Preparation method of ultra-pure sulfuric acid
A sulfuric acid, ultra-pure technology, applied in chemical instruments and methods, sulfur compounds, inorganic chemistry, etc., can solve the problems of high energy consumption, harmful waste gas, inability to effectively remove sulfur dioxide gas, etc. low consumption effect
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Embodiment 1
[0024] (1) Distillation: Pass the fuming sulfuric acid from the raw material tank 1 into the heat exchanger 2 under the pressure of 0.15 MPa. The heat exchanger 2 is connected with the vaporizer 3, and the water vapor generated in the vaporizer 3 is used as the heating medium. Adjust the flow of water vapor in the vaporizer 3 so that the heating distillation temperature in the heat exchanger 2 is 45°C. Under the action of heat, the sulfur trioxide is partially gasified, and the remaining fuming sulfuric acid is returned to the recovery tank 4, where the trioxide The mass concentration of sulfur is 20%;
[0025] (2) Purification and filtration: the sulfur trioxide gas obtained in step (1) is passed into the separator 5 to remove particulate impurities;
[0026] (3) Separation of sulfur trioxide liquid: the sulfur trioxide gas filtered and removed in step (2) is sequentially passed through a cooler 6 with a temperature of 20-40°C and a condenser 7 with a temperature of 5-15°C fo...
Embodiment 2
[0032] (1) Distillation: Pass the fuming sulfuric acid from the raw material tank 1 into the heat exchanger 2 under the pressure of 0.2 MPa. The heat exchanger 2 is connected with the vaporizer 3, and the water vapor generated in the vaporizer 3 is used as the heating medium. Adjust the flow rate of water vapor in the vaporizer 3 so that the heating distillation temperature in the heat exchanger 2 is 50°C. Under the action of heat, the sulfur trioxide is partially gasified, and the remaining fuming sulfuric acid is refluxed in the recovery tank 4, where the trioxide The mass concentration of sulfur is 20%;
[0033] (2) Purification and filtration: the sulfur trioxide gas obtained in step (1) is passed into the separator 5 to remove particulate impurities;
[0034] (3) Separation of sulfur trioxide liquid: the sulfur trioxide gas filtered and removed in step (2) is first passed into a cooler 6 with a temperature of 20-40°C, and then passed into a condenser 7 with a temperature ...
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