食物垃圾
沼气
厌氧消化
废物管理
生物能源
废弃物
甲烷
制浆造纸工业
生物燃料
硫化物
化学
环境科学
水解物
绿色废弃物
食品科学
水解
工程类
生物化学
堆肥
有机化学
作者
Siman Yang,Fan Luo,Jia Yan,Tianlang Zhang,Ziyan Xian,Weiyao Huang,Hongguo Zhang,Yongjian Cao,Lei Huang
标识
DOI:10.1016/j.biortech.2023.128712
摘要
A two-stage anaerobic digestion process utilizing food waste was investigated in this study, without any additive and co-digestion. Solid content, temperature and pH value were key controlling factors for hydrolysis, which results the optimized food waste hydrolysate with COD/VSfood waste of 2.67. Efficient biogas production was maintained in long-term operation (>150 d) without any additive, and methane production yields up to 699.7 mL·gVS-1·d-1 was achieved under organic loading rate (OLR) of 31.0 gVS·d-1. Methane production can be recovered (70.4 %) after temperature shock within 30 days. This study confirmed the possibility to establish two-stage food waste anaerobic digestion system under high organic load. pH, OLR, and temperature are key factors to maintain stable biogas production, while pH control was performed as a in situ sulfide control technology (75.8 % sulfide reduction). This study provides practical strategies for food waste utilization and decreasing carbon footprint.
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