MICROBIAL ENRICHMENT PROCESS IN THE ANODE OF MICROBIAL FUEL CELL SYSTEM USING TOFU WASTEWATER (TWW) ANAEROBIC SLUDGE

Ibdal Satar, Adidiya Permadi, Sukma Latifatunnajib
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Abstract

Microbial fuel cell consisting two main components which are anode and cathode materials. In the microbial fuel cell, both anode and cathode compartments are separated with a separator. Anode generates the protons and electrons while cathode converts protons into water with the presence electrons and oxygen. During the Microbial fuel cell operation, the performance of anode is very crucial due to it provides the protons and electrons. Hence, the high efficiency microbial fuel cell is very related with the high anode performance. This work addressed to the enrichment process of electroactive bacteria (EAB) in anode of microbial fuel cell. In this work, some parameters such as current generations, , and pH changes were used to assess the enrichment process of EAB was reached. In addition, the presence of EAB on the anode surface was identified based on the morphology of anode surface. The removal of COD and the pH value were determined by using the American public health analysis method and pH tester, respectively. The morphology of anode surface was analysed by using a scanning electron microscope. Whereas, current generation was tested by using a mustimeter. The removal of COD and final pH were obtained 71.4 % and 5.7, respectively. The optimum current generation was observed 0.19 mA. The surface morphology of anode before enriched with microbes was clear surface, while after enriched with microbes was attached by microbes. The removal of COD, pH changes, current generation and morphology of anode surface could be used to assess the EAB in the anode compartment.      Keywords: Microbial fuel cell; anode; cathode; electroactive bacteria; pH changes.
豆腐废水厌氧污泥在微生物燃料电池系统阳极的微生物富集过程
微生物燃料电池主要由正极材料和负极材料两部分组成。在微生物燃料电池中,阳极和阴极用分离器分开。阳极产生质子和电子,而阴极将质子转化为存在电子和氧气的水。在微生物燃料电池的运行过程中,阳极的性能是至关重要的,因为它提供质子和电子。因此,高效的微生物燃料电池与高阳极性能密切相关。研究了微生物燃料电池阳极中电活性菌(EAB)的富集过程。本研究采用当代、pH变化等参数来评价EAB的富集过程。此外,根据阳极表面形貌,确定了阳极表面存在EAB。采用美国公共卫生分析法测定COD去除率,pH值测定pH值。用扫描电镜对阳极表面形貌进行了分析。然而,电流的产生是通过一个电流计来测试的。COD去除率为71.4%,最终pH去除率为5.7%。最佳电流产生为0.19 mA。微生物富集前阳极表面形貌为透明表面,微生物富集后阳极表面附着微生物。COD去除率、pH变化、电流产生和阳极表面形貌可作为评价阳极室EAB的指标。关键词:微生物燃料电池;阳极;阴极;电活性细菌;pH值的变化。
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