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Comprehensive Evaluation of Two Different Inoculums in MFC with a New Tin-Coated Copper Mesh Anode Electrode for Producing Electricity from a Cottonseed Oil Industry Effluent

机译:用棉籽油工业废水产生电的新型镀锡铜丝网阳极电极对MFC中的两种接种物进行综合评估

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We evaluated a new electrode material for its capacity to generate electricity by using a cottonseed effluent in two microbial fuel cells (MFCs). Tin-coated copper (Sn-coating Cu) mesh and platinum-coated titanium were used as anode and cathode electrode materials, respectively. For a startup period that allowed slow-growing electro-active bacteria to form biofilms on the anode electrode, inoculums were supplied from anaerobic digester sludge (ADS) and estuary sediment (ES). The ADS-inoculated MFC successfully achieved maximum power density of 160 mW/m~2, whereas ES-inoculated MFC had a maximum power density of 59 mW/m~2. Maximum columbic efficiencies for ADS and ES were 12.8% and 5.6% and the corresponding COD removal efficiencies were 66.6% and 53.6%, respectively. A PCR-DGGE analysis showed that the anode surface in ADS-inoculated MFC has more groups of bacteria than that in ES-inoculated MFC. The kinetic performances of MFCs evaluated by using the Nernst-Monod equation showed that maximum current density (J_(max)) increased to around 1.62 A/m~2 in the ADS-inoculated MFC and 1.06 A/m~2 in the ES-inoculated MFC.
机译:我们通过在两个微生物燃料电池(MFCs)中使用棉籽废水评估了一种新型电极材料的发电能力。镀锡铜(Sn-涂层铜)网和镀铂钛分别用作阳极和阴极电极材料。在允许缓慢生长的电活性细菌在阳极电极上形成生物膜的启动阶段,从厌氧消化池污泥(ADS)和河口沉积物(ES)提供接种物。接种ADS的MFC成功达到160 mW / m〜2的最大功率密度,而接种ES的MFC具有59 mW / m〜2的最大功率密度。 ADS和ES的最大哥伦布效率为12.8%和5.6%,相应的COD去除效率分别为66.6%和53.6%。 PCR-DGGE分析表明,接种ADS的MFC的阳极表面比接种ES的MFC的阳极表面细菌更多。利用能斯特-莫诺德方程评估的MFC的动力学性能表明,接种ADS的MFC中最大电流密度(J_(max))增加到1.62 A / m〜2左右,而ES-中的最大电流密度增加到1.06 A / m〜2。接种MFC。

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