Assessment of vapor–liquid equilibrium models for ionic liquid based working pairs in absorption cycles
Author:
Funder
China Scholarship Council
Publisher
Elsevier BV
Subject
Mechanical Engineering,Building and Construction
Reference50 articles.
1. Performance analysis of absorption heat transformer cycles using ionic liquids based on imidazolium cation as absorbents with 2,2,2-trifluoroethanol as refrigerant;Ayou;Energy Convers. Manag,2014
2. Investigation on vapor-liquid equilibria for binary systems of metal ion-containing ionic liquid [bmim]Zn2Cl5/NH3 by experiment and modified UNIFAC model;Chen;Fluid Phase Equilib,2013
3. Thermodynamic analysis of an absorption system using [bmim]Zn2Cl5/NH3 as the working pair;Chen;Energy Convers. Manag,2014
4. Performance prediction of absorption refrigeration cycle based on the measurements of vapor pressure and heat capacity of H2O+[DMIM]DMP system;Dong;Appl. Energy,2012
5. Suitability prediction and affinity regularity assessment of H2O+imidazolium ionic liquid working pairs of absorption cycle by excess property criteria and UNIFAC model;Dong;Fluid Phase Equilib,2013
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