4),对于[M-42](+),为三种衍生方法。对于甲硅烷基化,在m / z 73、117,[M-42](+)和[M-55](+)处观察到特征离子。这些是基础和重要数据,可用于将来鉴定烃降解中羟化和羧化途径的潜在中间体。

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