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在分析有机相变材料的分类和特点的基础上,介绍了目前有机相变材料的制备方法和手段,从建筑节能材料和建筑蓄热构件两方面综述了近期国内外有机相变材料建筑节能应用的研究现状以及有机相变材料导热系数的改善方法,展望了其在建筑节能领域的应用和开发前景.

参考文献

[1] 张寅平;胡汉平.相变贮能理论与应用[M].合肥:中国科学技术大学出版社,1996
[2] 王晓伍;吕恩荣 .太阳能固-固相变贮热[J].新能源,1996,18(06):9.
[3] 樊耀峰,张兴祥.有机固-固相变材料的研究进展[J].材料导报,2003(07):50-53,81.
[4] Suresh Divi;Raja Chellappa;Dhanesh Chandra .Heat capacity measurement of organic thermal energy storage materials[J].Journal of Chemical Thermodynamics,2006,38:1312.
[5] M.N.A. Hawlader;M.S. Uddin;Mya Mya Khin .Microencapsulated PCM thermal-energy storage system[J].Applied Energy,2003(1/2):195-202.
[6] 邹光龙 .微胶囊型聚脲包覆石蜡储热材料[D].中国科学院大连化学物理研究所,2004.
[7] Su Junfeng;Wang Lixin;Ren Li .Synthesis of polyurethane microPCMs containing n-octadecane by interfacial polycondensation:Influence of styrene-maleic anhydride as a surfactant[J].Colloids and Surfaces,2007,299:268.
[8] 徐云龙,刘栋.纳米相变材料的研究进展[J].材料导报,2005(z2):9-11.
[9] Zhang Dong;Tian Shengli;Xiao Deyan .Experimental study on the phase change behavior of phase change material confined in pores[J].Journal of Solar Energy Engineering,2007,81:653.
[10] 姜勇,丁恩勇,黎国康.化学法和共混法制备的PEG/CDA相变材料的性能比较--储热性能与链结构的关系[J].纤维素科学与技术,2000(01):17-25.
[11] 张梅,那莹,姜振华.接枝共聚法制备聚乙二醇(PEG)/聚乙烯醇(PVA)高分子固-固相变材料性能研究[J].高等学校化学学报,2005(01):170-174.
[12] Li Weidong;Ding Enyong .Preparation and characterization of cross-linking PEG/MDI/PE copolymer as solid-solid phase change heat storage material[J].Solar Energy Materials and Solar Cells,2007,91:764.
[13] 张羽中,陈中华,张正国.有机/无机纳米复合相变储能材料的制备[J].高分子材料科学与工程,2001(05):137-139,143.
[14] 林怡辉,张正国,王世平.溶胶-凝胶法制备新型蓄能复合材料[J].太阳能学报,2001(03):334-337.
[15] Cai Yibing;Hu Yuan et al.Preparation and characterizations of HDPE-EVA alloy/OMT nano composites/paraffin compounds as a shape stabilized phase change thermal energy storage material[J].Thermochimica Acta,2006,451:44.
[16] Hawes D W;Banu D;Feldman D .Latent heat storage in concrete Ⅱ[J].Solar Energy Materials,1990,21:61.
[17] Hawes D W;Feldman D .Absorption of phase change materials in concrete[J].Solar Energy Materials and Solar Cells,1992,27:91.
[18] 张东,周剑敏,吴科如,李宗津.相变储能混凝土制备方法及其储能行为研究[J].建筑材料学报,2003(04):374-380.
[19] 郑立辉,宋光森,韦一良,胡廷平.石膏载体定形相变材料的制备及其热性能[J].新型建筑材料,2006(01):49-50.
[20] 吕石磊,冯国会,朱能.脂酸类相变材料在节能建筑中应用的可行性研究[J].沈阳建筑大学学报(自然科学版),2006(01):129-132.
[21] Zhang Y P;Lin K P;Yang R et al.Preparation,thermal performance and application of shape-stabilized PCM in energy efficient buildings[J].Energy and Buildings,2006,38:1262.
[22] Zhou Guobing;Zhang Yinping et al.An assessment of mixed type PCM-gypsum and shape-stabilized PCM plates in a building for passive solar heating[J].Journal of Solar Energy Engineering,2007,81:1351.
[23] Luisa F. Cabeza;Cecilia Castellon;Miquel Nogues;Marc Medrano;Ron Leppers;Oihana Zubillaga .Use of microencapsulated PCM in concrete walls for energy savings[J].Energy and buildings,2007(2):113-119.
[24] Marwa M. Hassan;Yvan Beliveau .Modeling of an integrated solar system[J].Building and environment,2008(5):804-810.
[25] 王秀明.建筑节能的重要途径:太阳能利用与建筑一体化[J].墙材革新与建筑节能,2006(03):38-39.
[26] Ali Karaipeklia;Ahmet Saria;Kamil Kaygusuz .Thermal conductivity improvement of stearic acid using expanded graphite and carbon fiber for energy storage applicartion[J].Renewable Energy,2007,32:2201.
[27] Eman-Bellah S. Mettawee;Ghazy M.R. Assassa .Thermal conductivity enhancement in a latent heat storage system[J].Solar Energy,2007(7):839-845.
[28] R.V. Seeniraj;N. Lakshmi Narasimhan .Performance enhancement of a solar dynamic LHTS module having both fins and multiple PCMs[J].Solar Energy,2008(6):535-542.
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