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Anodic potentials, electricity generation and bacterial community as affected by plant roots in sediment microbial fuel cell: Effects of anode locations

机译:受沉积物微生物燃料电池中植物根部影响的阳极电势,发电和细菌群落:阳极位置的影响

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摘要

A planted sediment microbial fuel cell (PSMFC) is a promising new technology for harvesting energy and remediating a contaminated geo-environment. In this study, the effects of roots (ofAcorus tatarinowii) on oxygen profiles in sediment, power generation, and anodic bacterial community were investigated in PSMFCs and unplanted SMFCs with different anode locations to roots. The presence of plant did not improve the electricity generation when roots were placed on the surface of an anode because a high amount of oxygen loss from roots increased the redox potential at anode and made aerobic bacteria co-exit and compete with electrochemically active bacteria in substance utilization. It was suggested to place the anode under the roots with a proper distance, where the PSMFCs made use of root-derived organics, avoiding the negative effects of oxygen loss. Oxygen loss could control the diurnal rhythm of power generation in the PSMFCs.
机译:植入式沉积物微生物燃料电池(PSMFC)是一种有前途的新技术,可用于收集能量和修复受污染的地质环境。在这项研究中,研究了根茎(Acorus tatarinowii)对沉积物,发电和阳极细菌群落中氧分布的影响,研究了PSMFCs和未植根的SMFCs中具有不同阳极位置的根。当根部置于阳极表面时,植物的存在并不能改善发电,这是因为根部大量的氧气流失会增加阳极处的氧化还原电势,并使好氧细菌共同存在并与电化学活性细菌竞争。利用率。建议将阳极放置在根部下方适当的距离处,其中PSMFC使用根部衍生的有机物,以避免氧气流失的负面影响。氧气损失可以控制PSMFC中发电的昼夜节律。

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