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机构地区:[1]上海电力学院能源与环境工程学院,上海200090
出 处:《上海电力学院学报》2010年第2期135-140,共6页Journal of Shanghai University of Electric Power
摘 要:用交流阻抗法和放电试验研究了Li/SOCl2电池放电初期的电池阻抗变化、放电最低电压、电压滞后,以及电池并联超电容放电时电池支路和超电容支路的电流变化.结果表明,放电电压滞后过程对应于放电时电池负极锂电极表面钝化膜被破坏的过程;通过建立数学模型,根据放电前锂电极阻抗可较准确地预测指定负载电阻放电时的最低电压和电压滞后;并联超级电容器能有效抑制放电电压滞后.The technique of AC impedance spectroscopy and the method of discharge are used to study the impedance change, the lowest voltage, the voltage delay, the hybrid cell's current change, including the Li/SOCl2 cell branch and the supercapacitor branch during the initial discharge. As a result, the process of voltage delay is corresponded to the process that the resistance passive layer forming on the lithium metal surface is destroyed; through the model built by mathematic means, the lowest voltage and the voltage delay extent could be predicted accurately during initial polarization of the Li/SOCl2 cell, it is suggested that the voltage delay problem be solved by means of the application of supercapacitor.
关 键 词:LI/SOCL2电池 交流阻抗 电压滞后 最低电压预测 超级电容器
分 类 号:TM911[电气工程—电力电子与电力传动]
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