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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Anode modification with capacitive materials for a microbial fuel cell: an increase in transient power or stationary power
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Anode modification with capacitive materials for a microbial fuel cell: an increase in transient power or stationary power

机译:用电容性材料对微生物燃料电池进行阳极改性:增加瞬时功率或固定功率

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摘要

Extensive efforts have been devoted to improve the anode performance of a microbial fuel cell (MFC) by using modified carbon-based anode materials, but most of them did not recognize that the power performance measured by the commonly-used varying circuit resistance (VCR) or linear sweep voltammetry (LSV) method was overestimated due to the effect of anode capacitance. Here, we examined and compared the transient power and the stationary power of a series of MFCs equipped with the polypyrrole-graphene oxide (PPy-GO)-modified graphite felt anodes. It was found that noticeable transient power was recorded when the VCR or LSV method was chosen for power measurements. Calculations on the contribution of different sources to the measured maximum power density showed that the discharge of bio-electrons stored in the high-capacitance anode was a dominant contributor, especially when the time duration (for the VCR method) was not sufficiently long or the scan rate (for the LSV method) was not sufficiently low. Although anode modification with capacitive materials can result in the increased stationary power obtained from the fed-batch cycle test, owing to the increases in the anode surface area and the number of bacteria attached to anode, the increase in the transient power was more remarkable.
机译:通过使用改性的碳基负极材料,人们已经进行了广泛的努力来改善微生物燃料电池(MFC)的负极性能,但是大多数人没有意识到通过常用的可变电路电阻(VCR)来衡量的动力性能。由于阳极电容的影响,高通量法或线性扫描伏安法(LSV)方法被高估了。在这里,我们检查并比较了配有聚吡咯-氧化石墨烯(PPy-GO)改性石墨毡阳极的一系列MFC的瞬时功率和静态功率。发现选择VCR或LSV方法进行功率测量时会记录到明显的瞬态功率。对不同来源对测得的最大功率密度的贡献的计算表明,存储在高电容阳极中的生物电子的放电是主要的贡献者,尤其是在(VCR方法的)持续时间不够长或扫描速率(对于LSV方法)不够低。尽管使用电容性材料对阳极进行改性可导致通过分批补料循环测试获得的固定功率增加,但是由于阳极表面积的增加和附着在阳极上的细菌数量的增加,瞬态功率的增加更为显着。

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