电化学储能技术的研究进展

被引:18
作者
贾蕗路
刘平
张文华
机构
[1] 国网江西省电力科学研究院
关键词
电化学; 储能; 锂离子电池; 钠硫电池; 液流电池;
D O I
暂无
中图分类号
TM912 [蓄电池];
学科分类号
0808 ;
摘要
储能技术是一项可能对未来能源系统发展及运行带来革命性变化的技术。在众多储能技术中,技术进步最快的是电化学储能技术。以锂离子电池、钠硫电池、液流电池为主导的电化学储能技术在安全性、能量转换效率和经济性等方面均取得了重大突破,极具产业化应用前景。介绍了铅酸电池、锂离子电池、钠硫电池以及液流电池的电化学反应原理、体系特点和各材料的发展现状。
引用
收藏
页码:1972 / 1974
页数:3
相关论文
共 8 条
[1]   钠硫电池储能应用现状研究 [J].
孙丙香 ;
姜久春 ;
时玮 ;
张维戈 .
现代电力, 2010, 27 (06) :62-65
[2]  
Progress in electrical energy storage system:A critical review[J]. Thang Ngoc Cong.Progress in Natural Science. 2009(03)
[3]   钒氧化还原液流储能电池 [J].
张华民 ;
赵平 ;
周汉涛 ;
衣宝廉 .
能源技术, 2005, (01) :23-26
[4]  
Advanced materials for sodium-beta alumina batteries: Status, challenges and perspectives[J] . Xiaochuan Lu,Guanguang Xia,John P. Lemmon,Zhenguo Yang.Journal of Power Sources . 2009 (9)
[5]  
Optimal operation strategies of compressed air energy storage (CAES) on electricity spot markets with fluctuating prices[J] . Henrik Lund,Georges Salgi,Brian Elmegaard,Anders N. Andersen.Applied Thermal Engineering . 2008 (5)
[6]  
Electrochemical characterization of electrospun activated carbon nanofibres as an electrode in supercapacitors[J] . Chan Kim.Journal of Power Sources . 2004 (1)
[7]  
Determination of the specific capacitance of conducting polymer/nanotubes composite electrodes using different cell configurations[J] . V. Khomenko,E. Frackowiak,F. Béguin.Electrochimica Acta . 2004 (12)
[8]  
Reticulated vitreous carbon as an electrode material[J] . J.M. Friedrich,C. Ponce-de-León,G.W. Reade,F.C. Walsh.Journal of Electroanalytical Chemistry . 2003