Research progress on thermochemical energy storage properties of CaCO3/CaO compound composites

被引:0
|
作者
Sun J. [1 ]
Bai S. [1 ]
Zhou Z. [2 ]
Yang Y. [3 ]
Liu W. [2 ]
机构
[1] School of Energy and Mechanical Engineering, Nanjing Normal University, Nanjing
[2] College of Engergy and Power Engineering, Huazhong University of Science and Technology, Wuhan
[3] Advanced Technology Research Institute, Shandong University, Jinan
关键词
CaCO[!sub]3[!/sub]/CaO compound materials; energy storage density; granulation; optical absorbance; thermochemical energy storage;
D O I
10.13245/j.hust.238902
中图分类号
学科分类号
摘要
CaCO3/CaO material is a potential thermochemical heat storage agent at high temperature due to its wide sources,large storage capacity and high storage temperature.The thermochemical energy storage principle and system of CaCO3/CaO material were briefly introduced. Moreover,the issues of high temperature sintering,poor inherent light absorption characteristics and elutriation easily encountered for CaCO3/CaO materials in surface and volumetric solar collectors were analyzed,respectively.The key issues facing the practical application of CaCO3/CaO thermochemical energy storage materials were systematically analyzed,the domestic and foreign research status of the development of high-efficiency CaCO3/CaO composite material were ssummarized.Finally,the shortcomings of CaCO3/CaO composites and the direction of further research and development were discussed. © 2023 Huazhong University of Science and Technology. All rights reserved.
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页码:123 / 132
页数:9
相关论文
共 52 条
  • [41] CHEN X, JIN X, LIU Z, Experimental investigation on the CaO/CaCO<sub>3</sub> thermochemical energy storage with SiO<sub>2</sub> doping[J], Energy, 155, pp. 128-138, (2018)
  • [42] LI H, CHEN Y, LENG L, Thermochemical energy storage of concentrated solar power by novel Y<sub>2</sub>O<sub>3</sub>doped Cao pellets[J], Energy & Fuels, 35, 15, pp. 12610-12618, (2021)
  • [43] ZHENG H,, SONG C,, BAO C, Dark calcium carbonate particles for simultaneous full-spectrum solar thermal conversion and large-capacity thermochemical energy storage[J], Solar Energy Materials & Solar Cells, 207, (2020)
  • [44] DA Y, ZHOU J., Multi-doping strategy modified calcium-based materials for improving the performance of direct solar-driven calcium looping thermochemical energy storage[J], Solar Energy Materials & Solar Cells, 238, (2022)
  • [45] OBERMEIER J,, SAKELLARIOU K G,, TSONGIDIS N I, Material development and assessment of an energy storage concept based on the CaO-looping process [J], Solar Energy, 150, pp. 298-309, (2017)
  • [46] SONG C,, LIU X,, ZHENG H, Decomposition kinetics of Al-and Fe-doped calcium carbonate particles with improved solar absorbance and cycle stability[J], Chemical Engineering Journal, 406, (2021)
  • [47] BAI S, SUN J, LIU L, Dolomite-derived composites doped with binary ions for direct solar thermal conversion and stabilized thermochemical energy storage [J], Solar Energy Materials & Solar Cells, 239, (2022)
  • [48] HAN R, XING S, WU X, Compressing two-dimensional graphite-nanosheet-supported CaO for optimizing porous structures toward high-volumetric-performance heat storage[J], Energy & Fuels, 35, 13, pp. 10841-10849, (2021)
  • [49] LI B, LI Y,, SUN H, Thermochemical heat storage performance of CaO pellets fabricated by extrusion–spheronization under harsh calcination conditions[J], Energy & Fuels, 34, 5, pp. 6462-6473, (2020)
  • [50] LI B,, LI Y,, DOU Y, SiC/Mn co-doped CaO pellets with enhanced optical and thermal properties for calcium looping thermochemical heat storage[J], Chemical Engineering Journal, 423, (2021)