Molten salt corrosion research 

Molten salt corrosion studies are important for the design, safety assessment and material selection of nuclear energy systems such as molten salt reactors and reactors. Through a deeper understanding of the mechanisms of the interaction between molten salts and materials, and by optimising the corrosion resistance of materials, it is possible to improve the operational efficiency of nuclear energy systems, extend the life of equipment and ensure the safety and reliability of nuclear energy technologies.

 

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our priorties

Molten salt electrochemical research

Molten salt electrochemical research provides an important scientific and technological basis for the development of efficient, sustainable and clean energy technologies. Through a deeper understanding of electrochemical behaviour in molten salt systems, researchers can develop new materials, optimize reaction conditions and design more efficient electrochemical devices to drive the energy transition and sustainable development.

 

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our priorties

Molten salt structural research

The study of the structure of molten salts is of great significance in gaining a deeper understanding of the fundamental properties of molten salt systems and in developing new applications for molten salts. By revealing the structural features of molten salts and the correlation between them and their properties, researchers can provide theoretical guidance and solutions for the application of molten salts in fields such as energy, chemical and materials science.

 

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Lab equipment research

Ø3 sets of double-station glove box
ØHigh temperature molten salt purification system 1 set:5Kg grade
ØOriginal flavour ultraviolet visible light device 1 set
ØElectrochemical workstation 2 sets
ØMolten salt corrosion reactor 3 sets
ØMolten salt electrochemical experimental reactor 3 sets
3 sets of high-precision balance

 

 

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our priorties