[1] Dai Yu(戴彧),Tang Liming(唐黎明). Research and development of phase change material(PCM)used as heat storing material[J]. Chemical World (化学世界),2001,42(12):662-665. [2] Yu Xiaofu(余晓福),Zhang Zhengguo(张正国),Wang Shiping(王世平). 复合储热材料研究进展[J]. New Energy Sources (新能源),1999,21(9):35-38. [3] Ye Feng(叶锋),Qu Jianglan(曲江兰),Zhong Junyu(仲俊瑜), et al . Research advances in phase change materials for thermal energy storage[J]. The Chinese Journal of Process Engineering (过程工程学报),2010,10(6):1231-1241. [4] Lovegrove K,Luzzi A,Soldiani I. Developing ammonia based thermochemical energy storage for dish power plants[J]. Solar Energy ,2004,76:331-337. [5] Gao Zhengya(高正亚). 生物技术用多孔硅藻土陶瓷[J]. Jiangsu Ceramics (江苏陶瓷),1999(9):23-24. [6] Song Bing(宋兵),Zheng Shuilin(郑水林),Yang Tao(杨涛), et al . Current situation and development of diatomite-based composites[J]. China Non-metallic Mining Industry Herald (中国非金属矿工业导刊),2012(3):1-4. [7] Zhang Qiang(张强),Zhou Xuedong(周学东). The microstructure characteristics of diatomite and its application[J]. China Tile & Sanitaryware (中国建筑卫生陶瓷),2005(12):116-117. [8] Wang Lijian(王利剑),Zheng Shuilin(郑水林),Chen Juntao(陈骏涛). Study on purification & adsorption of diatomite[J]. Non-Metallic Mines (非金属矿),2004,20(2):33-36. [9] Zhang X B,Meng G Y,Liu X Q. Sintering kinetics of porous ceramics from natural diatomite[J]. Journal of American Ceramic Society ,2005,88(7):1826-1830. [10] Li Aiju(李爱菊),Wang Yi(王毅). Study on the high temperature stability of salt/ceramic composite heat storage material[J]. Materials Review (材料导报B:研究篇),2011,25(12):78-81. [11] Cheng Xiaomin(程晓敏),Dong Jing(董静),Wu Xingwen(吴兴文), et al . Thermal storage properties of high-temperature phase transformation on Al-Si-Cu-Mg-Zn alloys[J]. Heat Treatment of Metals (金属热处理),2010,35(3):13-16. [12] Ge Zhiwei(葛志伟),Ye Feng(叶锋),Mathieu Lasfargues, et al . Recent progress and prospective of medium and high temperatures thermal energy storage materials[J]. Energy Storage Science and Technology (储能科学与技术),2012,1(2):90-102. [13] Zhang Xingxiang(张兴祥),Wang Xin(王馨),Wu Wenjian(吴文健), et al . 相变材料胶囊制备与应用[M]. Beijing:Chemical Industry Press,2009:10. [14] Calvin D P,Bryant Y G. Protective clothing containing encapsulated phase change materials[J]. ASME HTD ,1998,362(40):123-132. [15] Goynes W R,Vigo T L,Bruno J S. Microstructure of fabrics chemically finished for thermal adaptability[J]. Textile Res. J ,1990,60(5):277-284. [16] Fang G Y,Chen Z,Li H. Synthesis and properties of microencapsulated paraffin composites with SiO 2 shell as thermal energy storage materials[J]. Chemical Engineering Journal ,2010,163:154-159. [17] Mettawee E S,Assassa M R. Thermal conductivity enhancement in a latent heat storage system[J]. Solar Energy ,2007,81(7):839-845. [18] Sari A. Form-stable paraffin/high density polyethylene composites as solid-liquid phase change material for thermal energy storage: Preparation and thermal properties[J]. Energy Conversion and Management ,2004,45(8):2033-2042. [19] Jin Yi,Lee Waipeng,Musina Zenfira,Ding Yulong. A one-step method for producing microencapsulated phase change materials[J]. Particuology ,2010,8(6):588-590. [20] Murat M K. High-temperature phase change materials for