Dehydration/hydration of MgO/H2O chemical thermal storage system

被引:40
|
作者
Pan, Zhihao [1 ]
Zhao, C. Y. [1 ]
机构
[1] Shanghai Jiao Tong Univ, Sch Mech Engn, Inst Engn Thermophys, Shanghai 200240, Peoples R China
关键词
Chemical thermal storage system; MgO; Mg(OH)(2); Dehydration temperature; MAGNESIUM-OXIDE; HEAT-PUMP; PHASE HYDRATION; ENERGY-STORAGE; VAPOR-PHASE; TEMPERATURE; REACTOR; KINETICS;
D O I
10.1016/j.energy.2015.01.070
中图分类号
O414.1 [热力学];
学科分类号
摘要
Thermal energy storage systems improve the inefficiency of industrial processes and renewable energy systems (supply versus demand). Chemical reaction is a promising way to store thermal energy because of its high energy storage density, long-term energy storage, etc. This study investigated an MgO/H2O chemical thermal storage system that stores thermal energy by decomposing Mg(OH)(2) (endothermic reaction), and supplies thermal energy by combining water vapor with MgO (exothermic reaction). Heat supply is greatly influenced by MgO properties, particularly dehydration temperature. Therefore, the equilibrium hydration fractions of MgO prepared at various dehydration temperatures were measured. Then, the relation between dehydration temperature and the equilibrium hydration fractions of MgO was determined. The equilibrium hydration fractions of MgO at various hydration temperatures and pressures were also measured. The chemical thermal storage system was inefficient at dehydration temperatures lower than 350 degrees C or higher than 500 degrees C. The efficiency of this system can be improved by increasing the hydration temperature while keeping the relative vapor pressure unchanged. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:611 / 618
页数:8
相关论文
共 50 条
  • [31] Thermogravimetric study of the dehydration reaction of LiCl·H2O
    P. J. Masset
    Journal of Thermal Analysis and Calorimetry, 2009, 96 : 439 - 441
  • [32] MECHANISM OF DEHYDRATION OF CA(H2PO4).H2O
    ZDUKOS, AT
    VAIMAKIS, TK
    ZHURNAL NEORGANICHESKOI KHIMII, 1987, 32 (10): : 2351 - 2357
  • [33] New MgO–H2O compounds at extreme conditions
    郭兰慈
    张车荣
    Chinese Physics B, 2023, (07) : 519 - 523
  • [34] Ultrafast phosphate hydration dynamics in bulk H2O
    Costard, Rene
    Tyborski, Tobias
    Fingerhut, Benjamin P.
    Elsaesser, Thomas
    JOURNAL OF CHEMICAL PHYSICS, 2015, 142 (21):
  • [35] The homogeneous mixing of MgO and H2O at extreme conditions
    Kovacevic, Tanja
    Gonzalez-Cataldo, Felipe
    Militzer, Burkhard
    CONTRIBUTIONS TO PLASMA PHYSICS, 2023, 63 (9-10)
  • [36] Kinetic study on the thermal dehydration of CaCO3•H2O by the master plots method
    Tang Wanjun
    Chen Donghua
    Wang Cunxin
    AICHE JOURNAL, 2006, 52 (06) : 2211 - 2216
  • [37] The mechanism of dehydration of Ca(H2PO4)2•H2O
    Aldabergenov, MK
    Balakaeva, GT
    ZHURNAL FIZICHESKOI KHIMII, 1998, 72 (09): : 1547 - 1549
  • [38] Differential hydration of α,ω-aminocarboxylic acids in D2O and H2O
    Likhodi, O
    Chalikian, TV
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2000, 122 (33) : 7860 - 7868
  • [39] HYDRATION EQUILIBRIA OF ALIPHATIC ALDEHYDES IN H2O AND D2O
    GRUEN, LC
    MCTIGUE, PT
    JOURNAL OF THE CHEMICAL SOCIETY, 1963, (NOV): : 5217 - &
  • [40] Vapor phase hydration of glasses in H2O and D2O
    Schatz, TR
    Buechele, AC
    Mooers, CF
    Wysoczanski, R
    Pegg, IL
    ENVIRONMENTAL ISSUES AND WASTE MANAGEMENT TECHNOLOGIES IN THE CERAMIC AND NUCLEAR INDUSTRIES VIII, 2003, 143 : 253 - 262