Myristic acid-hybridized diatomite composite as a shape-stabilized phase change material for thermal energy storage

被引:36
|
作者
Han, Jie [1 ]
Liu, Songyang [1 ]
机构
[1] Liaoning Shihua Univ, Sch Min Engn, Fushun 113001, Peoples R China
来源
RSC ADVANCES | 2017年 / 7卷 / 36期
关键词
POLYETHYLENE-GLYCOL; NANOTUBE COMPOSITE; CONDUCTIVITY; PERFORMANCE; PCM; BUILDINGS;
D O I
10.1039/c7ra02385e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study was aimed at developing a shape-stabilized composite phase-change material (PCM) for thermal energy storage. Raw diatomite was first purified via thermal treatment and acid-leaching to enhance the adsorption capacity of the PCM. The composite PCM was fabricated using myristic acid (MA) to hybridize diatomite via the vacuum impregnation method. Activated carbon (AC) was added to enhance the stability and conductivity of the composite PCM, and it could also be used to prevent the leakage of MA from the supporting materials. The maximum loading capacity and melting enthalpy of MA/H-diatomite-2 reached 72% and 124.3 J g(-1), respectively, and its thermal conductivity was as high as 0.58 W (m K)(-1). Note that the introduction of AC obviously reduced the melting and freezing periods and enhanced the heat transfer of the composite PCM. Furthermore, MA/H-diatomite-2 exhibits excellent thermal reliability after 200 cycles and could be potentially used in thermal energy storage systems.
引用
收藏
页码:22170 / 22177
页数:8
相关论文
共 50 条
  • [1] Myristic Acid/Montmorillonite Composite as Shape Stabilized Phase Change Material for Thermal Energy Storage
    Li, Zhong
    Yu, Shao-Ming
    Tan, De-Xin
    Yao, Tong-He
    ADVANCED TEXTILE MATERIALS, PTS 1-3, 2011, 332-334 : 935 - +
  • [2] Calcium Chloride Hexahydrate/Diatomite/Paraffin as Composite Shape-Stabilized Phase-Change Material for Thermal Energy Storage
    Zhang, Xinxing
    Li, Xiang
    Zhou, Yuan
    Hai, Chunxi
    Shen, Yue
    Ren, Xiufeng
    Zeng, Jinbo
    ENERGY & FUELS, 2018, 32 (01) : 916 - 921
  • [3] Shape-stabilized orange peel/myristic acid phase change materials for efficient thermal energy storage application
    Mandal, Soumen
    Ishak, Shafiq
    Lee, Dong-Eun
    Park, Taejoon
    ENERGY REPORTS, 2022, 8 : 9618 - 9628
  • [4] Paraffin/graphene sponge composite as a shape-stabilized phase change material for thermal energy storage
    Li Pengyang
    Chen Qiang
    Peng Qingyu
    He Xiaodong
    PIGMENT & RESIN TECHNOLOGY, 2021, 50 (05) : 412 - 418
  • [5] Paraffin/graphene sponge composite as a shape-stabilized phase change material for thermal energy storage
    Li, Pengyang
    Chen, Qiang
    Peng, Qingyu
    He, Xiaodong
    Peng, Qingyu (pengqingyu@hit.edu.cn), 1600, Emerald Group Holdings Ltd. (50): : 412 - 418
  • [6] Adjustable thermal property of polyethylene glycol/diatomite shape-stabilized composite phase change material
    Qian, Tingting
    Li, Jinhong
    Ma, Hongwen
    Yang, Jing
    POLYMER COMPOSITES, 2016, 37 (03) : 854 - 860
  • [7] Preparation and Characterization of KNO3/Diatomite Shape-Stabilized Composite Phase Change Material for High Temperature Thermal Energy Storage
    Deng, Yong
    Li, Jinhong
    Qian, Tingting
    Guan, Weimin
    Wang, Xiang
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2017, 33 (02) : 198 - 203
  • [8] Preparation and Characterization of KNO3/Diatomite Shape-Stabilized Composite Phase Change Material for High Temperature Thermal Energy Storage
    Yong Deng
    Jinhong Li
    Tingting Qian
    Weimin Guan
    Xiang Wang
    JournalofMaterialsScience&Technology, 2017, 33 (02) : 198 - 203
  • [9] Stearic acid hybridizing kaolinite as shape-stabilized phase change material for thermal energy storage
    Li, Jianwen
    Zuo, Xiaochao
    Zhao, Xiaoguang
    Li, Daokui
    Yang, Huaming
    APPLIED CLAY SCIENCE, 2019, 183
  • [10] A lauric acid-hybridized bentonite composite phase-changing material for thermal energy storage
    Liu, Songyang
    Han, Jie
    Wang, Lunan
    Gao, Ying
    Sun, Hai
    Li, Weilong
    RSC ADVANCES, 2020, 10 (43) : 25864 - 25873