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Effect of methanogenic substrates on anaerobic oxidation of methane and sulfate reduction by an anaerobic methanotrophic enrichment.

机译:产甲烷底物对甲烷厌氧氧化富集甲烷的厌氧氧化和硫酸盐还原的影响。

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摘要

Anaerobic oxidation of methane (AOM) coupled to sulfate reduction (SR) is assumed to be a syntrophic process, in which methanotrophic archaea produce an interspecies electron carrier (IEC), which is subsequently utilized by sulfate-reducing bacteria. In this paper, six methanogenic substrates are tested as candidate-IECs by assessing their effect on AOM and SR by an anaerobic methanotrophic enrichment. The presence of acetate, formate or hydrogen enhanced SR, but did not inhibit AOM, nor did these substrates trigger methanogenesis. Carbon monoxide also enhanced SR but slightly inhibited AOM. Methanol did not enhance SR nor did it inhibit AOM, and methanethiol inhibited both SR and AOM completely. Subsequently, it was calculated at which candidate-IEC concentrations no more Gibbs free energy can be conserved from their production from methane at the applied conditions. These concentrations were at least 1,000 times lower can the final candidate-IEC concentration in the bulk liquid. Therefore, the tested candidate-IECs could not have been produced from methane during the incubations. Hence, acetate, formate, methanol, carbon monoxide, and hydrogen can be excluded as sole IEC in AOM coupled to SR. Methanethiol did inhibit AOM and can therefore not be excluded as IEC by this study.
机译:甲烷的厌氧氧化(AOM)与硫酸盐还原(SR)耦合被认为是一种营养过程,其中甲烷营养古细菌产生种间电子载体(IEC),随后被硫酸盐还原细菌利用。在本文中,通过评估厌氧甲烷营养富集对产甲烷底物对AOM和SR的影响,测试了六种产甲烷底物作为候选IEC。乙酸盐,甲酸盐或氢的存在增强了SR,但没有抑制AOM,这些底物也没有触发甲烷生成。一氧化碳还增强了SR,但略微抑制了AOM。甲醇既不增强SR也不抑制AOM,而甲硫醇则完全抑制SR和AOM。随后,计算出在适用条件下,在哪些候选IEC浓度下,甲烷不再产生吉布斯自由能。这些浓度比散装液体中的最终候选IEC浓度至少低1000倍。因此,在培养过程中不可能从甲烷中生产出测试的候选IEC。因此,乙酸盐,甲酸盐,甲醇,一氧化碳和氢可以作为与SR耦合的AOM中的唯一IEC排除在外。甲硫醇确实抑制了AOM,因此本研究不能将其排除为IEC。

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