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Self-stratified and self-powered micro-supercapacitor integrated into a microbial fuel cell operating in human urine

机译:自分层自供电的微型超级电容器集成到在人类尿液中运行的微生物燃料电池中

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摘要

A self-stratified microbial fuel cell fed with human urine with a total internal volume of 0.55 ml was investigated as an internal supercapacitor, for the first time. The internal self-stratification allowed the development of two zones within the cell volume. The oxidation reaction occurred on the bottom electrode (anode) and the reduction reaction on the top electrode (cathode). The electrodes were discharged galvanostatically at different currents and the two electrodes were able to recover their initial voltage value due to their red-ox reactions. Anode and cathode apparent capacitance was increased after introducing high surface area activated carbon embedded within the electrodes. Peak power produced was 1.20 ± 0.04 mW (2.19 ± 0.06 mW ml−1) for a pulse time of 0.01 s that decreased to 0.65 ± 0.02 mW (1.18 ± 0.04 mW ml−1) for longer pulse periods (5 s). Durability tests were conducted over 44 h with ≈2600 discharge/recharge cycles. In this relatively long-term test, the equivalent series resistance increased only by 10% and the apparent capacitance decreased by 18%.
机译:首次研究了以内部总体积为0.55μml的人类尿液喂养的自分层微生物燃料电池,作为内部超级电容器。内部自分层允许在细胞体积内形成两个区域。氧化反应发生在底部电极(阳极)上,还原反应发生在顶部电极(阴极)上。电极在不同电流下恒电流放电,并且两个电极由于其氧化还原反应而能够恢复其初始电压值。引入嵌入电极内的高表面积活性炭后,阳极和阴极的表观电容增加。产生的峰值功率为1.20±0.04 mW(2.19±0.06 mW ml -1 ),脉冲时间为0.01 s,下降到0.65±0.02 mW(1.18±0.04 mW ml -1 < / sup>)较长的脉冲周期(5 s)。耐久性测试在44 dischargeh内进行,≈2600次放电/充电循环。在这个相对长期的测试中,等效串联电阻仅增加了10%,视在电容减小了18%。

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