By recovering heat from circulating ammonia water in the coke plant, low-pressure steam generated from coke quenching waste heat, coke oven gas power generation, and the heat from hot water in the upper section of the primary cooler, etc., as the driving heat source for the lithium bromide unit, 16℃ cold water is produced to meet the refrigeration needs of the lower section of the primary cooler.
By recovering the heat from the circulating ammonia water in the coking plant, such as the waste heat power generation from coke dry quenching, coke oven gas power generation, low-pressure steam generated by waste heat boilers, and the heat from the upper section of the primary cooler, etc., this heat is used as the driving heat source for a lithium bromide unit to produce 16℃ chilled water to meet the process cooling needs of the lower section of the primary cooler and other processes.
Petroleum and chemical industry
Waste hot water and steam from recovery processes (such as oil refining, EO/EG, styrene, EVA, polypropylene, caprolactam, etc.) are used to power a lithium bromide unit, producing cold water at or above 5℃ for process refrigeration.
By recovering the heat from the gas and cylinder liner water of the gas internal combustion engine, and using it as the driving heat source for the lithium bromide unit, cold water of 5℃ and above is produced to meet the refrigeration needs of air conditioning or data centers.