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在共培养产电菌和产甲烷菌的厌氧消化和微生物电解池耦合系统中提高甲烷产量。

Enhanced methane production in an anaerobic digestion and microbial electrolysis cell coupled system with co-cultivation of Geobacter and Methanosarcina.

机构信息

Key Laboratory of Environmental and Applied Microbiology, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, China; Environmental Microbiology Key Laboratory of Sichuan Province, Chengdu 610041, China.

Key Laboratory of Environmental and Applied Microbiology, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, China; Environmental Microbiology Key Laboratory of Sichuan Province, Chengdu 610041, China.

出版信息

J Environ Sci (China). 2016 Apr;42:210-214. doi: 10.1016/j.jes.2015.07.006. Epub 2015 Oct 23.

Abstract

The anaerobic digestion (AD) and microbial electrolysis cell (MEC) coupled system has been proved to be a promising process for biomethane production. In this paper, it was found that by co-cultivating Geobacter with Methanosarcina in an AD-MEC coupled system, methane yield was further increased by 24.1%, achieving to 360.2 mL/g-COD, which was comparable to the theoretical methane yield of an anaerobic digester. With the presence of Geobacter, the maximum chemical oxygen demand (COD) removal rate (216.8 mg COD/(L·hr)) and current density (304.3A/m(3)) were both increased by 1.3 and 1.8 fold compared to the previous study without Geobacter, resulting in overall energy efficiency reaching up to 74.6%. Community analysis demonstrated that Geobacter and Methanosarcina could coexist together in the biofilm, and the electrochemical activities of both were confirmed by cyclic voltammetry. Our study observed that the carbon dioxide content in total gas generated from the AD reactor with Geobacter was only half of that generated from the same reactor without Geobacter, suggesting that Methanosarcina may obtain the electron transferred from Geobacter for the reduction of carbon dioxide to methane. Taken together, Geobacter not only can improve the performance of the MEC system, but also can enhance methane production.

摘要

厌氧消化(AD)和微生物电解池(MEC)耦合系统已被证明是一种很有前途的生物甲烷生产工艺。本文发现,在 AD-MEC 耦合系统中,共培养产电菌 Geobacter 和产甲烷菌 Methanosarcina 后,甲烷产量进一步提高了 24.1%,达到 360.2 mL/g-COD,接近厌氧消化器的理论产甲烷量。在有产电菌 Geobacter 的存在下,最大化学需氧量(COD)去除率(216.8 mg COD/(L·hr))和电流密度(304.3 A/m³)分别比之前没有产电菌 Geobacter 的研究提高了 1.3 倍和 1.8 倍,总能量效率达到 74.6%。群落分析表明,产电菌 Geobacter 和产甲烷菌 Methanosarcina 可以在生物膜中共存,通过循环伏安法证实了两者的电化学活性。我们的研究观察到,含有产电菌 Geobacter 的 AD 反应器中产生的总气体中的二氧化碳含量仅为没有产电菌 Geobacter 的相同反应器的一半,这表明 Methanosarcina 可能从产电菌 Geobacter 获得电子,用于将二氧化碳还原为甲烷。综上所述,产电菌 Geobacter 不仅可以提高 MEC 系统的性能,还可以增强甲烷的生成。

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