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Methylotrophic methanogenesis governs the biogenic coal bed methane formation in Eastern Ordos Basin, China

机译:甲基营养型甲烷化作用控制着鄂尔多斯盆地东部的生物型煤床甲烷形成

摘要

To identify the methanogenic pathways present in a deep coal bed methane (CBM) reservoir associated with Eastern Ordos Basin in China, a series of geochemical and microbiological studies was performed using gas and water samples produced from the Liulin CBM reservoir. The composition and stable isotopic ratios of CBM implied a mixed biogenic and thermogenic origin of the methane. Archaeal 16S rRNA gene analysis revealed the dominance of the methylotrophic methanogen Methanolobus in the water produced. The high potential of methane production by methylotrophic methanogens was found in the enrichments using the water samples amended with methanol and incubated at 25 and 35 A degrees C. Methylotrophic methanogens were the dominant archaea in both enrichments as shown by polymerase chain reaction (PCR)-denaturing gradient gel electrophoresis (DGGE). Bacterial 16S rRNA gene analysis revealed that fermentative, sulfate-reducing, and nitrate-reducing bacteria inhabiting the water produced were a factor in coal biodegradation to fuel methanogens. These results suggested that past and ongoing biodegradation of coal by methylotrophic methanogens and syntrophic bacteria, as well as thermogenic CBM production, contributed to the Liulin CBM reserves associated with the Eastern Ordos Basin.
机译:为了确定与中国鄂尔多斯盆地东部相关的深层煤层气(CBM)储层中的甲烷生成途径,利用柳林CBM储层中的天然气和水样进行了一系列地球化学和微生物学研究。煤层气的组成和稳定的同位素比表明甲烷是生物成因和热成因的混合来源。古细菌16S rRNA基因分析揭示了在生产的水中甲基营养型产甲烷菌Methanolobus的优势。甲基营养型产甲烷菌的甲烷生产潜力很高,使用甲醇修饰的水样在25和35 A的温度下进行富集时,甲基富营养型产甲烷菌是这两种富集中的主要古细菌,如聚合酶链反应(PCR)-变性梯度凝胶电泳(DGGE)。细菌16S rRNA基因分析表明,居住在产生的水中的发酵细菌,硫酸盐还原菌和硝酸盐还原菌是煤炭生物降解产生甲烷菌的一个因素。这些结果表明,甲基营养型产甲烷菌和滑膜细菌过去和正在进行的生物降解以及产热煤层气的产生,为与鄂尔多斯盆地东部相关的柳林煤层气储量做出了贡献。

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