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Double compartment microbial fuel cell design using salt bridge as a membrane with sucrose and starch as a substrate

机译:以盐桥为膜,以蔗糖和淀粉为底物的双室微生物燃料电池设计

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Most of the microbial fuel cell (MFC) designs need the separation of the cathode and anode cell by using proton exchange membrane (PEM). The majority used nafion or ultrex CMI-7000 as a PEM. But both of these membranes are too much costly and not too available to use. As an alternate of nafion, we use salt bridge in this study as a PEM which is pervious to other ions & substrate. Different organic materials like sucrose, glucose, starch can be used as substrate. This research paper analyses the performance of a double compartment microbial fuel cell for different substrate concentrations as well as surface area of the chambers with salt bridge as a membrane. Sucrose and starch were treated here as substrate and potassium permanganate was used as electron acceptor. Dhaka city's drain water was utilized as the container of bacteria. Better output was observed for sucrose as substrate due to higher solubility in water than starch.
机译:大多数微生物燃料电池(MFC)设计都需要通过使用质子交换膜(PEM)分离阴极和阳极电池。大多数使用nafion或ultrex CMI-7000作为PEM。但是,这两种膜都太昂贵且不能使用。作为nafion的替代品,我们在本研究中使用盐桥作为可渗透其他离子和底物的PEM。诸如蔗糖,葡萄糖,淀粉的不同有机材料可以用作底物。这篇研究论文分析了双隔室微生物燃料电池在不同底物浓度以及以盐桥为膜的腔室表面积下的性能。在此将蔗糖和淀粉作为底物,将高锰酸钾用作电子受体。达卡市的排水被用作细菌的容器。对于蔗糖作为底物,由于在水中的溶解度高于淀粉,因此观察到更好的产量。

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