优化微生物燃料电池运行参数,提高废水中有机物的去除率和能源产量

M. Haddad, O. Joudeh
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引用次数: 1

摘要

在本研究中,设计、建造并优化了四个双室微生物燃料电池(MFCs),该电池以一次出水废水与厌氧污泥混合为底物,以更好地产生更高的能量,并随后更好地去除有机物。优化后的mfc运行参数作为产生能量的函数包括电极材料类型、电极尺寸、盐桥直径、盐桥中使用的盐溶液类型以及盐桥中使用的盐溶液浓度。每个参数值使用了三个重复的mfc。每个MFC的输出开路电压(OCV)每天测量一次,每个测试的工作参数持续一周。得到的数据表明:(1)铜电极的mfc输出电压显著高于碳刷电极的mfc输出电压,而碳刷电极的输出电压又显著高于锌电极和人造碳电极的mfc输出电压;(2)10 mm盐桥的mfc输出电压显著高于16和24 mm盐桥的mfc输出电压。(3) mfc中KCl盐桥的效率显著高于NaCl盐桥;(4)mfc中1M KCl盐桥的输出电压显著高于3M KCl盐桥的输出电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Microbial Fuel Cells Operating Parameters for Better Removal of Organic Matter and Higher Energy Production from Wastewater
In this study, four double-chambered Microbial fuel cells (MFCs) operated by primary effluent wastewater mixed with anaerobic sludge as substrate, was designed, built, and optimized for better higher energy production and subsequently better removal of organic matter. Optimized MFCs operating parameters as a function of energy produced include electrode material type, electrode size, salt bridge diameter, type of salt solution that used in salt bridge, and concentration of the salt solution used in the salt bridge. Three duplicates-MFCs for each parameter value were used. Output open-circuit voltage (OCV) was measured for each MFC one time daily and for one week for each tested operating parameter. Data obtained showed that (i) MFCs with copper electrodes produce output voltage significantly higher than MFCs with carbon brushes electrodes which, in turn, achieved output voltage significantly higher than both that achieved by MFCs with zinc electrodes and MFCs with manufactured carbon electrodes, (ii) MFCs with 10 mm salt bridge shown significantly higher output voltage than MFCs with both 16 and 24 mm salt bridges, (iii) KCl salt bridge in MFCs is significantly more efficient than NaCl salt bridges, and (iv) MFCs with 1M KCl salt bridges can produce output voltage significantly higher than that produced by MFCs with 3M KCl salt bridges. 
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