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首页> 外文期刊>ChemSusChem >Persistent Hydrogen Production by the Photo-Assisted Microbial Electrolysis Cell Using a p-Type Polyaniline Nanofiber Cathode
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Persistent Hydrogen Production by the Photo-Assisted Microbial Electrolysis Cell Using a p-Type Polyaniline Nanofiber Cathode

机译:使用P型聚苯胺纳米纤维阴极光辅助微生物电解槽持续氢生产

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A microbial electrolysis cell, though considered as a promising, environmentally friendly technology for hydrogen production, suffers from concomitant production of methane. The high hydrogen/methane ratio at the initial operation stage decreases with time. Here we report for the first time the photoassisted microbial electrolysis cell (MEC) for persistent hydrogen production using polyaniline nanofibers as a cathode. Under 0.8 V external bias and laboratory fluorescent light illumination in a single-chamber MEC, continuous hydrogen production from acetate at a rate of 1.78 m(H2)(3)m(-3)d(-1) with 79.2% overall hydrogen recovery was achieved with negligible methane formation for six months. Energy efficiencies based on input electricity as well as input electricity plus substrate were 182 and 66.2 %, respectively. This was attributed to the p-type-semiconductor characteristics of polyaniline nanofibers in which photoexcited electrons are used to reduce protons at the surface and holes are reduced with electrons originating from acetate oxidation at the anode. This method can be extended to microbial wastewater treatment for hydrogen production.
机译:微生物电解细胞,虽然被认为是对氢气产生的有希望的环保技术,但伴随着甲烷的产生。初始操作阶段的高氢/甲烷比随时间降低。在这里,我们首次报告使用聚苯胺纳米纤维作为阴极的持续氢产生的第一次PhotoAcsisted微生物电解槽(MEC)。在单室MEC中的0.8V外部偏压和实验室荧光照射下,以1.78M(H2)(3)(-3)(-3)的速率为乙酸盐的连续氢气产生,总氢回收率为79.2%甲烷形成可忽略六个月。基于输入电力的能量效率以及输入电力加基材分别为182和66.2%。这归因于多酰胺纳米纤维的p型半导体特性,其中光透射电子用于减少表面上的质子,并且具有源自阳极的醋酸盐氧化的电子。该方法可以扩展到用于氢生产的微生物废水处理。

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