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首页> 外文期刊>Journal of Environmental Health Science and Engineering >Performance of a single chamber microbial fuel cell at different organic loads and pH values using purified terephthalic acid wastewater
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Performance of a single chamber microbial fuel cell at different organic loads and pH values using purified terephthalic acid wastewater

机译:使用纯化的对苯二甲酸废水在不同有机负荷和pH值下单室微生物燃料电池的性能

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BackgroundPurified terephthalic acid (PTA) wastewater from a petrochemical complex was utilized as a fuel in the anode of a microbial fuel cell (MFC). Effects of two important parameters including different dilutions of the PTA wastewater and pH on the performance of the MFC were investigated.MethodsThe MFC used was a membrane-less single chamber consisted of a stainless steel mesh as anode electrode and a carbon cloth as cathode electrode. Both power density and current density were calculated based on the projected surface area of the cathode electrode. Power density curve method was used to specify maximum power density and internal resistance of the MFC.ResultsUsing 10-times, 4-times and 2-times diluted wastewater as well as the raw wastewater resulted in the maximum power density of 10.5, 43.3, 55.5 and 65.6?mW?m?2, respectively. The difference between the power densities at two successive concentrations of the wastewater was considerable in the ohmic resistance zone. It was also observed that voltage vs. initial wastewater concentration follows a Monod-type equation at a specific external resistance in the ohmic zone.MFC performance at three different pH values (5.5, 7.0 and 8.5) was evaluated. The power generated at pH?8.5 was higher for 40% and 66% than that for pH?7.0 and pH?5.4, respectively.ConclusionsThe best performance of the examined MFC for industrial applications is achievable using the raw wastewater and under alkaline or neutralized condition.
机译:背景技术来自石油化学复合物的纯对苯二甲酸(PTA)废水被用作微生物燃料电池(MFC)阳极中的燃料。研究了不同浓度的PTA废水和pH值这两个重要参数对MFC性能的影响。方法MFC使用的是无膜单室,由不锈钢网作为阳极,碳布作为阴极。功率密度和电流密度均基于阴极电极的投影表面积来计算。使用功率密度曲线法来指定MFC的最大功率密度和内阻。结果使用10倍,4倍和2倍的稀释废水以及原废水可产生10.5、43.3、55.5的最大功率密度和65.6?mW?m?2。在两个连续浓度的废水中,功率密度之间的差异在欧姆电阻区中相当大。还观察到在欧姆区内特定外阻下电压与初始废水浓度的关系遵循Monod型方程式。评估了在三个不同pH值(5.5、7.0和8.5)下的MFC性能。在pH值8.5时产生的功率分别比在pH值7.0和pH值5.4时高40%和66%。 。

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