Experimental Test of Properties of KCl–MgCl2 Eutectic Molten Salt for Heat Transfer and Thermal Storage Fluid in Concentrated Solar Power Systems
Author(s) -
Xiankun Xu,
Xiaoxin Wang,
Peiwen Li,
Yuanyuan Li,
Qing Hao,
Bo Xiao,
Hassan H. Elsentriecy,
D. Gervasio
Publication year - 2018
Publication title -
journal of solar energy engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.55
H-Index - 83
eISSN - 1528-8986
pISSN - 0199-6231
DOI - 10.1115/1.4040065
Subject(s) - molten salt , eutectic system , heat transfer fluid , thermal energy storage , corrosion , materials science , viscosity , thermal conductivity , heat transfer , salt (chemistry) , nickel , metallurgy , thermodynamics , chemistry , composite material , alloy , physics
The eutectic mixture of MgCl2–KCl molten salt is a high temperature heat transfer and thermal storage fluid able to be used at temperatures up to 800 °C in concentrating solar thermal power systems. The molten salt thermophysical properties are reported including vapor pressure, heat capacity, density, viscosity, thermal conductivity, and the corrosion behavior of nickel-based alloys in the molten salt corrosion at high temperatures. Correlations of the measured properties as functions of molten salt temperatures are presented for industrial applications. The test results of tensile strength of two nickel-based alloys exposed in the molten salt at a temperature of 800 °C from 1-week length to 16-week length are reported. It was found that the corrosion and strength loss is rather low when the salt is first processed to remove water and oxygen.
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