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与牛粪共消化提高全酒糟的沼气产量。

Improved biogas production from whole stillage by co-digestion with cattle manure.

机构信息

Department of Microbiology, Swedish University of Agricultural Sciences, Uppsala BioCenter, P.O. Box 7025, SE-750 07 Uppsala, Sweden.

出版信息

Bioresour Technol. 2012 Jun;114:314-9. doi: 10.1016/j.biortech.2012.03.005. Epub 2012 Mar 9.

Abstract

Whole stillage, as sole substrate or co-digested with cattle manure, was evaluated as substrate for biogas production in five mesophilic laboratory-scale biogas reactors, operating semi-continuously for 640 days. The process performance was monitored by chemical parameters and by quantitative analysis of the methanogenic and acetogenic population. With whole stillage as sole substrate the process showed clear signs of instability after 120 days of operation. However, co-digestion with manure clearly improved biogas productivity and process stability and indicated increased methane yield compared with theoretical values. The methane yield at an organic loading rate (OLR) at 2.8 g VS/(L×day) and a hydraulic retention time (HRT) of 45 days with a substrate mixture 85% whole stillage and 15% manure (based on volatile solids [VS]) was 0.31 N L CH(4)/gVS. Surprisingly, the abundance of the methanogenic and acetogenic populations remained relatively stable throughout the whole operation and was not influenced by process performance.

摘要

以全酒糟为唯一底物或与牛粪共消化,在五个中温实验室规模沼气反应器中进行沼气生产评估,运行时间为 640 天,半连续操作。通过化学参数和产甲烷菌和产乙酸菌种群的定量分析监测工艺性能。以全酒糟为唯一底物,在运行 120 天后,该过程明显显示出不稳定的迹象。然而,与粪便共消化明显提高了沼气生产力和过程稳定性,并与理论值相比表明甲烷产量增加。在有机负荷率(OLR)为 2.8 g VS/(L×天)和水力停留时间(HRT)为 45 天的条件下,底物混合物为 85%全酒糟和 15%粪便(基于挥发性固体[VS])时,甲烷产量为 0.31 N L CH(4)/gVS。令人惊讶的是,产甲烷菌和产乙酸菌种群的丰度在整个运行过程中相对稳定,不受工艺性能的影响。

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