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Bioelectrohydrogenesis and inhibition of methanogenic activity in microbial electrolysis cells - A review

机译:微生物电解细胞中甲状腺活性的生物电解 - 评论

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摘要

Microbial electrolysis cells (MECs) are a promising technology for biological hydrogen production. Compared to abiotic water electrolysis, a much lower electrical voltage (similar to 0.2 V) is required for hydrogen production in MECs. It is also an attractive waste treatment technology as a variety of biodegradable substances can be used as the process feedstock. Underpinning this technology is a recently discovered bioelectrochemical pathway known as "bioelectrohydrogenesis". However, little is known about the mechanism of this pathway, and numerous hurdles are yet to be addressed to maximize hydrogen yield and purity. Here, we review various aspects including reactor configurations, microorganisms, substrates, electrode materials, and inhibitors of methanogenesis in order to improve hydrogen generation in MECs.
机译:微生物电解细胞(MEC)是生物氢生产的有希望的技术。 与非生物水电解相比,在MEC中氢产生需要更低的电压(类似于0.2V)。 它还具有吸引人的废物处理技术,因为各种可生物降解物质可用作过程原料。 支撑该技术是最近发现的生物电化学途径,称为“生物电化氢”。 然而,关于该途径的机制很少,并且尚未解决众多障碍以使氢产率和纯度最大化。 在这里,我们审查了包括反应器配置,微生物,衬底,电极材料和甲状腺发生抑制剂的各种方面,以改善MEC中的氢气。

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