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Co-digestion of food waste and hydrothermal liquid digestate: Promotion effect of self-generated hydrochars

沼渣 甲烷八叠球菌 厌氧消化 化学 消化(炼金术) 无氧运动 食物垃圾 食品科学 环境化学 色谱法 甲烷 废物管理 生物 生理学 有机化学 工程类
作者
Mingshuai Shao,Chao Zhang,Xue Wang,Ning Wang,Qindong Chen,Guangyu Cui,Qiyong Xu
出处
期刊:Environmental science & ecotechnology [Elsevier BV]
卷期号:15: 100239-100239 被引量:25
标识
DOI:10.1016/j.ese.2023.100239
摘要

Hydrothermal treatment (HTT) can efficiently valorize the digestate after anaerobic digestion. However, the disposal of the HTT liquid is challenging. This paper proposes a method to recover energy through the anaerobic co-digestion of food waste and HTT liquid fraction. The effect of HTT liquid recirculation on anaerobic co-digestion performance was investigated. This study focused on the self-generated hydrochars that remained in the HTT supernatant after centrifugation. The effect of the self-generated hydrochars on the methane (CH4) yield and microbial communities were discussed. After adding HTT liquids treated at 140 and 180 °C, the maximum CH4 production increased to 309.36 and 331.61 mL per g COD, respectively. The HTT liquid exhibited a pH buffering effect and kept a favorable pH for the anaerobic co-digestion. In addition, the self-generated hydrochars with higher carbon content and large oxygen-containing functional groups remained in HTT liquid. They increased the electron transferring rate of the anaerobic co-digestion. The increased relative abundance of Methanosarcina, Syntrophomonadaceae, and Synergistota was observed with adding HTT liquid. The results of the principal component analysis indicate that the electron transferring rate constant had positive correlationships with the relative abundance of Methanosarcina, Syntrophomonadaceae, and Synergistota. This study can provide a good reference for the disposal of the HTT liquid and a novel insight regarding the mechanism for the anaerobic co-digestion.

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