首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Using olive mill wastewater to improve performance in producing electricity from domestic wastewater by using single-chamber microbial fuel cell
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Using olive mill wastewater to improve performance in producing electricity from domestic wastewater by using single-chamber microbial fuel cell

机译:使用橄榄磨机废水通过单室微生物燃料电池提高生活废水发电的性能

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摘要

Improving electricity generation from wastewater (DW) by using olive mill wastewater (OMW) was evaluated using single-chamber microbial fuel cells (MFC). Doing so single-chambers air cathode MFCs with platinum anode were fed with domestic wastewater (DW) alone and mixed with OMW at the ratio of 14:1 (w/w). MFCs fed with DW+OMW gave 0.38V at 1kΩ, while power density from polarization curve was of 124.6mW m~(-2). The process allowed a total reduction of TCOD and BOD_5 of 60% and 69%, respectively, recovering the 29% of the coulombic efficiency. The maximum voltage obtained from MFC fed with DW+OMW was 2.9 times higher than that of cell fed with DW. DNA-fingerprinting showed high bacterial diversity for both experiments and the presence on anodes of exoelectrogenic bacteria, such as Geobacter spp. Electrodes selected peculiar consortia and, in particular, anodes of both experiments showed a similar specialization of microbial communities independently by feeding used.
机译:使用单室微生物燃料电池(MFC)评估了使用橄榄磨机废水(OMW)改善废水(DW)的发电量。这样做时,单腔空气阴极MFC带有铂阳极,仅需供给生活废水(DW),并以14:1(w / w)的比例与OMW混合。用DW + OMW供电的MFC在1kΩ时提供0.38V,而极化曲线的功率密度为124.6mW m〜(-2)。该工艺使TCOD和BOD_5分别降低了60%和69%,从而恢复了29%的库仑效率。从DW + OMW进料的MFC获得的最大电压是DW + OMW进料的电池的2.9倍。 DNA指纹显示出高细菌多样性,既用于实验,也用于外生电细菌(如Geobacter spp)的阳极。电极选择了特殊的聚生体,特别是两个实验的阳极均显示通过饲喂独立地对微生物群落进行了相似的鉴定。

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