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Effect of chemical structure of lignite and high-volatile bituminous coal on the generation of biogenic coalbed methane

机译:褐煤和高挥发分烟煤化学结构对生物成因煤层气生成的影响

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Biogenic coalbed methane has been attracted much attention due to massive reserves and green performance, but the current research is relatively weak. To further investigate its formation mechanism, the experimental simulation of biogas generation was performed by using lignite, high-volatile bituminous coals and their treated coals as substrates for 90 days. The results show that the lignite has a greater biogas potential than high-volatile bituminous coal in this study. Total gas production in lignite groups (L-BZ-1 and L-LJ-1) is 12.6% more than the bituminous coal groups in the experimental simulation. This is because the lignite has a low degree of thermal evolution and rich in soluble organic matter: chloroform asphalt "A" (CAA), which plays an important role in microbial metabolism to produce biogas. The CAA in coal has a conversion rate of 3.08 mL/g into biogas in this experimental simulation. The saturated hydrocarbons and nonhydrocarbons are more biodegradable components in the CAA. In saturated hydrocarbons, the n-alkanes with shorter chains or an odd carbon number are preferentially degraded. In the experimental simulation, biogas generation results in the consumption of a large number of organic matters with heteroatomic groups such as hydroxyl, carboxyl, pyridine and nitrogen oxides. Aliphatics show a stronger bioactivity than aromatics. The aromatic structure in coal is a few biodegraded in the later stage.
机译:由于大量的储量和绿色性能,生物源煤层气引起了广泛关注,但目前的研究相对薄弱。为了进一步研究其形成机理,以褐煤,高挥发性烟煤及其经处理的煤为基质进行了90天的沼气生成实验模拟。结果表明,在这项研究中,褐煤比高挥发性烟煤具有更大的沼气潜力。在实验模拟中,褐煤组(L-BZ-1和L-LJ-1)的总天然气产量比烟煤组高12.6%。这是因为褐煤具有较低的热释放度,并且富含可溶性有机物:氯仿沥青“ A”(CAA),它在微生物代谢产生沼气中起着重要作用。在此实验模拟中,煤中的CAA转化为沼气的转化率为3.08 mL / g。饱和烃和非烃是CAA中更易生物降解的组分。在饱和烃中,具有较短链或奇碳数的正构烷烃优先降解。在实验模拟中,沼气的产生导致消耗了大量带有杂原子基团的有机物,例如羟基,羧基,吡啶和氮氧化物。脂肪族化合物显示出比芳香族化合物更强的生物活性。煤中的芳香结构在后期会被一些生物降解。

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