生物制氢
温室气体
可再生能源
生物燃料
生物强化
厌氧消化
废物转化为能源
废物管理
生物能源
环境科学
甲烷
生物技术
城市固体废物
工程类
生物
制氢
生态学
生物修复
催化作用
污染
生物化学
作者
Prawat Sukphun,Worapong Wongarmat,Tsuyoshi Imai,Sureewan Sittijunda,Sumate Chaiprapat,Alissara Reungsang
标识
DOI:10.1016/j.biortech.2023.129519
摘要
The transition to renewable energy sources is crucial to ensure a sustainable future. Although the sugar and ethanol industries benefit from this transition, there are untapped opportunities to utilize the waste generated from the sugar and ethanol process chains through two-stage anaerobic digestion (TSAD). This review comprehensively discusses the utilization of various sugarcane-based industrial wastes by TSAD for sequential biohydrogen and methane production. Factors influencing TSAD process performance, including pH, temperature, hydraulic retention time, volatile fatty acids and alkalinity, nutrient imbalance, microbial population, and inhibitors, were discussed in detail. The potential of TSAD to reduce emissions of greenhouse gases is demonstrated. Recent findings, implications, and promising future research related to TSAD, including the integration of meta-omics approaches, gene manipulation and bioaugmentation, and application of artificial intelligence, are highlighted. The review can serve as important literature for the implementation, improvement, and advancements in TSAD research.
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