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Effect of ionic strength, cation exchanger and inoculum age on the performance of Microbial Fuel Cells

机译:离子强度,阳离子交换剂和接种时间对微生物燃料电池性能的影响

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Power generation in Microbial fuel cells (MFCs) is a function of various physico-chemical as well as biological parameters. In this study, we have examined the effect of ionic strength, cation exchanger and inoculum age on power generation in a mediator MFC with meth-ylene blue as electron mediator using Enterobacter cloacae IIT-BT08. The effect of ionic strength was studied using NaCl in the anode chamber of a two chambered salt-bridge MFC at concentrations of 5 mM, 10 mM and 15 mM. Maximum power density of 12.8 mW/m~2 was observed when 10 mM NaCl was used. Corresponding current density was noted to be 35.5 mA/m~2. Effect of cation exchanger was observed by replacing salt-bridge with a proton exchange membrane of equal surface area. When the salt-bridge was replaced by a proton exchange membrane, a 3-fold increase in the power density was observed. Power density and current density of 37.8 mW/m~2 and 110.3 mA/m~2 respectively were detected. The influence of the pre-inoculum on the MFC was studied using E. cloacae IIT-BT08 grown for 12, 14, 16 and 18 h. It was observed that 16 h grown culture when inoculated in the anode chamber gave the maximum power output. Power density and current density of 68 mW/ m~2 and 168 mA/m~2 respectively were obtained. We demonstrate from these results that both physico-chemical as well as biological parameters need to be optimized for improving the power generation in MFCs.
机译:微生物燃料电池(MFCs)的发电是各种物理化学和生物参数的函数。在这项研究中,我们研究了阴沟肠杆菌IIT-BT08在以亚甲基蓝为电子介体的MFC介体MFC中,离子强度,阳离子交换剂和接种物年龄对发电的影响。使用NaCl在浓度为5 mM,10 mM和15 mM的两室盐桥MFC的阳极室中研究了离子强度的影响。当使用10 mM NaCl时,观察到最大功率密度为12.8 mW / m〜2。相应的电流密度为35.5 mA / m〜2。通过用等表面积的质子交换膜代替盐桥来观察阳离子交换剂的作用。当盐桥被质子交换膜代替时,功率密度增加了3倍。功率密度和电流密度分别为37.8 mW / m〜2和110.3 mA / m〜2。使用生长12、14、16和18小时的阴沟肠杆菌IIT-BT08研究了接种前接种物对MFC的影响。观察到,在阳极室中接种时生长的16小时培养物可提供最大功率输出。功率密度和电流密度分别为68 mW / m〜2和168 mA / m〜2。我们从这些结果证明,理化参数和生物学参数都需要进行优化,以提高MFC的发电能力。

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