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Electrically conductive, immobilized bioanodes for microbial fuel cells

机译:微生物燃料电池的导电固定式生物阳极

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摘要

The power densities of microbial fuel cells with yeast cells as the anode catalyst were significantly increased by immobilizing the yeast in electrically conductive alginate electrodes. The peak power densities measured as a function of the electrical conductivity of the immobilized electrodes show that although power increases with rising electrical conductivity, it tends to saturate beyond a certain point. Changing the pH of the anode compartment at that point seems to further increase the power density, suggesting that proton transport limitations and not electrical conductivity will limit the power density from electrically conductive immobilized anodes.
机译:通过将酵母固定在导电藻酸盐电极中,以酵母细胞为阳极催化剂的微生物燃料电池的功率密度显着提高。根据固定电极的电导率测得的峰值功率密度表明,尽管功率随电导率的升高而增加,但它趋于饱和超过某一点。此时改变阳极室的pH值似乎会进一步增加功率密度,这表明质子传输限制而不是电导率将限制固定导电的阳极的功率密度。

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