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Geochemical characteristics of biodegraded natural gas and its associated low molecular weight hydrocarbons

机译:生物降解天然气的地球化学特征及其相关的低分子量碳氢化合物

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After analyzing the molecular and isotopic compositions of 11 gas samples from Baka Gas Field, as well as the low molecular weight hydrocarbons (LMWHs) associated with them, the two types of natural gases are identified: biodegraded and non-biodegraded gases. No distinctions in molecular and isotopic compositions are observed between biodegraded and non-biodegraded methane, which may be partially due to the great solubility of methane in water. Anomalous molecular compositions and carbon and hydrogen isotopic ratios are observed among the biodegraded C2+ gas components, which become more significantly fractionated in propane than in ethane, most probably due to their selective depletion by different strains of bacteria. The biodegradation resistance for C6-C7 LMWH5 associated with gases from Baka Gas Field follow the series Dimethylbutanes > Cyclohexane > Methylcyclopentane > 2-Methylpentane > 3-Methylpentane; Dimethylpentanes, 1,1-Dimethylcyclopentane and 1,2-Dimethylcyclopentanes > Methylcyclohexane >1,3-Dimethylcyclopentanes > 2-Methylhexane > 3-Methylhexane, respectively. Within the identical carbon numbers, two characteristics of biodegradation susceptibility for C5-C7 LMWH5 are observed: total poly branched alkanes are more resistant to biodegradation than cycloalkanes, and mono-branched ones tend to be depleted by bacteria more easily than cycloalkanes; and isomers with adjacent methyl groups tend to be more resistant to biodegradation. These two characteristics could be effective tools for the identification of biodegraded hydrocarbons and for the determination of the degree of bacterial decomposition. After comparison with previous studies, it is evident that the varieties in bacteria strains result in the discrepancy of biodegradation efficiency for certain light hydrocarbon isomers. This research improves the understanding of the geochemical characteristics of biodegraded gases and provides additional tools for the identification of biodegraded gases and their degree of biodegradation. (C) 2017 Published by Elsevier B.V.
机译:在分析来自巴卡气田的11个气体样品的分子和同位素组合物中,以及与它们相关的低分子量烃(LMWH),鉴定了两种类型的天然气:生物降解和非生物降解的气体。在生物降解和非生物降解的甲烷之间观察到分子和同位素组合物中没有区别,这可能部分是由于甲烷在水中的溶解度很大。在生物降解的C2 +气体组分中观察到异常的分子组合物和碳和氢同位素比,其在丙烷中比丙烷更显着分馏,大部分可能是由于它们不同菌株的细菌选择性耗尽。与巴卡气田的气体相关的C6-C7 LMWH5的生物降解性均遵循甲基丁烷>环己烷>甲基环戊烷> 2-甲基戊烷> 3-甲基戊烷;二甲基戊烷,1,1-二甲基环戊烷和1,2-二甲基环戊烷>甲基环己烷> 1,3-二甲基环戊烷> 2-甲基己烷> 3-甲基己烷。在相同的碳数中,观察到用于C5-C7 LMWH5的两种生物降解敏感性的特征:总聚支化烷烃比环烷烃更耐生物降解,并且单支链往往比环烷烃更容易被细菌耗尽;与相邻甲基的异构体往往更耐生物降解。这两个特征可能是用于鉴定生物降解的烃的有效工具和用于测定细菌分解程度。在与先前的研究比较之后,显然细菌菌株的品种导致某些轻烃异构体的生物降解效率的差异。该研究改善了对生物降解气体的地球化学特性的理解,并提供了额外的工具,用于鉴定生物降解的气体及其生物降解程度。 (c)2017年由Elsevier B.V发布。

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