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微生物电解池与厌氧消化集成系统中的沼气升级性能及潜在机制

Biogas upgrading performance and underlying mechanism in microbial electrolysis cell and anaerobic digestion integrated system.

作者信息

Wei Yufang, Chen Wangmi, Hou Jiaqi, Qi Xuejiao, Ye Meiying, Jiang Ning, Meng Fanhua, Xi Beidou, Li Mingxiao

机构信息

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing 100012, PR China.

Shandong Industrial Engineering Laboratory of Biogas Production & Utilization, Key Laboratory of Biofuels, Shandong Provincial Key Laboratory of Synthetic Biology, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, PR China.

出版信息

Bioresour Technol. 2024 May;400:130683. doi: 10.1016/j.biortech.2024.130683. Epub 2024 Apr 8.

Abstract

The productivity and efficiency of two-chamber microbial electrolysis cell and anaerobic digestion integrated system (MEC-AD) were promoted by a complex of anaerobic granular sludge and iron oxides (Fe-AnGS) as inoculum. Results showed that MEC-AD with Fe-AnGS achieved biogas upgrading with a 23%-29% increase in the energy recovery rate of external circuit current and a 26%-31% decrease in volatile fatty acids. The energy recovery rate of MEC-AD remained at 52%-57%, indicating a stable operation performance. The selectively enriched methanogens and electroactive bacteria resulted in dominant hydrogenotrophic and acetoclastic methanogenesis in the cathode and anode chambers. Mechanistic analysis revealed that MEC-AD with Fe-AnGS led to specifically upregulated enzymes related to energy metabolism and electron transfer. Fe-AnGS as inoculum could improve the long-term operation performance of MEC-AD. Consequently, this study provides an efficient strategy for biogas upgrading in MEC-AD.

摘要

以厌氧颗粒污泥和铁氧化物(Fe-AnGS)的复合物作为接种物,促进了双室微生物电解池与厌氧消化集成系统(MEC-AD)的生产力和效率。结果表明,采用Fe-AnGS的MEC-AD实现了沼气升级,外电路电流的能量回收率提高了23%-29%,挥发性脂肪酸减少了26%-31%。MEC-AD的能量回收率保持在52%-57%,表明运行性能稳定。选择性富集的产甲烷菌和电活性细菌导致在阴极室和阳极室中分别以氢营养型和乙酸营养型产甲烷作用为主导。机理分析表明,采用Fe-AnGS的MEC-AD导致与能量代谢和电子转移相关的酶特异性上调。Fe-AnGS作为接种物可以改善MEC-AD的长期运行性能。因此,本研究为MEC-AD中的沼气升级提供了一种有效策略。

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