首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Simultaneous synergistic effects of graphite addition and co-digestion of food waste and cow manure: Biogas production and microbial community
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Simultaneous synergistic effects of graphite addition and co-digestion of food waste and cow manure: Biogas production and microbial community

机译:食品废物和牛粪的石墨加法和共消化的同时协同效应:沼气生产和微生物群落

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摘要

The effects of graphite on the anaerobic digestion of food waste (FW), cow manure (CM) and its mixture (FW/CM) via batch experiments under mesophilic conditions have been investigated in this study. Maximum biogas production with graphite addition for FW + 1 g/L, CM + 1.5 g/L and FW/CM + 0.75 g/L are 1128.46, 829.6 and 1471.1 mL/gVS respectively. Additionally, this study investigates the link between microbial community structure and biogas production when graphite addition of anaerobic digester was conducted. Based on 16S rRNA gene amplicon sequencing results, Aminiphilus (13-14%), Actinobaculum (13-15%) and Clostridium (12-18%) were the predominant bacterial genera in graphite-added FW, CM and FW/CM reactors, respectively. Comparatively higher biogas production of FW/CM synergistically affected by abundances of Clostridium as well as co-digestion in this anaerobic digestion setup. Methanosaeta was the most abundant methanogen in the graphite added digesters; however, the relative abundance of these genera was different.
机译:本研究研究了石墨对食物废物(FW),牛粪(CM),牛粪(CM)及其混合物(FW / cm)的厌氧消解的影响已经在本研究中研究过。具有石墨的最大沼气制备用于FW + 1g / L,Cm + 1.5g / L和FW / cm + 0.75g / L分别为1128.46,829.6和1471.1ml / gvs。此外,本研究调查当进行厌氧蒸煮器的石墨添加时微生物群落结构和沼气产生之间的联系。基于16S rRNA基因扩增子测序结果,氨基杆菌(13-14%),actinobaculum(13-15%)和梭菌(12-18%)是石墨加入的FW,CM和FW / CM反应器中的主要细菌属,分别。相对较高的沼气生产FW / cm的速度受到梭菌的丰富影响以及在这种厌氧消化设置中的共消化。 Methanosaeta是石墨中最丰富的甲蛋白酶上添加的消化器;然而,这些属的相对丰度是不同的。

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