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Performance Analysis of a Dual Chamber Microbial Fuel Cell Using Kitchen Wastes as Substrate

机译:以厨房垃圾为底物的双室微生物燃料电池的性能分析

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This research paper analyzes the performance of MFC under aerobic condition for drain sludge, textile sludge, tannery sludge and Buriganga sludge. Kitchen wastes (rotten rice, vegetables) were utilized as source of carbohydrates for the growth of bacteria. A total number of four experiments were conducted throughout the research work and all of them were observed for seven days. Voltage, current density and power density were recorded for each experiment to analyze the electrical potential of the Microbial Fuel Cells constructed as well as environmental parameter related to waste water treatment like Biological Oxygen Demand (BOD) was also observed in this study. In this study 319.6 mV was measured as maximum voltage while 30.1 mA/m2 and 9.62 mW/m2 were recorded as maximum current density and power density respectively for textile sludge. The BOD reduction was found to be 45.45%. 39.90%, 44.14% and 33.10% for drain sludge, textile sludge, tannery sludge and Buriganga sludge respectively.
机译:本研究分析了好氧条件下MFC对排水污泥,纺织品污泥,制革厂污泥和Buriganga污泥的性能。厨房废物(烂米饭,蔬菜)被用作细菌生长的碳水化合物来源。在整个研究工作中,总共进行了四个实验,并观察了所有这些实验七天。记录每个实验的电压,电流密度和功率密度,以分析所构建的微生物燃料电池的电势以及与废水处理相关的环境参数,例如生物需氧量(BOD)。在这项研究中,最大电压为319.6 mV,而30.1 mA / m \ n 2\n和9.62 mW / m \ n 2 \ n分别记录为纺织品污泥的最大电流密度和功率密度。发现BOD降低为45.45%。排水污泥,纺织污泥,皮革厂污泥和Buriganga污泥分别为39.90%,44.14%和33.10%。

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