欢迎登录材料期刊网

材料期刊网

高级检索

液流电池是实现可再生能源大规模应用的新型绿色二次电池,其中电极材料的性能对于液流电池的实际应用具有重要意义.聚丙烯腈基(PAN)碳毡是液流电池的首选电极材料,为了进一步提高PAN碳毡电极材料的亲水性和电化学活性,近些年有关PAN碳毡的改性研究成为了热点.介绍了液流电池的工作原理及其电极材料,着重介绍了液流电池用改性PAN碳毡电极材料的研究现状,并展望了制备PAN碳毡电极材料的发展趋势.

参考文献

[1] Makansi J;Abboud J .Energy storage-The missing link in the electricity value chain[R].UK:Energy Storage Association,2002.
[2] 张华民,周汉涛,赵平,衣宝廉.储能技术的研究开发现状及展望[J].能源工程,2005(03):1-7.
[3] Kazacos M;Cheng M;Skyllas-Kazacos M .Vanadium redox flow cell optimization studies[J].Journal of Applied Electrochemistry,1990,20(3):463.
[4] Oriji Gaku;Katayama Yasushi;Miura Takahi .Investigations on V(Ⅳ)/V(Ⅴ) and V(Ⅱ)/V(Ⅲ) redox reactions by various electrochemical methods[J].Journal of Power Sources,2005,139(1-2):321.
[5] Wu, T.;Huang, K.;Liu, S.;Zhuang, S.;Fang, D.;Li, S.;Lu, D.;Su, A. .Hydrothermal ammoniated treatment of PAN-graphite felt for vanadium redox flow battery[J].Journal of solid state electrochemistry,2012(2):579-585.
[6] Hantao Zhou;Huamin Zhang;Ping Zhao;Baolian Yi .A comparative study of carbon felt and activated carbon based electrodes for sodium polysulfide/bromine redox flow battery[J].Electrochimica Acta,2006(28):6304-6312.
[7] 赵平,张华民,周汉涛,胡经纬,衣宝廉.多硫化钠-溴化钠氧化还原液流电池研究[J].电源技术,2005(05):322-324.
[8] 贾旭平.美国ZBB能源公司的锌/溴液流储能系统[J].电源技术,2011(05):489-492.
[9] David Ayme-Perrot;Serge Walter;Zelimir Gabelica;Sabine Valange .Evaluation of carbon cryogels used as cathodes for non-flowing zinc-bromine storage cells[J].Journal of Power Sources,2008(1):644-650.
[10] 衣宝廉;梁炳春;张恩浚 等.铁铬氧化还原液流电池系统[J].化工学报,1992,43(3):330.
[11] Codina G;Aldaz A .Scale-up studies of an Fe/Cr redox flow battery based on shunt current analysis[J].Journal of Applied Electrochemistry,1992,22(7):668.
[12] 施伟;谭毅;曹作暄 .隔热材料的研究现状及发展趋势[J].材料导报,2012,26(19):344.
[13] 李国欣.新型化学电源技术概论[M].上海:上海科学技术出版社,2006:559.
[14] Maria Skyllas-Kazacos;George Kazacos;Grace Poon .Recent advances with UNSW vanadium-based redox flow batteries[J].International journal of energy research,2010(2):182-189.
[15] 孙斌,郝晓刚,王忠德,张忠林,刘世斌,官国清.Continuous Separation of Cesium Based on NiHCF/PTCF Electrode by Electrochemically Switched Ion Exchange[J].中国化学工程学报:英文版,2012(05):837-842.
[16] Leung, P.K.;Ponce De León, C.;Walsh, F.C. .An undivided zinc-cerium redox flow battery operating at room temperature (295 K)[J].Electrochemistry communications,2011(8):770-773.
[17] 梁鹏,范明志,曹效鑫,黄霞,黄正宏,王诚.填料型微生物燃料电池产电特性的研究[J].环境科学,2008(02):512-517.
[18] 杨建华;曹佳弟 .钠硫电池电极结构改进与电池性能研究[J].电化学,1996(2):209.
[19] 李华,常守文,严川伟.全钒氧化还原液流电池中电极材料的研究评述[J].电化学,2002(03):257-262.
[20] Liu Y;Xia X;Liu H .Studies on cerium (Ce4+/Ce3+)-vanadium (V2+/V3+) redox flow cell-cyclic voltammogram response of Ce4+/Ce3+ redox couple in H2SO4 solution[J].Journal of Power Sources,2004,130(1-2):299.
[21] 许茜,乔永莲.钒电池电极材料和复合电极的研究进展[J].电源技术,2008(12):823-826.
