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首页> 外文期刊>Instrumentation science & technology: Designs and applications for chemistry, biotechnology, and environmental science >APPLICATION AND COMPARISON OF CURRENT INTERRUPTION AND ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY METHODS TO STUDY A MICROBIAL FUEL CELL
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APPLICATION AND COMPARISON OF CURRENT INTERRUPTION AND ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY METHODS TO STUDY A MICROBIAL FUEL CELL

机译:电流干扰和电化学阻抗谱方法在微生物燃料电池研究中的应用与比较

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摘要

In this research, current interruption and electrochemical impedance spectroscopy (EIS) methods are employed to determine the internal resistance of a dual-chambered mixed-culture microbial fuel cell with glucose feed, graphite anode, platinum sheet cathode, and Nafion 117 proton exchange membrane. Potential recovery curves and EIS spectra are obtained under various time intervals and analyzed using proper electrical circuit models. Polarization results show that the maximum output power of the cell is about 380 mW.m~(-2) normalized to the cathode surface area. The open circuit potential (OCP) of the cell is about 550 mV, and the value of the short circuit current is 0.35 mA.cm~(-2) of the cathode geometric surface area. The results show that the current interruption method can monitor in a rather satisfactory way the electrochemical changes such as variations in internal resistance and interfacial pseudo-capacitance inside the microbial fuel cell during the operation and thus can be employed as an easy-to-set-up electrochemical method to gain valuable data and facilitate the study of low power density devices such as microbial fuel cells.
机译:在这项研究中,采用电流中断和电化学阻抗谱(EIS)方法确定具有葡萄糖进料,石墨阳极,铂片阴极和Nafion 117质子交换膜的双室混合培养微生物燃料电池的内阻。在不同的时间间隔下获得电势恢复曲线和EIS光谱,并使用适当的电路模型进行分析。极化结果表明,该电池的最大输出功率为约380 mW.m〜(-2),归一化至阴极表面积。电池的开路电势(OCP)约为550mV,并且短路电流的值为阴极几何表面积的0.35mA·cm 2(-2)。结果表明,电流中断方法可以以令人满意的方式监测微生物燃料电池在运行过程中的电化学变化,例如内部电阻和界面伪电容的变化,因此可以用作易于设置的方法。电化学方法以获取有价值的数据并促进对低功率密度设备(如微生物燃料电池)的研究。

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