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Effect of C/N ratio and salinity on power generation in compost microbial fuel cells

机译:碳氮比和盐度对堆肥微生物燃料电池发电的影响

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In this work, compost Microbial Fuel Cells (cMFCs) were used to generate electricity from a mix of fruit and vegetable wastes, and soil with different C/N ratios and salinities. Experiments were carried out in 500 mL cMFCs equipped with carbon felt anodes and manganese dioxide cathodes. The cMFCs were loaded with fresh compost and operated at 20-23 ℃ for up to 97 days. The low C/N ratio (C/N 24) had a greater power production with a maximum power density of 5.29 mW/m~2 (71.43 mW/m~3), indicating a more favorable condition for microbial growth. High-saline cMFCs produced lower power, suggesting that their level of salinity (10 g/L of NaCl) inhibited electricigenic microorganisms. The closed-circuit cMFC showed an improved degradation of organic matter by 6% to 8% compared to the control MFC operated in an open circuit mode (no external resistor attached).
机译:在这项工作中,堆肥微生物燃料电池(cMFCs)用于从水果和蔬菜废物以及具有不同C / N比和盐度的土壤中混合产生电能。在配备有碳毡阳极和二氧化锰阴极的500 mL cMFC中进行实验。 cMFC装有新鲜的堆肥,并在20-23℃下运行长达97天。低C / N比(C / N 24)具有更大的发电量,最大功率密度为5.29 mW / m〜2(71.43 mW / m〜3),这为微生物生长提供了更有利的条件。高盐度的cMFCs产生的功率较低,表明它们的盐度(10 g / L NaCl)抑制了电动微生物。与以开路模式(未连接外部电阻器)运行的控制MFC相比,闭路cMFC的有机物降解改善了6%至8%。

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