Experimental evaluation of aqueous lithium halides as single- and double-salt systems in absorption heat-pumps
Author:
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction
Reference9 articles.
1. Liquid vapour equilibrium of aqueous lithium chloride from 25°C to 100°C and from 1·0 to 18·5 molal and related properties;Gibbard;J. Chem. Engng Data,1973
2. Thermodynamic properties of aqueous solutions of lithium bromide;McNeely;ASHRAE Trans.,1979
3. Vapour pressure of aqueous lithium iodide solution;Bach;ASHRAE J.,1967
4. Description of a 100 kW prototype loop for an industrial high temperature absorption heat pump;Thomas;Rev. Inst. F. Pat.,1984
5. A study of the operating characteristics of a water-lithium bromide absorption heat pump;Chaudhari;J. Heat Recov. Syst.,1985
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1. Experimental and numerical investigations of a new high temperature heat pump for industrial heat recovery using water as refrigerant;International Journal of Refrigeration;2014-08
2. Studies on Bubble Column Evaporation in Various Salt Solutions;Journal of Solution Chemistry;2014-08
3. Thermodynamic Properties of Aqueous Solutions of Lithium Chloride;Physics and Chemistry of Liquids;2002-01
4. Thermodynamic properties of aqueous solutions of lithium iodide: Simplified method for predicting the enthalpies from the vapor-pressure data;Applied Energy;1991-01
5. Performance of an experimental absorption heat transformer using aqueous lithium bromide, lithium chloride, and lithium bromide/lithium chloride solutions;Industrial & Engineering Chemistry Research;1990-08
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