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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Anaerobic digestion of municipal solid waste composed of food waste, wastepaper, and plastic in a single-stage system: Performance and microbial community structure characterization
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Anaerobic digestion of municipal solid waste composed of food waste, wastepaper, and plastic in a single-stage system: Performance and microbial community structure characterization

机译:在单级系统中厌氧消化由食物残渣,废纸和塑料组成的城市固体废物:性能和微生物群落结构表征

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摘要

The performance of municipal organic solid waste anaerobic digestion was investigated using a single-stage bioreactor, and the microbial community structures were characterized during the digestion. The results showed that the biogas and methane production rates were 592.4 and 370.1. L/kg with volatile solid added at the ratio of 2:1:1 for food waste, wastepaper, and plastic based on dry weight. The methane volume concentration fluctuated between 44.3% and 75.4% at steady stage. Acetic acid, propionic acid, and butyric acid were the major volatile fatty acids produced during the digestion process. The anaerobic process was not inhibited by the accumulation of ammonia and free ammonia. The bacterial community was found to consist of at least 21 bands of bacteria and 12 bands of archaea at the steady state. All of the results indicated that the mixture of food waste, wastepaper, and plastic could be efficiently co-digested using the anaerobic digestion system.
机译:利用单级生物反应器研究了城市有机固体废物厌氧消化的性能,并在消化过程中表征了微生物群落结构。结果表明,沼气和甲烷的生产率分别为592.4和370.1。 L / kg,对于食物垃圾,废纸和塑料,以干重为基准,以2:1:1的比例添加挥发性固体。在稳定阶段,甲烷体积浓度在44.3%和75.4%之间波动。乙酸,丙酸和丁酸是消化过程中产生的主要挥发性脂肪酸。厌氧过程不受氨和游离氨的积累抑制。在稳定状态下,发现细菌群落由至少21个细菌带和12个古细菌带组成。所有结果表明,使用厌氧消化系统可以有效地共同消化食物垃圾,废纸和塑料的混合物。

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