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石膏基陶粒吸附石蜡复合储能材料制备及性能 被引量:23

Preparation and properties of gypsum-based ceramisite adsorption paraffin complex power storage material
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摘要 采用常温相变储能石蜡作为复合相变材料的储能介质,以多孔陶粒作为吸附载体,再通过海藻酸钠反应包封陶粒,复合制成热稳定性能良好、便于在建筑结构上应用、成本低廉的颗粒型相变储能材料.将该种复合的相变储热材料加入到石膏中,能明显提高石膏板的储能密度,延长储能材料的储热时间,同时明显降低石膏的水化热峰值温度并延缓其出现时间,对石膏水化过程温度峰值的控制有良好效果. Used normal atmospheric temperature phase change paraffin as power storage medium and porous ceramisite as adsorption carries. By the reaction of sodium alginate to encapsulate the ceramisite, compounded a granular phase change power storage material which had the characteristic of excellent thermal stability, good application on building structure and low cost. Mixed the composite phase change power storage material into gypsum, which can obviously improve the power storage density of the gypsum plank and lengthen the heat storage duration time of the power storage material. Besides the addition of the composite phase change power storage material can also markedly lower the hydration peak temperature of gypsum and postpone emerging of the hydration peak temperature. It showed out an efficient result on controlling the hydration peak tem- perature of gypsum.
出处 《天津理工大学学报》 2008年第3期63-66,84,共5页 Journal of Tianjin University of Technology
关键词 相变储能 陶粒 石蜡 水化热 phase change power storage ceramisite paraffin heat of hydration
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  • 1叶宏,王军,庄双勇,葛新石,徐斌.定形相变贮能式地板辐射采暖系统的实验研究[J].太阳能学报,2004,25(5):651-656. 被引量:33
  • 2陈传福,习复,潘增富,张岑.一种新型贮能材料的研制及其应用前景[J].中国空间科学技术,1995,15(5):31-36. 被引量:13
  • 3[3]Royon L,Guiffant G,Flaud P.Investigation of heat transfer in a polymeric phase change material for low level heat storage[J].Energy Conversion and Management,1997,38(6):517~ 524.
  • 4[4]Feldman D,Banu D,W.Hawes D.Development and application of organic phase change mixtures in thermal storage gypsum wallboard[J].Solar Energy Materials and Solar Cells,1995,36:147~ 157.
  • 5[5]Sarit A,Kaygusuz K.Thermal energy storage system using stearic acid as a phase change material[J].Solar Energy,2001,71(6):365~ 376.
  • 6[6]Dimaano M.N.R.,Watanabe T.The capric-lauric acid and pentadecane combination as phase change material for cooling applications[J].Applied Ther- mal Engineering,2002,22:365~ 377.
  • 7[10]Feldman D,Shapiro M M,Banu D,et al.Fatty aci- ds and their mixtures as phase change materials for thermal energy storage[J].Solar Energy Mat,1989,18:201~ 216.
  • 8[11]Cantor S.Application of DSC to the study of ther- mal energy storage[J].Thermochimica Acta,1978,26(6):39~ 46.
  • 9Yang Hongxing, Zhu Zuojin, Burnett John. Simulation of the behavior of transparent insulation materials in buildings in northern China [ J ], Applied Energy,2000, 67: 293-306.
  • 10Athienitis A K. A predictive control algorithm for massive buildings [J]. ASHRAE Transaction, 1988, 94(2): 1050-1068.

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