thermal energy storage[J]. Renewable and Sustainable Energy Reviews ,2010,14(3):955-970. [21] Pincemin S,Py X,Olives R. Elaboration of conductive thermal storage composites made of phase change materials and graphite for solar plant[J]. Journal of Solar Energy Engineering Transition of The Asme ,2008,130(1):5. [22] Randy J Petri,Estela T Ong. High temperature composite thermal storage systems for industrial application[C]//Proceedings of 20th Energy Technology Conference,1985. [23] Zhao C Y,Wu Z G. Heat transfer enhancement of high temperature thermal energy storage using metal foams and expanded graphite[J]. Solar Energy Materials and Solar Cells ,2011,95(2):636-643. [24] Zhang Tao(张焘),Zeng Liang(曾亮),Zhang Dong(张冬). Improvement of thermal properties of hybrid inorganic salt phase change materials by expanded graphite and graphene[J]. Inorganic Chemicals Industry (无机盐工业),2010,42(5):24-27. [25] Lu Yang(路阳),Peng Guowei(彭国伟),Wang Zhiping(王智平),Wang Kezhen(王克振),Ma Rongbin(马榕彬). A review on research for molten salt as a phase change material[J]. Materials Review (材料导报),2011,25(11):38-40. [26] Randy J P,Estela T O,Terry C D. High-temperature salt/ceramic thermalstorage phase-change[C]//Proceedings 18th IECEC Meeting,1983:1774-1796. [27] Terry C D. Composite salt ceramic media for thermal energy storage application proceedings[C]//Proceedings 17th IECEC Meeting,1982:2043-2048. [28] Gluck A,Tamme R,Kalfa H. Development and testing of advanced TES materials for solar thermal central receiver plant proceeding[C]//Solar World Congress,1991,2:1943-1948. [29] Hahne E,Taut U,Grob Y. Salt ceramic thermal energy storage for solar thermal central receiver plants proceedings[C]//Solar World Congress,1991, 2:1937-1941. [30] Tamme R,Taut U,Streuber C. Energy storage development for solar thermal process[J]. Solar Energy Materials ,1991,24(2):386-396. [31] Ali Karaipekli,Ahmet Sari. Capric-myristic acid/expanded perlite composite as form-stable phase change material for latent heat thermal energy storage[J]. Renewable Energy ,2008,33(12):2599-2605. [32] Zhang Renyuan(张仁元),Ke Xiufang(柯秀芳),Li Aiju(李爱菊). Preparation and performance of salt/ceramic composite energy storage materials[J]. Chinese Journal of Materials Research (材料研究学报),2000,14(6):12-17. [33] Zhang Renyuan(张仁元),Ke Xiufang(柯秀芳),Li Aiju(李爱菊). Study of the sensible/latent heat composite energy storage materials[J]. New Energy Sources (新能源),2000,22(12):29. [34] Zhang Xingxue(张兴雪),Wang Hua(王华),Wang Shenglin(王胜林). Preparation of a new composite latent thermal energy storage material at high temperatures[J]. Journal of Kunming University of Science and Technology (昆明理工大学学报),2006,31(5): 17-19. [35] Wang Yongjun(王永军),Wang Shenglin(王胜林). Preparation and characterization of Na 2 SO 4 /MgO composite phase change material for thermal energy storage[J]. Energy for Metallurgical Industry (冶金能源),2011,30(3):5-8. [36] Wu Jianfeng(吴建锋),Li Jian(李剑),Xu Xiaohong(徐晓虹), et al . Preparation of molten salts/ceramic-foam composites by melt infiltration method as energy storagy materials at high temperature[J]. Journal of WuhanUniversity of Technology (武汉理工大学学报),2009,31(17):70-73. [37] Leng Guanghui(冷光辉),Wu