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Development of Microbial Fuel Cell Using Distillery Spent Wash: Evaluation of Current Generation and COD Removal with Respect to pH

机译:利用酿酒厂废液开发微生物燃料电池:针对pH值评估当代发电和COD去除

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A single chamber microbial fuel cell (SCMFC) was operated with distillery spent wash (DSW) wastewater and microorganisms in cow-dung as inoculum source from pH 4 to 9. MFC signifies maximum current in the sequence of pH 6 (0.46 mA) > pH 7 (0.4 mA) > pH 8-9 (0.16-0.19 mA); whereas the chemical oxygen demand (COD) removed in order of pH 8-9 (80-81%) > pH 7 (79%) > pH 6 (68%). The losses in coulombic yield were due to alternating electron acceptors and air diffusion through the reactor. The polarization curve yielded the maximum current density of 84 mA/m and maximum power density 2 of 29 mW/m2 at an external resistance of 820 (pH 6). The cyclic voltammetry (CV) demonstrated 3-electron transfer process with best electrochemical responses at pH 6 and 7. The MFC at desired operating conditions showed a positive response for bioelectricity generation.
机译:单室微生物燃料电池(SCMFC)与酿酒厂废洗液(DSW)废水和牛粪中的微生物作为pH值从4到9的接种源一起运行。MFC表示最大电流的顺序为pH 6(0.46 mA)> pH 7(0.4 mA)> pH 8-9(0.16-0.19 mA);而化学需氧量(COD)按pH 8-9(80-81%)> pH 7(79%)> pH 6(68%)的顺序除去。库仑产率的损失归因于交替的电子受体和空气扩散通过反应器。极化曲线在820(pH 6)的外部电阻下产生的最大电流密度为84 mA / m,最大功率密度2为29 mW / m2。循环伏安法(CV)证明了在pH 6和7下具有最佳电化学响应的3电子转移过程。MFC在所需的操作条件下显示出对生物电发电的正响应。

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