详细信息
Influence of Impurity SO42- on the Thermal Performance of Molten Nitrates Used for Thermal Energy Storage ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Influence of Impurity SO42- on the Thermal Performance of Molten Nitrates Used for Thermal Energy Storage
作者:Sun, Ze[1];Hu, Chongjing[1];Ni, Haiou[1];Lu, Guimin[1];Song, Xingfu[1];Yu, Jianguo[1]
机构:[1]East China Univ Sci & Technol, Natl Engn Res Ctr Integrated Utilizat Salt Lake R, Shanghai 200237, Peoples R China
年份:2018
卷号:6
期号:10
起止页码:2065
外文期刊名:ENERGY TECHNOLOGY
收录:;EI(收录号:20183805836772);WOS:【SCI-EXPANDED(收录号:WOS:000449676400026)】;
基金:The authors are grateful to the National Natural Science Foundation of China (Grant 51774144 and U1407126), Applied basic research of Qinghai Province (Grant 2017-ZJ-727), Capacity Building of Qinghai Engineering Research Center for Integrated Utilization of Salt Lake (Grant 2015-GX-Q19 A), and the Fundamental Research Funds for the Central Universities.
语种:英文
外文关键词:molten nitrates; impurity SO42-; thermodynamic parameters; thermophysical properties
摘要:Solar salt system, mainly composed by 60 wt.% NaNO3 and 40 wt.% KNO3, is the most optimized molten nitrates used for thermal energy storage. This paper aims to investigate the influence of the amount of impurity SO42- on thermal performance of solar salt, including thermodynamic parameters like melting point, liquidus temperature, thermal decomposition temperature, thermal stability, and thermophysical properties such as density, viscosity at different temperature. The melting point and thermal decomposition temperature of the mixtures were measured by Differential Scanning Calorimeter (DSC) and Thermo-gravimetric (TG), respectively. The liquidus temperature was obtained by a cooling curve, and the density was determined with a homemade device based on the Archimedes principle. Additionally, viscosity measurements were obtained using a Dynamic Mechanical Analyzer. It was found that: SO42- makes no negative influence on melting point, liquidus temperature and density. The results of viscosity show that controlling the SO42- level within 0.1 wt.% in nitrates is necessary. For the thermal stability at 565 degrees C, SO42- increases the mass loss of nitrates a little more than pure nitrates, as well as easily forms insoluble compounds with cations, especially Na+. Meanwhile, the mass loss mechanisms was confirmed in especial by the vaporization of the nitrates, followed by the release of O-2. In conclusion, it is critical to maintain SO42- content below 0.01 wt.% for addressing flow problems and reducing instability at high temperature.
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