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Contribution of direct electron transfer mechanisms to overall electron transfer in microbial fuel cells utilising Shewanella oneidensis as biocatalyst

机译:直接应用电子传递机制对沙瓦氏假单胞菌作为生物催化剂的微生物燃料电池整体电子传递的贡献

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摘要

Objectives\udTo investigate the contribution of direct electron transfer mechanisms to electricity production in microbial fuel cells by physically retaining Shewanella oneidensis cells close to or away from the anode electrode.\udResults\udA maximum power output of 114 ± 6 mWm−2 was obtained when cells were retained close to the anode using a dialysis membrane. This was 3.5 times more than when the cells were separated away from the anode. Without the membrane the maximum power output was 129 ± 6 mWm−2. The direct mechanisms of electron transfer contributed significantly to overall electron transfer from S. oneidensis to electrodes, a result that was corroborated by another experiment where S. oneidensis cells were entrapped in alginate gels.\udConclusion\udS. oneidensis transfers electrons primarily by direct electron transfer as opposed to mediated electron transfer.
机译:目的\ ud通过物理地保持Shewanella oneidensis细胞靠近或远离阳极电极来研究直接电子传输机制对微生物燃料电池发电的贡献。\ ud结果\ ud当在以下条件下获得的最大功率输出为114±6 mWm-2使用透析膜将电池保留在靠近阳极的位置。这是电池从阳极分离开时的3.5倍。没有隔膜,最大功率输出为129±6 mWm-2。电子转移的直接机制显着地促进了从拟南芥到电极的整体电子转移,这一结果得到另一个实验的证实,该实验将拟南芥细胞包埋在藻酸盐凝胶中。\ udConclusion \ udS。与介导的电子转移相反,oneidensis主要通过直接电子转移来转移电子。

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