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Insights in the anode chamber influences on cathodic bioelectromethanogenesis – systematic comparison of anode materials and anolytes

机译:阳极室中的见解对阴极生物电甲烷生成的影响–阳极材料和阳极电解液的系统比较

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摘要

Cathode and catholyte are usually optimized to improve microbial electrosynthesis process, whereas the anodic counter reaction was not systematically investigated and optimized for these applications yet. Nevertheless, the anolyte and especially the anode material can limit the cathodic bioelectrochemical process. This paper compares for the first time the performance of different anode materials as counter electrodes for a cathodic bioelectrochemical process, the bioelectromethanogenesis. It was observed that depending on the anode material the cathodic methane production varies from 0.96 µmol/d with a carbon fabric anode to 25.44 µmol/d with a carbon felt anode of the same geometrical surface area. The used anolyte also affected the methane production rate at the cathode. Especially, the pH of the anolyte showed an impact on the system; an anolyte with pH 5 produced up to 2.0 times more methane compared to one with pH 8.5. The proton availability is discussed as one reason for this effect. Although some of the measured effects cannot be explained completely so far this study advises researchers to strongly consider the anode impact during process development and optimization of a cathodic bioelectrochemical synthesis process.
机译:通常对阴极和阴极电解液进行优化以改善微生物的电合成过程,而对于这些应用,尚未对阳极逆反应进行系统地研究和优化。然而,阳极电解液,尤其是阳极材料会限制阴极生物电化学过程。本文首次比较了不同阳极材料作为阴极电极在生物化学甲烷生成过程中的性能。观察到,根据阳极材料的不同,阴极甲烷的产生量从碳纤维织物阳极的0.96 µmol / d到几何面积相同的碳毡阳极的25.44 µmol / d不等。用过的阳极电解液也影响阴极处的甲烷产生速率。特别是,阳极电解液的pH值对系统有影响。与pH 8.5相比,pH 5的阳极液产生的甲烷最多高2.0倍。质子可用性被讨论为造成这种影响的原因之一。尽管到目前为止尚无法完全解释某些测量的影响,但本研究建议研究人员在工艺开发和阴极生物电化学合成工艺的优化过程中强烈考虑阳极影响。

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