Bio-Electrochemical Fuel CELL: A Review Study on Electricity Generation Using Bio-Waste

Syed Hasan Khuld, Babar Jamal Naqvi, N. Samoon, Muhammad Kashif, Naveed Alam Samdani, Talha Qazi
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Abstract

This era is all about energy, humans cannot survive without energy. Conventional energy resources are not enough to fulfill the needs of energy that’s why it is necessary to find alternate energy resources that will be efficient and environment friendly. Microbial Fuel Cell (MFC) is one of the reasonably low costs and is considered as environment friendly It degrades the harmful substance during production of electricity.This technology helps out for the producing of electricity by using the microbes. The generation of electricity is the new form of non-renewable energy by treating of the waste water from different types of effluent. The purpose of this technology is to produce the electricity that is environment friendly and sustainable. This review is also the part of research which is also to make a comparison of different MFC feeds which have unique chemical composition and are rich of various biological species and designing. This report also contains the discussion of MFC principle, necessary components, bacteria that are responsible for electricity production. This MFC contain the different batch type of reactor and in each reactor anode and cathode are dipped for time to check the response of flow of electron. Electrodes are used for drawing the comparison data of the MFC and giving new direction for the researchers. Salt bridge or membrane is connected between the reactor for the flow of proton to the cathode side and oxygen is supplied in the cathode compartment.
生物电化学燃料电池:利用生物废弃物发电的研究进展
这个时代是能源的时代,没有能源人类就无法生存。传统能源已不足以满足能源需求,因此有必要寻找高效环保的替代能源。微生物燃料电池(MFC)是一种成本合理且环境友好的燃料电池,它可以降解发电过程中的有害物质。这项技术有助于利用微生物发电。发电是一种新型的不可再生能源,通过处理不同类型的废水来发电。这项技术的目的是生产对环境友好和可持续的电力。本文是对化学成分独特、生物种类丰富的不同MFC饲料进行比较和设计研究的一部分。本报告还包括对MFC原理,必要组件,负责发电的细菌的讨论。该MFC包含不同批次类型的反应器,并在每个反应器中浸泡阳极和阴极一段时间以检查电子流动的响应。电极用于绘制MFC的比较数据,为研究人员提供了新的方向。在反应器之间连接盐桥或盐膜,使质子流向阴极一侧,并在阴极室中供应氧气。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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