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电流密度、温度、阴极孔隙率和N_(2)溶解度因子对Li-N_(2)电池放电性能的影响

Li-N_(2)battery discharge performances affected by discharge current density,temperature,cathode porosity and N_(2)solubility factor
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摘要 Li-N_(2)电池是一种具有电化学固氮功能的新型储能系统,文章利用有限元软件COMSOL耦合多物理场建立的电化学模型能揭示各因素对其放电性能的影响。模拟结果表明:放电电流密度、温度、阴极孔隙率和电解液中的N_(2)溶解度因子对Li-N_(2)电池的放电性能均有影响;较大的放电电流密度会降低该电池的电压和容量;阴极孔隙率和电解液中的N_(2)溶解度因子是影响该电池电压和容量的关键性因素,提高阴极孔隙率和电解液中的N_(2)溶解度因子均能增加该电池的电压和容量;电池放电的平台电压随温度升高而升高,但放电容量几乎不受温度影响。 Li-N_(2)battery is a new type of energy storage system with the function of electrochemical nitrogen fixation,and the electrochemical model established in the article used finite element software COMSOL coupled with multi-physics field can reveal the influence of various factors on its discharge performance.The simulation results show that:the discharge current density,temperature,cathode porosity and N_(2)solubility factor in the electrolyte have an effect on the discharge performance of Li-N_(2)battery;a larger discharge current density will reduce the voltage and capacity of the battery;cathode porosity and N_(2)solubility factor in the electrolyte are the key factors that affect the voltage and capacity of the battery,and increasing the cathode porosity and N_(2)solubility factor in the electrolyte can increase the voltage and capacity of the battery;With the temperature rising,the voltage of the discharge platform of the battery increases,but the discharge capacity is almost unaffected by temperature.
作者 赵旭东 薛红涛 汤富领 Zhao Xudong;Xue Hongtao;Tang Fuling(State Key Laboratory of Advanced Processing and Recycling of Non-ferrous Metals,Lanzhou University of Technology,Lanzhou 730050,China;School of Materials Science and Engineering,Lanzhou University of Technology,Lanzhou 730050,China)
出处 《可再生能源》 CAS CSCD 北大核心 2024年第1期9-15,共7页 Renewable Energy Resources
基金 国家自然科学基金项目(11764027)。
关键词 Li-N_(2)电池 有限元分析 COMSOL 放电过程 Li-N_(2)batteries finite element analysis COMSOL discharge process
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