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Influence of Inoculum Pretreatment on the Performance of an Air-Cathode Single-Chamber Microbial Fuel Cell

机译:接种物预处理对空气阴极单室微生物燃料电池性能的影响

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Air-cathode single-chamber microbial fuel cells (SCMFC) using the heat pretreated seed inoculation showed shorter period of biofilm formation with the maximum current output after 25 days inoculation when compared to the non-heat pretreated seed inoculation (45 days). The results showed the high performance of the heat pretreated seed inoculation in term of a peak of voltage and current generation, except the high COD and reducing sugar removal. Better voltammogram in oxidation and reduction peaks of the heat pretreated seed anode biofilm was observed. The current densities increased with the increases of wastewater concentrations and obtained maximum of 7.37 mA m~(-2) of 3,000 mg COD L~(-1) for the heat pretreated seed inoculation. In addition, the current outputs and wastewater concentrations displayed a linear correlation in the concentration range of 500 to 3,000 mg COD L~(-1) (r=0.96).
机译:空气阴极单室微生物燃料电池(SCMFC)使用热预处理的种子接种显示出较短的生物膜形成时段,与非热预处理的种子接种相比,25天接种后的最大电流输出量(45天)。结果表明,除了高鳕鱼和降低糖去除外,在电压和电流峰的峰值中的热预处理种子接种的高性能高。观察到更好的氧化氧化和氧化峰的氧化峰。随着废水浓度的增加,当前密度增加,最大为3,000mg COD L〜(-1)的最大值为热预处理的种子接种。另外,电流输出和废水浓度在500至3,000mg COD L〜(-1)的浓度范围内显示线性相关性(r = 0.96)。

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