Complete Molten Salt Heating System for Chlor-Alkali Processes
The chlor-alkali molten salt heating system is a high-temperature heating system that utilizes molten salt as a heat transfer medium. It is widely applied in the chlor-alkali industry, new energy power generation, and waste heat recovery sectors.
Description
The molten salt heating system for chlor-alkali processes is a high-temperature heating system utilizing molten salt as a heat transfer medium. It finds extensive application in chlor-alkali industries, new energy power generation, and waste heat recovery. By heating molten salt to elevated temperatures, this system enables thermal energy storage and efficient heat transfer, featuring high energy storage density, a broad operating temperature range, and excellent thermal stability.
Structure and Performance
High-efficiency heat transfer: Molten salt remains liquid at high temperatures, offering excellent thermal conductivity for efficient heat exchange.
Wide operating temperature range: With a broad temperature tolerance, molten salt meets diverse industrial application requirements.
Intelligent control: Equipped with advanced automation systems, enabling one-touch start/stop, precise temperature regulation, and fault alerts.
Energy Efficiency & Environmental Protection: The system operates with zero pollution emissions and incorporates optimized designs to reduce energy consumption.
Long-Life Design: Utilizing corrosion-resistant materials and optimized structural design, the system boasts extended service life and low maintenance costs.
Scope of application
Chlor-alkali industry: Supplies high-temperature heat sources for chlor-alkali production processes.
New energy sector: Used for thermal energy storage and conversion in solar thermal power generation, wind energy, and solar energy storage systems.
Industrial heating: Provides stable high-temperature heat sources for chemical, pharmaceutical, petroleum, and other industries.
Flexibility Upgrades for Thermal Power Plants: Enhances peak-shaving capacity and operational flexibility of thermal power units through thermal-electrical decoupling technology.






