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Performance of two-chambered Microbial Fuel Cell (MFC) at different pH anode microenvironment using Palm Oil Mill Effluent (POME) as substrate

机译:使用棕榈油磨流出物(PAME)作为基质在不同pH阳极微环境下的两腔微生物燃料电池(MFC)的性能

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Microbial fuel cell (MFC) represents a new method for producing electricity from the oxidation of organic matter. In addition, MFC offers an effective wastewater treatment. The feasibility of using POME wastewater as a substrate was investigated through a two-chambered MFC operated in batch mode for 12 days. The performance of MFC was evaluated under three different anode pH microenvironments of acidic (pH 4), neutral (pH 7) and alkaline (pH 8). Results of experiments indicated that the MFC reactor was able to generate electricity and treat POME wastewater that acted as substrate for MFC. The performance of MFC was found to be dependent on the anode pH microenvironments. Higher power density was observed at neutral condition compared to acidic and alkaline conditions. Furthermore, significant reductions in chemical oxygen demand (COD) in anode chambers were found due to the changes of pH in anode microenvironment. This indicated that effective wastewater treatment of POME in MFC batch experiments. In conclusion, MFC provides an alternative, sustainability and effective method to generate electricity and effectively treat wastewater.
机译:微生物燃料电池(MFC)表示从有机物质氧化产生电力的新方法。此外,MFC还提供了有效的废水处理。通过以批量模式运行的两腔MFC研究了使用圆形废水作为基板的可行性。在三种不同的阳极pH微环境下评价MFC的性能,酸性(pH4),中性(pH7)和碱性(pH8)。实验结果表明,MFC反应器能够产生用作MFC的底物的电力和处理底碱废水。发现MFC的性能依赖于阳极pH微环境。与酸性和碱性条件相比,在中性条件下观察到更高功率密度。此外,由于阳极微环境的pH的变化,发现了阳极室中的化学需氧量(COD)的显着降低。这表明MFC批量实验中Pome的有效废水处理。总之,MFC提供了一种替代,可持续性和有效的方法,以产生电力和有效处理废水。

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