Research progress on preparation and application of microcapsule phase change materials

被引:0
|
作者
Gong X. [1 ]
Wang C. [1 ]
Zhu Q. [1 ]
机构
[1] School of Energy and Mechanical Engineering, Shanghai University of Electric Power, Shanghai
关键词
Microcapsule phase change material; Preparation methods; Properties characterization; Temperature regulation;
D O I
10.16085/j.issn.1000-6613.2020-2165
中图分类号
学科分类号
摘要
Microcapsule phase change material (MCPCM) can achieve the encapsulation of the phase change materials and avoid leakage and agglomeration. It has broadened the application fields of phase change materials and has a great prospect. The core and shell materials of MCPCM were firstly introduced. Then, the principles of spray drying, sol gel, complex coacervation, interfacial polymerization, in-situ polymerization, suspension polymerization and microemulsion polymerization methods were elaborated. The microscopic morphology characteristics of MCPCM were presented. Furthermore, the influences of particle size distribution, encapsulation ratio and core-shell ratio on the thermal stability and heat storage capacity of MCPCM were analyzed. Meanwhile, the application of MCPCM in the fields of building energy conservation, heat storage and temperature regulation textile, military aviation, energy utilization and other fields were summarized. Finally, the research direction of microcapsule phase change materials had been prospected. © 2021, Chemical Industry Press Co., Ltd. All right reserved.
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页码:5554 / 5576
页数:22
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共 158 条
  • [1] LI Zhao, LI Baorang, CHEN Haozhi, Et al., State of the art review on phase change thermal energy storage technology, Chemical Industry and Engineering Progress, 39, 12, pp. 5066-5085, (2020)
  • [2] JAVADI F S, METSELAAR H S C, GANESAN P., Performance improvement of solar thermal systems integrated with phase change materials (PCM), a review, Solar Energy, 206, pp. 330-352, (2020)
  • [3] QASIM M A, ALI H M, KHAN M N, Et al., The effect of using hybrid phase change materials on thermal management of photovoltaic panels-An experimental study, Solar Energy, 209, pp. 415-423, (2020)
  • [4] SHARMA R K, GANESAN P, TYAGI V V, Et al., Developments in organic solid-liquid phase change materials and their applications in thermal energy storage, Energy Conversion and Management, 95, pp. 193-228, (2015)
  • [5] SHEN Tianwei, LU Shaofeng, ZHANG Jing, Et al., Preparation and performance characterization of low-yellowing polyurea microcapsule phase change materials, Chemical Industry and Engineering Progress, 36, 12, pp. 4547-4553, (2017)
  • [6] XU B, ZHOU J, NI Z, Et al., Synthesis of novel microencapsulated phase change materials with copper and copper oxide for solar energy storage and photo-thermal conversion, Solar Energy Materials and Solar Cells, 179, pp. 87-94, (2018)
  • [7] CHEN Z, FANG G., Preparation and heat transfer characteristics of microencapsulated phase change material slurry: a review, Renewable and Sustainable Energy Reviews, 15, 9, pp. 4624-4632, (2011)
  • [8] CUI H, LIAO W, MI X, Et al., Study on functional and mechanical properties of cement mortar with graphite-modified microencapsulated phase-change materials, Energy and Buildings, 105, pp. 273-284, (2015)
  • [9] FRAZZICA A, BRANCATO V, PALOMBA V, Et al., Thermal performance of hybrid cement mortar-PCMs for warm climates application, Solar Energy Materials and Solar Cells, 193, pp. 270-280, (2019)
  • [10] THIELE A M, SANT G, PILON L., Diurnal thermal analysis of microencapsulated PCM-concrete composite walls, Energy Conversion and Management, 93, pp. 215-227, (2015)