Preparation and Supercooling Modification of Salt Hydrate Phase Change Materials Based on CaCl2•2H2O/CaCl2

被引:21
作者
Xu, Xiaoxiao [1 ]
Dong, Zhijun [2 ]
Memon, Shazim Ali [3 ]
Bao, Xiaohua [1 ]
Cui, Hongzhi [1 ]
机构
[1] Shenzhen Univ, Coll Civil Engn, Shenzhen 518060, Peoples R China
[2] Shenzhen Inst Informat Technol, Sch Traff & Environm, Shenzhen 518060, Peoples R China
[3] Nazarbayev Univ, Sch Engn, Dept Civil Engn, Astana 010000, Kazakhstan
来源
MATERIALS | 2017年 / 10卷 / 07期
关键词
phase change materials; calcium chloride hexahydrate; supercooling; Nano-SiO2; CALCIUM-CHLORIDE HEXAHYDRATE; THERMAL-ENERGY STORAGE; LATENT-HEAT STORAGE; THERMOPHYSICAL PROPERTIES; ACETATE TRIHYDRATE; CHANGE BEHAVIOR; CONCRETE; PCM; NANOFLUIDS; SYSTEMS;
D O I
10.3390/ma10070691
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Salt hydrates have issues of supercooling when they are utilized as phase change materials (PCMs). In this research, a new method was adopted to prepare a salt hydrate PCM (based on a mixture of calcium chloride dihydrate and calcium chloride anhydrous) as a novel PCM system to reduce the supercooling phenomenon existing in CaCl2 center dot 6H(2)O. Six samples with different compositions of CaCl2 were prepared. The relationship between the performance and the proportion of calcium chloride dihydrate (CaCl2 center dot 2H(2)O) and calcium chloride anhydrous (CaCl2) was also investigated. The supercooling degree of the final PCM reduced with the increase in volume of CaCl2 center dot 2H(2)O during its preparation. The PCM obtained with 66.21 wt % CaCl2 center dot 2H(2)O reduced the supercooling degree by about 96.8%. All six samples, whose ratio of CaCl2 center dot 2H(2)O to (CaCl2 plus CaCl2 center dot 2H(2)O) was 0%, 34.03%, 53.82%, 76.56%, 90.74%, and 100% respectively, showed relatively higher enthalpy (greater than 155.29 J/g), and have the possibility to be applied in buildings for thermal energy storage purposes. Hence, CaCl2 center dot 2H(2)O plays an important role in reducing supercooling and it can be helpful in adjusting the solidification enthalpy. Thereafter, the influence of adding different percentages of Nano-SiO2 (0.1 wt %, 0.3 wt %, 0.5 wt %) in reducing the supercooling degree of some PCM samples was investigated. The test results showed that the supercooling of the salt hydrate PCM in Samples 6 and 5 reduced to 0.2 degrees C and 0.4 degrees C respectively. Finally, the effect of the different cooling conditions, including frozen storage (20 degrees C) and cold storage (5 degrees C), that were used to prepare the salt hydrate PCM was considered. It was found that both cooling conditions are effective in reducing the supercooling degree of the salt hydrate PCM. With the synergistic action of the two materials, the performance and properties of the newly developed PCM systems were better especially in terms of reducing the supercooling degree of the PCM. The novel composite PCMs are promising candidates for thermal energy storage applications.
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页数:11
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共 23 条
  • [1] CALCIUM AND STRONTIUM DICHLORIDE HEXAHYDRATES BY NEUTRON-DIFFRACTION
    AGRON, PA
    BUSING, WR
    [J]. ACTA CRYSTALLOGRAPHICA SECTION C-CRYSTAL STRUCTURE COMMUNICATIONS, 1986, 42 : 141 - 143
  • [2] Segregation due to motion of front of solidification in phase change materials systems and dependence with shape and dimension factors
    Arias, F. J.
    Wang, Xiaolin
    [J]. APPLIED THERMAL ENGINEERING, 2015, 75 : 366 - 370
  • [3] Phase change behaviour of some latent heat storage media based on calcium chloride hexahydrate
    Carlsson, Bo
    [J]. SOLAR ENERGY, 2009, 83 (04) : 485 - 500
  • [4] Experimental studies on the supercooling and melting/freezing characteristics of nano-copper/sodium acetate trihydrate composite phase change materials
    Cui, Wenlong
    Yuan, Yanping
    Sun, Liangliang
    Cao, Xiaoling
    Yang, Xiaojiao
    [J]. RENEWABLE ENERGY, 2016, 99 : 1029 - 1037
  • [5] CALCIUM-CHLORIDE HEXAHYDRATE - A PHASE-CHANGING MATERIAL FOR ENERGY-STORAGE
    FEILCHENFELD, H
    SARIG, S
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY PRODUCT RESEARCH AND DEVELOPMENT, 1985, 24 (01): : 130 - 133
  • [6] THE STABILITY OF PHASE-CHANGE MATERIALS IN CONCRETE
    HAWES, DW
    BANU, D
    FELDMAN, D
    [J]. SOLAR ENERGY MATERIALS AND SOLAR CELLS, 1992, 27 (02) : 103 - 118
  • [7] Experimental study on thermophysical properties of nanofluids as phase-change material (PCM) in low temperature cool storage
    He, Qinbo
    Wang, Shuangfeng
    Tong, Mingwei
    Liu, Yudong
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2012, 64 : 199 - 205
  • [8] Phase change performance of sodium acetate trihydrate with AlN nanoparticles and CMC
    Hu, Peng
    Lu, Da-Jie
    Fan, Xiang-Yu
    Zhou, Xi
    Chen, Ze-Shao
    [J]. SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2011, 95 (09) : 2645 - 2649
  • [9] Salt hydrates as latent heat storage materials:Thermophysical properties and costs
    Kenisarin, Murat
    Mahkamov, Khamid
    [J]. SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2016, 145 : 255 - 286
  • [10] A review on thermophysical properties of nanoparticle dispersed phase change materials
    Kibria, M. A.
    Anisur, M. R.
    Mahfuz, M. H.
    Saidur, R.
    Metselaar, I. H. S. C.
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2015, 95 : 69 - 89