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首页> 外文期刊>Biomass & bioenergy >Coupling energy-production processes: The use of residues from bioethanol production to improve the anaerobic digestion of corn stover
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Coupling energy-production processes: The use of residues from bioethanol production to improve the anaerobic digestion of corn stover

机译:耦合能源生产过程:利用生物乙醇生产中的残留物改善玉米秸秆的厌氧消化

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摘要

Currently, industry is migrating towards sustainable practises, where the wastes produced in one process are used as feedstock for other productive purposes. In the present study, we show that a by-product from the fabrication of second-generation bioethanol can be used to improve the production of biogas from corn stover. The washing water generated during the pretreatment stage of bioethanol production was recovered and reused as a co-substrate for the anaerobic digestion of corn stover. This water contained high concentrations of lignocellulolytic enzymes that once added to the digester improved the methane production kinetics. In comparison with digestion in the absence of these extra enzymes, the ultimate methane yield (P) increased 42%, with a reduction in the lag-phase time (lambda) of 67% and an increase in the methane production rate (R-m) of almost 30%. These results were compared with those obtained during the co-digestion of corn stover and cattle manure, which is a well-known strategy to improve methane yields from lignocellulosic residues. However, despite the fact that the use of cattle manure improved methane yields, the results obtained using the enzyme-rich washing water were significantly better. The present study describes a simple strategy for the revalorisation of a by-product from the production of second-generation bioethanol.
机译:当前,工业正朝着可持续的方向发展,在这种实践中,一种过程中产生的废物被用作其他生产目的的原料。在本研究中,我们表明,第二代生物乙醇制造过程中产生的副产物可用于改善玉米秸秆生产沼气。回收在生物乙醇生产的预处理阶段产生的洗涤水,并将其作为共同底物再用于玉米秸秆的厌氧消化。该水中含有高浓度的木质纤维素分解酶,一旦添加到消化池中,便可以提高甲烷生成动力学。与不存在这些额外酶的情况下进行消化相比,最终甲烷产量(P)增加了42%,滞后时间(lambda)减少了67%,甲烷产生率(Rm)增加了7%。差不多30%将这些结果与玉米秸秆和牛粪共消化期间获得的结果进行了比较,这是提高木质纤维素残留物甲烷产量的众所周知的策略。但是,尽管使用牛粪可提高甲烷产量,但使用富含酶的洗涤水所获得的结果要好得多。本研究描述了从第二代生物乙醇生产中回收副产物的简单策略。

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