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Effect of vitamins and cell constructions on the activity of microbial fuel cell battery

机译:维生素和细胞结构对微生物燃料电池活性的影响

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摘要

Construction of efficient performance of microbial fuel cells (MFCs) requires certain practical considerations. In the single chamber microbial fuel cell, there is no border between the anode and the cathode, thus the diffusion of the dissolved oxygen has a contrary effect on the anodic respiration and this leads to the inhibition of the direct electron transfer from the biofilm to the anodic surface. Here, a fed-batch single chambered microbial fuel cells are constructed with different distances 3 and 6 cm (anode- cathode spacing), while keeping the working volume is constant. The performance of each MFC is individually evaluated under the effects of vitamins & minerals with acetate as a fed load. The maximum open circuit potential during testing the 3 and 6 cm microbial fuel cells is about 946 and 791 mV respectively. By decreasing the distance between the anode and the cathode from 6 to 3 cm, the power density is decreased from 108.3 mW m−2 to 24.5 mW m−2. Thus, the short distance in membrane-less MFC weakened the cathode and inhibited the anodic respiration which affects the overall performance of the MFC efficiency. The system is displayed a maximum potential of 564 and 791 mV in absence & presence of vitamins respectively. Eventually, the overall functions of the acetate single chamber microbial fuel cell can be improved by the addition of vitamins & minerals and increasing the distance between the cathode and the anode.
机译:构建微生物燃料电池(MFCs)的有效性能需要一定的实际考虑。在单室微生物燃料电池中,阳极和阴极之间没有边界,因此溶解氧的扩散会对阳极呼吸产生相反的影响,从而导致电子从生物膜直接转移到生物膜的过程受到抑制。阳极表面。在这里,分批补料的单室微生物燃料电池在保持工作体积恒定的同时,以3和6?cm(阳极-阴极间距)的不同距离构造。在维生素和矿物质的影响下,以乙酸作为进料负荷,分别评估了每种MFC的性能。在测试3和6 cm微生物燃料电池时,最大开路电势分别约为946和791 mV。通过将阳极和阴极之间的距离从6减小到3µcm,功率密度从108.3µmW m -2 降低到24.5µmW m -2 。因此,无膜MFC中的短距离削弱了阴极并抑制了阳极呼吸,这影响了MFC效率的整体性能。在不存在和存在维生素的情况下,该系统显示的最大电位分别为564和791 mV。最终,乙酸单室微生物燃料电池的整体功能可以通过添加维生素和矿物质并增加阴极与阳极之间的距离来改善。

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