Jianfeng(吴建锋),Xu Xiaohong(徐晓虹). Encapsulation of PCM in ceramic thermal energy storage materials[J]. Energy Storage Science and Technology (储能科学与技术),2012,1(2):123-130. [38] Zhang Xingxue(张兴雪),Wang Hua(王华),Wang Shenglin(王胜林). Preparation and characterization of the composite phase change material with MgO ceramic matrix[J]. Industrial Heating (工业加热),2006,35(1):7-9. [39] Steiner D,Wierse M,Groll M. Development and investigation of thermal energy storage systems for the media temperature range[C]//Proceedings 30th IECEC Meeting, New York, American Society of Mechanical Engineers United Engineering Center,1995:193-198. [40] Yang Wenjie(杨文洁). Preparation and performance study of composite phase change materials[D]. Xinxiang(新乡):Henan Normal University(河南师范大学),2010. [41] Sedat K,Karaipekli A,Ahmet S,Alper B. Polyethylene glycol (PEG)/diatomite composite as a novel form-stable phase change material for thermal energy storage[J]. Solar Energy Materials and Solar Cells ,2011,95(7):1647-1653. [42] Nomura T,Okinaka N,Akiyama T. Impregnation of porous material with phase change material for thermal energy storage[J]. Materials Chemistry and Physics ,2009,115:846-850. [43] Ahmet S,Alper B. Preparation and thermal energy storage properties of building material-based composites as novel form-stable PCMs[J]. Energy Buildings ,2012,51:73-83. [44] Sari A,Karaipekli A. Fatty acid esters-based composite phase change materials for thermal energy storage in buildings[J]. Applied Thermal Engineering ,2012,37:208-216. [45] Ding Rui(丁锐),Xiao Liguang(肖力光),Zhao Yingyu(赵瀛宇). A new type solid-solid PCM and its manufacture method[J]. Journal of Jilin Institute Architectural & Civil (吉林建筑工程学院学报),2011,28(3):40-42. [46] Li M,Wu Z S,Kao H K. Study on preparation and thermal properties of binary fatty acid/diatomite shape-stabilized phase change materials[J]. Solar Energy Materials and Solar Cells ,2011,95:2412-2416. [47] Wang Jiao(王佼),Zheng Shuilin(郑水林). Research on preparation technology of diatomite composite phase change material[J]. Non-Metallic Mines (非金属矿),2012,35(3):55-58. [48] Sun Yuezhi(孙跃枝),Xi Guoxi(席国喜),Yang Wenjie(杨文洁),Xing Xinyan(邢新艳). Preparation and study on paraffin/modified kieselguhr composite phase change material[J]. New Chemical Materials (化工新型材料),2010,38(4):46-48. [49] Xi Guoxi(席国喜),Yang Wenjie(杨文洁). Preparation and study of stearic acid/modified kieselguhr composite phase change material[J]. Materials Review (材料导报),2009,23(16):45-50. [50] Liu Juanhong(刘娟红),Song Shaomin(宋少民). 硅酸钙石棉复合保温灰的研制[J]. New Building Materials (新型建筑材料),1994(1):38-39. [51] Yu Qian(于漧).我国轻骨料和轻骨料砌块的现状与展望[J]. Brick & Tile World (建筑工业信息),1996(23):4-5. [52] Xiao Liguang(肖力光),Yang Yanmin(杨艳敏),Chang Jiguo(常继国).硅藻土对氯氧镁水泥性能的影响[J]. Jilin Building Materials (吉林建材),2000(1):23-26. [53] Fragoulisa D,Stamatakis M G. Characterization of lightweight aggregates produced with clayey diatomite rocks originating from Greece[J]. Materials Characterization ,2004(53):307-316. [54] Antonides L E. Mineral commodities Diatomite[J]. USGS ,1997(24):1-4. [55] Bülent I Y,Nezahat E. The use of raw and calcined diatomite in cement production[J]. Cement and Concrete Composites ,2008,3(30):202-211. |