Thermal reliability of organic-organic phase change materials and their shape-stabilized composites

被引:19
|
作者
Cardenas-Ramirez, Carolina [1 ,2 ]
Gomez, Maryory A. [1 ]
Jaramillo, Franklin [1 ]
Fernandez, Angel G. [3 ]
Cabeza, Luisa F. [3 ]
机构
[1] Univ Antioquia UdeA, Fac Ingn, Ctr Invest Innovac & Desarrollo Mat CIDEMAT, Calle 70 52-21, Medellin 050022, Colombia
[2] Sumicol SAS, Grp Invest Mat & Sistemas Construcc Corona, Carrera 48 72 Sur 01, Sabaneta 055450, Colombia
[3] Univ Lleida, GREiA Res Grp, Pere Cabrera S-N, Lleida 25001, Spain
来源
JOURNAL OF ENERGY STORAGE | 2021年 / 40卷
关键词
Thermal reliability; Fatty acids; Shape-stabilized phase change materials (SS-PCM); Thermal cycling; ENERGY STORAGE PROPERTIES; LATENT-HEAT STORAGE; FATTY-ACIDS; CHLORIDE HEXAHYDRATE; EUTECTIC MIXTURES; MYRISTIC ACID; CONDUCTIVITY; PCM; VERMICULITE; PARAFFIN;
D O I
10.1016/j.est.2021.102661
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Thermal reliability is one of the main concerns when using shape-stabilized phase change materials (SS-PCMs) composites in latent heat thermal energy storage (TES) systems operating in moderate to low temperature range. Thus, this paper presents a study of the thermal stability, chemical stability, and thermal properties of three binary eutectic mixtures of fatty acids: capric/myristic acid (CA/MA), lauric/myristic acid (LA/MA), and palmitic/stearic acid (PA/SA); as well of three SS-PCMs produced with a natural porous support: SS-CA/MA, SS-LA/MA and SS-PA/SA. The eutectics and the SS-PCMs were exposed to several heating/cooling cycles and then infrared spectroscopy was carried out to determine chemical changes. Moreover, phase change temperature, latent heat of fusion, and latent heat of solidification were measured by differential scanning calorimetry. The eutectics and composites were proven to present good thermal reliability over 100 cycles for CA/MA and SS-CA/ MA, and up to 10000 cycles for LA/MA, PA/SA, SS-LA/MA and SS-PA/SA. The melting temperatures for the composites were between 19.5 degrees C and 53.2 degrees C, and enthalpies between 38 J/g and 49 J/g, with maximum deviation after thermal cycling below 2.03 degrees C and 11.45 J/g. These results confirm that these materials have significant potential to be used for thermal energy storage applications that required good thermal reliability.
引用
收藏
页数:8
相关论文
共 50 条
  • [21] Shape-stabilized, thermally conductive phase-change composites for thermal energy storage
    Zeng, Guanyue
    Li, Yihang
    Xiong, Yuzhu
    JOURNAL OF THERMAL ANALYSIS AND CALORIMETRY, 2024, 149 (23) : 13839 - 13849
  • [22] Light-thermal conversion organic shape-stabilized phase-change materials with broadband harvesting for visible light of solar radiation
    Wang, Yunming
    Tang, Bingtao
    Zhang, Shufen
    RSC ADVANCES, 2012, 2 (30): : 11372 - 11378
  • [23] Synthesis and thermal properties of shape-stabilized lauric acid/activated carbon composites as phase change materials for thermal energy storage
    Chen, Zhi
    Shan, Feng
    Cao, Lei
    Fang, Guiyin
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2012, 102 : 131 - 136
  • [24] Synthesis and thermal properties of fatty acid eutectics and diatomite composites as shape-stabilized phase change materials with enhanced thermal conductivity
    Tang, Fang
    Su, Di
    Tang, Yaojie
    Fang, Guiyin
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2015, 141 : 218 - 224
  • [25] Construction strategies and thermal energy storage applications of shape-stabilized phase change materials
    Yan, Jiahui
    Hu, Dechao
    Wang, Zhiqiang
    Ma, Wenshi
    JOURNAL OF APPLIED POLYMER SCIENCE, 2022, 139 (04)
  • [26] Preparation and thermal performance of shape-stabilized energy storage phase change building materials
    Ma, Feng
    Wang, Xiao-Yan
    Li, Fei
    Chen, Ming-Hui
    Cailiao Gongcheng/Journal of Materials Engineering, 2010, (06): : 54 - 58
  • [27] Novel green and sustainable shape-stabilized phase change materials for thermal energy storage
    Lai, Wei-Chi
    Cai, Yi-Ting
    Cai, Yan-Lin
    JOURNAL OF THE TAIWAN INSTITUTE OF CHEMICAL ENGINEERS, 2020, 117 : 257 - 264
  • [28] Flame retardance property of shape-stabilized phase change materials
    Wang, Jianping
    Wang, Yi
    Yang, Rui
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2015, 140 : 439 - 445
  • [29] Preparation and characterization of PEG/SiO2 composites as shape-stabilized phase change materials for thermal energy storage
    Li, Jingruo
    He, Lihong
    Liu, Tangzhi
    Cao, Xuejuan
    Zhu, Hongzhou
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2013, 118 : 48 - 53
  • [30] Preparation, characterization and performance of paraffin/sepiolite composites as novel shape-stabilized phase change materials for thermal energy storage
    Luo, Yue
    Xiong, Suya
    Huang, Jintao
    Zhang, Feng
    Li, Chongchong
    Min, Yonggang
    Peng, Ruitao
    Liu, Yidong
    SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2021, 231