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Comparative Assessment of Microbial-Fuel-Cell Operating Parameters

机译:微生物 - 燃料电池操作参数的比较评估

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In this paper, simultaneous wastewater treatment and power generation of fed-batch microbial fuel cells (MFCs) have been analyzed by introducing a stepwise variation in temperature, pH, and cathodic electrolyte. Different ranges of operational parameters were applied to enriched biofilm (30 days) for 2 weeks to evaluate system performance through polarization studies and chemical oxygen demand (COD) removal rate. Increasing the electrolyte temperature from 37 degrees C to 45 degrees C resulted in higher voltage output (394.5 +/- 6.1 mV) and increased COD removal efficiency (84.5%). The cell potential of MFCs was also enhanced up to 398.9 mV by optimizing anodic pH to 7. Further increase in the current production (0.04 +/-<= 0.01 mA) was observed with cathodic electrolyte 100 mM phosphate-buffered saline (PBS)+100 mM NaCl of higher reductive strength, primarily as a result of the overcoming system proton transfer limitation. This study provides a detailed parametric analysis of operating parameters and assists in process optimization. (c) 2020 American Society of Civil Engineers.
机译:本文通过引入温度、pH值和阴极电解质的逐步变化,分析了补料式微生物燃料电池(MFC)同时处理废水和发电的过程。通过极化研究和化学需氧量(COD)去除率,将不同范围的操作参数应用于强化生物膜(30天),持续2周,以评估系统性能。将电解液温度从37摄氏度提高到45摄氏度会导致更高的电压输出(394.5+/-6.1毫伏),并提高COD去除效率(84.5%)。通过优化阳极pH值至7,MFC的细胞电位也提高至398.9 mV。使用还原强度更高的阴极电解质100 mM磷酸盐缓冲盐水(PBS)+100 mM NaCl,观察到电流产生进一步增加(0.04+/-<=0.01 mA),这主要是由于克服了系统质子转移限制。本研究提供了操作参数的详细参数分析,并有助于工艺优化。(c) 2020年美国土木工程师学会。

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