[22] Lichtner Sarah;Brindle Ross;Kishter Lindsay et al.Advanced materials and devices for stationary electrical energy storage applications[R].USA:Sandy National Laboratory and Pacific Northwest National Laboratory,2010.
[23] 贺福;王茂章.碳纤维及其复合材料[M].北京:科学出版社,1997:2.
[24] Sun B;Skyllas-Kazacos M .Modification of graphite electrode materials for vanadium redox flow battery applicationPart Ⅰ.Thermal treatment[J].Electrochimica Acta,1992,37(7):1253.
[25] Sun B;Skyllas-Kazacos M .Chemical modification of graphite electrode materials for vanadium redox flow battery application-part Ⅱ.Acid treatments[J].JPowerSources,1992,39(1):1.
[26] 李学萍;严群英;贾建光 等.碳毡电极的表面改性Ⅱ.碳毡表面HNO3化学改性对电极性能影响[J].分子催化,1992,6(4):297.
[27] 李学萍;贾建光;张振宗 等.碳毡电极的表面改性Ⅲ.碳毡表面热氧化改性对电极性能影响[J].分子催化,1991,5(4):348.
[28] 刘素琴,郭小义,黄可龙,刘勇刚,李晓刚.钒电池电极材料聚丙烯腈石墨毡的研究[J].电池,2005(03):183-184.
[29] 王文红,王新东,郭敏,李建玲.全钒液流电池正极和负极材料的处理方法[J].北京科技大学学报,2007(11):1141-1144.
[30] 伍秋美,黄可龙,桑商斌,刘素琴,李晓刚.全钒液流电池用聚丙烯腈石墨毡电极研究[J].电源技术,2005(07):456-458.
[31] 吴涛;黄可龙;王鹏.铬酸液相氧化钒电池用石墨毡电极性能研究[A].重庆:重庆材料研究院,2010
[32] 李晓刚,黄可龙,谭宁,刘素琴,陈立泉.钒液流电池用石墨毡电极的电化学修饰[J].无机材料学报,2006(05):1114-1120.
[33] 李晓刚,黄可龙,桑商斌,谭宁,刘素琴,陈立泉.电化学氧化改性石墨毡电极对VO2+/VO+2电对的催化活性[J].功能材料,2006(07):1084-1086.
[34] LI Xiao-gang,HUANG Ke-long,LIU Su-qin,TAN Ning,CHEN Li-quan.Characteristics of graphite felt electrode electrochemically oxidized for vanadium redox battery application[J].中国有色金属学会会刊(英文版),2007(01):195-199.
[35] 刘迪,谭宁,黄可龙,刘素琴.全钒液流电池用石墨毡电极材料的电化学处理[J].电源技术,2006(03):224-226,242.
[36] Men Yue;Sun Ting .Carbon felts electrode treated in different weak acid solutions through electrochemical oxidation method for all vanadium redox flow battery[J].Int J Electrochem Sei,2012,7(4):3484.
[37] 赵成明;谢晓峰;王金海 等.全钒氧化还原液流电池用石墨毡电极的稳定性[J].化工学报,2011,62(z2):120.
[38] Pupkevich V;Glibin V;Karamanev D .The effect of activation on the electrochemical behaviour of graphite felt towards the Fe3+/Fe2+ redox electrode reaction[J].Electrochemistry communications,2007(8):1924-1930.
[39] 邱广玮;刘平;韩金铎.碳毡热处理及其润湿性能研究[A].重庆:美国科研出版社,2011:1100.
[40] Lu Yue;Weishan Li;Fengqiang Sun .Highly hydroxylated carbon fibres as electrode materials of all-vanadium redox flow battery[J].Carbon: An International Journal Sponsored by the American Carbon Society,2010(11):3079-3090.
[41] Wu ZH.;Gardner SD.;Pittman CU. .NITRIC ACID OXIDATION OF CARBON FIBERS AND THE EFFECTS OF SUBSEQUENT TREATMENT IN REFLUXING AQUEOUS NAOH[J].Carbon: An International Journal Sponsored by the American Carbon Society,1995(5):597-605.
[42] Gardner Steven D;Singamsetty Chakravarthy S K et al.Surface characterization of carbon fibers using angel-resolved XPS and ISS[J].CARBON,1995,33(5):587.
[43] 刘素琴,张文昔,黄可龙.全钒液流电池用碳毡电极的改性研究[J].电源技术,2006(05):395-397.
[44] 杨春;王树博;谢晓峰 .羟基自由基对全钒液流电池石墨毡电极的性能影响[J].化工学报,2012,63(z1):187.
[45] 刘然;廖孝艳;杨春 等.全钒液流电池石墨毡电极酸、热处理方法的对比[J].化工进展,2011,30(增刊):762.
