沼渣
产酸作用
厌氧消化
甲烷菌
食物垃圾
污水污泥
化学
产甲烷
生物燃料
制浆造纸工业
废物管理
沼气
甲烷
污水处理
环境化学
食品科学
有机化学
工程类
作者
Qiuxiang Xu,Liwen Luo,Dongyi Li,Davidraj Johnravindar,Sunita Varjani,Jonathan W.C. Wong,Jun Zhao
标识
DOI:10.1016/j.biortech.2022.127765
摘要
This work reported a new waste functionalization and utilization method, which use digestate to prepare hydrochar to improve methane production from food waste (FW) and sewage sludge (SS). Experimental results presented that 10 g/L hydrochar obtained the cumulative methane production of 133.11 ± 1.18 mL/g volatile solids added, 26.99 % higher than that without hydrochar addition. By monitoring the conversion of model metabolic intermediates, 10 g/L hydrochar was determined to favor hydrolysis, acidogenesis and methonogenesis bio-processes involved in methane production, thus improving the degradation of solubilized organics and consumption of short-chain fatty acids (SCFAs) during the co-digestion. Microbial investigation revealed that 10 g/L hydrochar enriched the microbes relevant to methane production (e.g., Methanosaeta and Syntrophomonas), but reduced the abundances of hydrolysis- and acidogenesis-related microbes (e.g., Acinetobacter). This hydrochar-based preparation and utilization strategy might offer a novel paradigm for waste-control-waste, bringing economic and environmental benefits.
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