生物炭
厌氧消化
甲烷
废物管理
磷
环境科学
食物垃圾
制浆造纸工业
无氧运动
化学
热解
工程类
生物
生理学
有机化学
作者
Zhaoxia Wang,Lili Li,Hongyuan Gao,Junqiu Jiang,Qingliang Zhao,Xinwen Li,Wangyang Mei,Qingwei Gao,Huimin Zhou,Kun Wang,Liangliang Wei
标识
DOI:10.1016/j.biortech.2024.130987
摘要
Biochar has been proved to improve methane production in high solids anaerobic co-digestion (HS-AcoD) of dewatered sludge (DS) and food waste (FW), but its potential mechanism for simultaneous methane production and phosphorus (P) transformation has not been sufficiently revealed. Results showed that the optimal preparation temperature and dosage of sludge-based biochar were selected as 300 °C and 0.075 g·g−1, respectively. Under this optimized condition, the methane production of the semi-continuous reactor increased by 54%, and the active phosphorus increased by 18%. The functional microorganisms, such as Methanosarcina, hydrogen-producing, sulfate-reducing, and iron-reducing bacteria, were increased. Metabolic pathways associated with sulfate reduction and methanogenesis, especially hydrogenotrophic methanogenesis, were enhanced, which in turn promoted methanogenesis and phosphorus transformation and release. This study provides theoretical support for simultaneously recovery of carbon and phosphorus resources from DS and FW using biochar.
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