>Bioelectricity generation from biodegradable compounds using microbial fuel cells (MFCs) offers an opportunity for simultaneous wastewat'/> Evaluation of microbial fuel cell (MFC) for bioelectricity generation and pollutants removal from sugar beet processing wastewater (SBPW)
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Evaluation of microbial fuel cell (MFC) for bioelectricity generation and pollutants removal from sugar beet processing wastewater (SBPW)

机译:糖甜菜加工废水中的生物电性产生和污染物去除微生物燃料电池(MFC)的评价(SBPW)

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>Bioelectricity generation from biodegradable compounds using microbial fuel cells (MFCs) offers an opportunity for simultaneous wastewater treatment. This study evaluated the synergy of electricity generation by the MFC while reducing pollutants from sugar beet processing wastewater (SBPW). A simple dual-chamber MFC was constructed with inexpensive materials without using catalysts. Raw SBPW was diluted to several concentrations (chemical oxygen demand (COD) of 505 to 5,750 mg L?1) and fed as batch-mode into the MFC without further modification. A power density of 14.9 mW m?2as power output was observed at a COD concentration of 2,565 mg L?1. Coulombic efficiency varied from 6.21% to 0.73%, indicating diffusion of oxygen through the cation exchange membrane and other methanogenesis and fermentation processes occurring in the anode chamber. In this study, >97% of the COD and up to 100% of the total suspended solids removals were observed from MFC-treated SBPW. Scanning electron microscopy of anode indicated that a diverse community of microbial consortia was active for electricity generation and wastewater treatment. This study demonstrated that SBPW can be used as a substrate in the MFC to generate electricity as well as to treat for pollutant removal.]]>
机译:<![cdata [ >使用微生物燃料电池(MFCs)的可生物降解化合物产生的生物电,为同时废水处理提供了机会。本研究评估了MFC发电的协同作用,同时减少了甜菜加工废水(SBPW)的污染物。在不使用催化剂的情况下,具有廉价材料构建简单的双室MFC。将原始的SBPW稀释至几种浓度(化学需氧量(COD)为505至5,750mg L 1 / sop>),并在没有进一步修饰的情况下将作为批量模式的批量模式进料到MFC中。在2,565mg L 1 的COD浓度下观察到14.9mW m为14.9mw m×2 作为电力输出的功率密度。 Coulombic效率从6.21%到0.73%变化,表明氧气扩散通过阳离子交换膜和其他甲基发生和在阳极室中发生的发酵过程。在本研究中,从MFC处理的SBPW中观察到鳕鱼的> 97%的COD和高达100%的悬浮固体去除剂。阳极的扫描电子显微镜表明,多种微生物联盟群落为发电和废水处理是有效的。该研究表明,SBPW可以用作MFC中的基材,以产生电力以及治疗污染物去除。 ]]>

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