Hydrochar-Facilitated Anaerobic Digestion: Evidence for Direct Interspecies Electron Transfer Mediated through Surface Oxygen-Containing Functional Groups

产甲烷 甲烷菌 厌氧消化 化学 甲烷 环境化学 污水污泥 生物量(生态学) 食品科学 污水处理 环境工程 生物 生态学 有机化学 环境科学
作者
Shuang Ren,Muhammad Usman,Daniel C.W. Tsang,Sompong O‐Thong,İrini Angelidaki,Xiangdong Zhu,Shicheng Zhang,Gang Luo
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:54 (9): 5755-5766 被引量:379
标识
DOI:10.1021/acs.est.0c00112
摘要

Acceleration of the anaerobic digestion (AD) process is crucial to achieving energy-efficient recycling of organic wastes. Hydrochar is produced by hydrothermal liquefaction of biomass, yet its application in the AD process is rarely reported. The present study showed that sewage sludge-derived hydrochar (SH) enhanced the methane production rate of glucose by 37%. SH increased the methane production rate from acetate but did not affect acidification and the methane production rate from H 2 /CO 2 . SH enhanced hydrogenotrophic methanogenesis, which could be due to direct interspecies electron transfer (DIET) by converting H +, e –, and CO 2 to methane. Trichococcus and Methanosaeta were dominant in the AD process with SH. Label-free proteomic analysis showed Methanosaeta was involved in DIET as reflected by the up-regulation of proteins involved in hydrogenotrophic methanogenesis. Hydrochars derived from corn straw (CH), Enteromorpha algae (EH), and poplar wood (PH), as well as activated carbon (AC), were also tested in the AD process. SH, CH, and EH obviously increased the methane production rates, which were 39%, 15%, and 20% higher than the control experiment, respectively. It was neither electrical conductivity nor the total redox property of hydrochars and AC but the abundances of surface oxygen-containing functional groups that correlated to the methane production rates.
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