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The mechanisms of biogenic methane metabolism by synergistic biodegradation of coal and corn straw

机译:通过煤与玉米秸秆协同生物降解生物甲烷代谢机制

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摘要

The mechanisms associated with the biomethane metabolism through the synergistic biodegradation of both coal and corn straw were explored to improve the utilization rate of corn straw. This applies to the filling of the goaf with corn straw and the production of biomethane using indigenous bacteria in the mine water with coal. The results showed that new macromolecular substances (e.g., Tetracosane and Pentacosane) were produced on the third day. A lower coal rank leads to a lower biodegradation rate of low-molecular-weight substances (e.g., butyric acid and valeric acid). Under the addition of coal samples, the biodegradation rate of cellulose, hemicellulose and lignin in corn straw could reached up to 29.82%, 35.79% and 6.16%, respectively. The addition of corn straw promoted the complementary advantages of archaeal genera (such as Methanosarina and Methanospirillum) and decreased the adverse bacterial genera (such as Desulfovibrio and Pseudomonas) in the fermentation system of single coal.
机译:通过协同生物降解通过煤和玉米秸秆的协同生物降解来提高玉米秸秆的利用率与生物甲烷代谢相关的机制。这适用于利用玉米秸秆的填充物,并使用煤炭水中的土着细菌生产生物甲烷。结果表明,新型大分子物质(例如,四骨烷和五丁烷)在第三天生产。下煤等级导致低分子量物质的较低生物降解速率(例如,丁酸和戊酸)。在添加煤样中,玉米秸秆中的纤维素,半纤维素和木质素的生物降解率可分别达到29.82%,35.79%和6.16%。玉米秸秆的添加促进了古代属(如甲蛋白酶和甲烷台值)的互补优势,并在单煤的发酵系统中降低了不利的细菌属(如脱硫和假单胞菌)。

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