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Electricity generation in low cost microbial fuel cell made up of earthenware of different thickness

机译:由不同厚度的陶器组成的低成本微生物燃料电池中的发电

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摘要

Performance of four microbial fuel cells (MFC-1, MFC-2, MFC-3 and MFC-4) made up of earthen pots with wall thicknesses of 3, 5, 7 and 8.5 mm, respectively, was evaluated. The MFCs were operated in fed batch mode with synthetic wastewater having sucrose as the carbon source. The power generation decreased with increase in the thickness of the earthen pot which was used to make the anode chamber. MFC-1 generated highest sustainable power density of 24.32 mW/m _2 and volumetric power of 1.04 W/m _3 (1.91 mA, 0.191 V) at 100 Ω external resistance. The maximum Coulombic efficiencies obtained in MFC-1, MFC-2, MFC-3 and MFC-4 were 7.7, 7.1, 6.8 and 6.1%, respectively. The oxygen mass transfer and oxygen diffusion coefficients measured for earthen plate of 3 mm thickness were 1.79 × 10 ~(-5) and 5.38 × 10 ~(-6) cm ~2/s, respectively, which implies that earthen plate is permeable to oxygen as other polymeric membranes. The internal resistance increased with increase in thickness of the earthen pot MFCs. The thickness of the earthen material affected the overall performance of MFCs.
机译:评价了由壁厚分别为3、5、7和8.5 mm的土锅组成的四个微生物燃料电池(MFC-1,MFC-2,MFC-3和MFC-4)的性能。 MFCs以补料分批方式运行,其中含有蔗糖作为碳源的合成废水。随着用于制造阳极室的陶罐厚度的增加,发电量减少。 MFC-1在100Ω外部电阻下产生的最高可持续功率密度为24.32 mW / m _2,体积功率为1.04 W / m _3(1.91 mA,0.191 V)。在MFC-1,MFC-2,MFC-3和MFC-4中获得的最大库仑效率分别为7.7%,7.1%,6.8%和6.1%。 3 mm厚度的土板测得的氧传质系数和氧扩散系数分别为1.79×10〜(-5)和5.38×10〜(-6)cm〜2 / s,这表明土板可渗透氧气与其他聚合物膜一样。内阻随着土锅MFC厚度的增加而增加。土料的厚度影响了MFC的整体性能。

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