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Improving startup performance with carbon mesh anodes in separator electrode assembly microbial fuel cells

机译:通过隔板电极组件微生物燃料电池中的碳网阳极提高启动性能

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In a separator electrode assembly microbial fuel cell, oxygen crossover from the cathode inhibits current generation by exoelectrogenic bacteria, resulting in poor reactor startup and performance. To determine the best approach for improving startup performance, the effect of acclimation to a low set potential (-0.2V, versus standard hydrogen electrode) was compared to startup at a higher potential (+0.2V) or no set potential, and inoculation with wastewater or pre-acclimated cultures. Anodes acclimated to -0.2V produced the highest power of 1330±60mWm~(-2) for these different anode conditions, but unacclimated wastewater inocula produced inconsistent results despite the use of this set potential. By inoculating reactors with transferred cell suspensions, however, startup time was reduced and high power was consistently produced. These results show that pre-acclimation at -0.2V consistently improves power production compared to use of a more positive potential or the lack of a set potential.
机译:在隔板电极组件的微生物燃料电池中,来自阴极的氧气穿越会阻止外生电细菌产生电流,从而导致反应堆启动和性能不佳。为了确定改善启动性能的最佳方法,将适应低设定电势(-0.2V,相对于标准氢电极)的效果与在较高电势(+ 0.2V)或无设定电势下启动进行比较,并接种废水或预先适应的培养物。在这些不同的阳极条件下,适应-0.2V的阳极产生的最高功率为1330±60mWm〜(-2),但是尽管使用了此设定电位,但未经适应的废水接种却产生了不一致的结果。但是,通过在反应器中接种转移的细胞悬液,可以缩短启动时间并持续产生高功率。这些结果表明,与使用更正的电势或缺少设定的电势相比,在-0.2V时进行预适应可以持续改善功率产生。

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