首页|Corrosion evaluation and resistance study of alloys in chloride salts for concentrating solar power plants

Corrosion evaluation and resistance study of alloys in chloride salts for concentrating solar power plants

扫码查看
Thermal energy storage(TES)systems based on molten salt are widely used in concentrating solar power(CSP)plants.The investigation of the corrosion behavior of alloy materials in molten salt is crucial for the correct selection of alloy materials and the design of TES systems.In this study,the corrosion behavior of 304,310S,316,and In625 alloys in molten chloride salts(27 mol%NaCl-22 mol%KCl-51 mol%MgCl2)was investigated.The evolution of mass loss of the alloy samples with corrosion time and temperature and the analysis of the experimental results by scanning electron microscopy(SEM),energy dispersive spectrometer(EDS),and X-ray diffraction(XRD)revealed the corrosion mechanism of the alloy samples in molten chloride salts.The main factors affect-ing the corrosion of the alloy samples were further ana-lyzed.It was found that the loose multi-layer corrosion was formed on the surface of the corroded alloy samples with the increase in corrosion degree.Moreover,the experi-mental results showed that Mo played a positive role in improving the corrosion resistance of the alloy samples because the presence of Mo could inhibit the outward diffusion of alloying element Cr.This work enriches the molten salt corrosion database and provides a reference for the selection of alloy materials for TES systems with potential application in CSP plants.

Thermal energy storageMolten chloride saltAlloy materialsCorrosion mechanismCorrosion resistance

Dong-Mei Han、Yong Shuai、Bachirou Guene Lougou、Bo-Xi Geng、Xi-Bo He、Tian-Tian Yan、Jia-Meng Song

展开 >

School of Energy Science and Engineering,Harbin Institute of Technology,Harbin 150001,China

China National Key Research and Development Plan ProjectNational Natural Science Foundation of ChinaNational Natural Science Foundation of China

2018YFA07023005222781351950410590

2024

稀有金属(英文版)
中国有色金属学会

稀有金属(英文版)

CSTPCDEI
影响因子:0.801
ISSN:1001-0521
年,卷(期):2024.43(3)
  • 34