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无机盐/陶瓷基新型复合相变蓄热材料既具备了显热蓄热材料和潜热蓄热材料的长处,又克服了两者的不足,具有能快速放热和快速吸热、蓄热量大、直接换热、定形等特性.综述了国内外无机盐/陶瓷基复合储能材料的研究现状,介绍了无机盐/陶瓷基复合蓄热材料的蓄热原理、组分选择和制备工艺等,总结了其存在的问题,并提出了一些解决问题的看法,展望了今后的研究趋势.

参考文献

[1] 余晓福;张正国;王世平 .复合蓄热材料研究进展[J].新能源,1999,21(09):35.
[2] Nakagawa T;Arai N .Regenerative burner system[J].化学工学论文集,2000,126:236.
[3] 张寅平;胡汉平;孔祥冬.相变贮能-理论和应用[M].合肥:中国科学技术大学出版社,1996
[4] 李爱菊,张仁元,周晓霞.化学储能材料开发与应用[J].广东工业大学学报,2002(01):81-84.
[5] Dincer S Dost;Li Xiangguo .Thermal energy storage application from an energy saving perspective[J].International Journal of Global Energy Issues,1997,9:351.
[6] 李爱菊,张仁元,黄金.定形相变储能材料的研究进展及其应用[J].新技术新工艺,2004(02):45-48.
[7] Terry Claar D.Composite salt ceramic media for thermal energy storage application[A].,1982:2043.
[8] Petri R;Ong E T;Kardas A .Development of composite latent/sensible heat storage media[Z].ORNL/Sub/86-95001-1,1990.
[9] Randy J;PetriR.High-temperature salt/ceramic thermal storage phase-change[A].,1983:1796.
[10] Hame E;TautU;Grob Y.Salt ceramic thermal energy storage for solar thermal central receiver plants[A].,1991:2.
[11] Gluck A.Development and testing of advanced TES materials for solar thermal central receier plants[A].,1991:2.
[12] Andreas Gluck;Rainer Tamme;Horst Kalfa.Investigation of high temperature storage materials in a technical scale test facility[J].Solar Energy Materials and Solar Cells,1991:240.
[13] Rainer Tamme;Ulrich Tant;Christian Streuber .Energy storage development for solar thermal process[J].Solar Energy Materials and Solar Cells,1991,24:386.
[14] Notter W;Lechner Th;Grob U.Thermophysical properties of the composite ceramic-salt system (SiO2/Na2 SO4 )[J].Thermochimica Acta,1993:455.
[15] Notter W;Hahme E.Thermal expansion models for polycrystalline salt-ceramics[J].Thermochimica Acta,1996:93.
[16] Steinei D.Development and investigation of thermal energy storage systems for the media temperature range[A].,1995:193.
[17] SCHWERIN M;Listle W .Development of a latent heat storage system with ceramic matrix for utilization of industrial waste heat[R].Final Report,1998.
[18] Hadjieva M .Composite salt-hydrate concrete system for building energy storage[J].Renewable Energy,2000,19:111.
[19] 张仁元,柯秀芳,李爱菊.无机盐/陶瓷基复合储能材料的制备和性能[J].材料研究学报,2000(06):652-656.
[20] 张仁元,柯秀芳,李爱菊.显热/潜热复合储能材料的研究[J].新能源,2000(12):29-31.
[21] 王辅亚 .共晶盐/陶瓷基相变复合材料新型储能元件的研制[J].矿物岩石地球化学通报,1997,16(zk)
[22] 李爱菊,张仁元,柯秀芳,黄金.Na2SO4/SiO2定形复合储热材料的性能研究[J].材料开发与应用,2003(06):21-23,39.
[23] 黄金,张仁元,李爱菊.无机盐熔浸多孔陶瓷的熔浸过程分析[J].材料导报,2004(09):94-95.
[24] 王华,何方,胡建杭,包桂蓉,马文会.燃料工业炉用陶瓷与熔融盐复合蓄热材料的制备[J].工业加热,2002(04):20-22.
[25] 王华,乔欢,T.Nohira,Y.Ito.新型陶瓷与熔融盐复合蓄热材料优化组合的数值模拟[J].中国有色金属学报,2002(03):550-555.
[26] Hasnain S M .Review on sustainable thermal energy storage technology,Part 1:Heat storage materials and techniques[J].Energy Conversion and Management,1998,39:1127.
[27] Aia A Jalalzadeh-Azar;Glenn W;George A Adebiyi .Performance comparison of high-temperature packed bed operation with PCM and sensible-heat pellets[J].International Journal of Energy Research,1997,21(11):1039.
[28] 黄金,张仁元,李爱菊.无机盐/陶瓷基复合储能材料的制备技术[J].新技术新工艺,2004(07):49-51.
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