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Recovery of energy and simultaneous treatment of dewatered sludge using membrane-less microbial fuel cell

机译:恢复能量,同时治疗使用membrane-less微生物脱水污泥燃料电池

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摘要

Microbial fuel cells (MFC) haves drawn much attention as a potential approach for sludge treatment and renewable energy production. In this study, a single chamber air-cathode in a membrane-less MFC (ML-MFC) was operated in batch mode with dewatered sludge from a municipal wastewater treatment plant as the substrate. Electrogenic bacterial species in the sludge acted as a catalyst for the generation of electricity. The performance of the ML-MFC was evaluated using one-factor-at-a-time (OFAT) method followed by response surface methodology (RSM) via Central Composite Design using a quadratic model. In the preliminary OFAT study, the highest voltage generation (852.7 mV) and COD removal (149.2 mg/L) were obtained when the pH, electrode distance, moisture content, and temperature were at 6.0, 3 cm, 30% (vol/wt), and 35 degrees C, respectively. After incubation of the ML-MFC using optimum conditions suggested by the RSM, the voltage was successfully increased to 927.7 mV (improved 9%), while COD removal increased to 170.8 mg/L (improved 15%). This showed that optimization using RSM gave better results than the OFAT method. The maximum power density recorded from the optimum conditions was 41.3 mW/m(2). (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 208-219, 2019
机译:微生物燃料电池(MFC)富人了注意作为一个潜在的方法对污泥治疗和可再生能源的生产。这项研究中,一个室air-cathodemembrane-less MFC (ML-MFC)在批处理操作模式,从城市脱水污泥污水处理厂作为衬底。产生电的污泥中细菌种类作为一代的催化剂电力。评估使用one-factor-at-a-time(种)其次是响应面分析方法通过中心合成设计使用(RSM)二次模型。最高电压(852.7 mV)和鳕鱼删除(149.2 mg / L)得到当pH值,电极距离,含水率,温度在6.0,3厘米,30%(卷/ wt),35摄氏度,分别。ML-MFC使用建议的最佳条件RSM,电压是成功地增加了927.7 mV(提高9%),而COD去除率增加到170.8 mg / L(提高15%)。表明,优化使用RSM给了更好结果比种方法。记录密度的最佳条件41.3 mW / m(2)。化学工程师环境掠夺,38:208 - 219,2019

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