Lithium bromide crystallization in water applied to an inter-seasonal heat storage process

Author:

Lefebvre E.,Fan L.,Gagnière E.,Bennici S.,Auroux A.,Mangin D.

Funder

ANR (French National Research Agency)

AXELERA (the French Competitive Cluster for Chemistry and Environment in Lyon and Rhône-Alpes)

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference26 articles.

1. Enthalpy of solution of lithium bromide, lithium bromide monohydrate, and lithium bromide dihydrate, in water at 298.15K;Apelblat;J. Chem. Thermodyn.,1986

2. Experimental study on the adiabatic absorption of water vapor into LiBr-H2O solutions;Arzoz;Appl. Therm. Eng.,2005

3. M. Bakker, W. G.J. van Helden, A. Hauer, Materials for compact thermal energy storage. Proceedings of the ASME 3rd International Conference of Energy Sustainability July 19–23, San Francisco, California, USA (2009)

4. C. Bales, Thermal properties of materials for thermo-chemical storage of solar heat, Report B2-Task 32. Available from: 〈http://www.iea-shc.org/publications/downloads/task32-Thermal_Properties_of_Materials.pdf〉, (2005)

5. C. Bales, Laboratory prototypes of thermo-chemical and sorption storage units, Report B3-Task 32. Available from: 〈http://www.iea-shc.org/publications/downloads/task32-Laboratory_Prototypes_of Thermo-Chemical_and_Sorption_Storage_Units.pdf〉 (2007)

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