[46] Di Blasi A;Di Blasi O;Briguglio N et al.Investigation of several graphite-based electrodes for vanadium redox flow cell[J].Journal of Power Sources,2013,227(4):15.
[47] Yue ZR;Wang L;Gardner SD;Pittman CU;Jiang W .Surface characterization of electrochemically oxidized carbon fibers[J].Carbon: An International Journal Sponsored by the American Carbon Society,1999(11):1785-1796.
[48] Zhang Wenguang;Xi Jingyu et al.Electrochemical activation of graphite felt electrode for VO2+/VO2 + redox couple application[J].Electrochimica Acta,2013,89(2):429.
[49] Kim Ki Jae;Kim Youngjun;Kim Jaehun et al.The effects of surface modification on carbon felt electrodes for use in vanadium redox flow batteries[J].Materials Chemistry and Physics,2011,131(1-2):547.
[50] Wang Shuangyin;Zhao Xinsheneg;Thomas Cochell et al.Nitrogen-doped carbon nanotube/graphite felts as advanced electrode materials for vanadium redox flow batteries[J].J Phys Chem Lett,2012,3(16):2164.
[51] Zhong S;Padested C;Kazacos M et al.Comparison of the physical,chemical and electrochemical properties of rayonand polyacrylonitrile-based graphite felt electrodes[J].Journal of Power Sources,1993,45(1):29.
[52] 王文红,薛方勤,王新东.Ir修饰碳毡对VO2+/VO2+电对电催化性能的影响[J].材料研究学报,2007(05):542-546.
[53] W. H. Wang;X. D. Wang .Investigation of Ir-modified carbon felt as the positive electrode of an all-vanadium redox flow battery[J].Electrochimica Acta,2007(24):6755-6762.
[54] 乔永莲 .钒电池电极改性及电池性能的研究[D].沈阳:东北大学,2008.
[55] Z. González;A. Sánchez;C. Blanco;M. Granda;R. Menéndez;R. Santamaría .Enhanced performance of a Bi-modified graphite felt as the positive electrode of a vanadium redox flow battery[J].Electrochemistry communications,2011(12):1379-1382.
[56] Johnson Da;Reid Ma .Chemical and electrochemical behavior of the Cr (Ⅲ)/Cr (Ⅱ) half-cell in the iron-chromium redox energy storage system[J].Journal of the Electrochemical Society,1985,132(5):1058.
[57] 赵平,张华民,周汉涛,衣宝廉.多硫化钠/溴液流储能电池负极材料的研究[J].化学研究,2005(01):49-51.
[58] Li, B.;Gu, M.;Nie, Z.;Shao, Y.;Luo, Q.;Wei, X.;Li, X.;Xiao, J.;Wang, C.;Sprenkle, V.;Wang, W. .Bismuth nanoparticle decorating graphite felt as a high-performance electrode for an all-vanadium redox flow battery[J].Nano letters,2013(3):1330-1335.
[59] Duarte MME.;Pilla AS.;Mayer CE. .Electrooxidation of Mn(II) to MnO2 on graphite fibre electrodes[J].Journal of Applied Electrochemistry,2003(5):387-392.
[60] Sun B;Skyllas-kazacos M .Chemical modification and electrochemical behaviour of graphite fiber in acidic vanadium solution[J].Electrochimica Acta,1991,36(3-4):513.
[61] Leung Puiki;Li Xiaohong et al.Progress in redox flow batteries,remaining challenges and their applications in energy storage[J].RSC Advances,2012,2(27):10125.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%