Schematic diagram at the installation site of the EPC equipment

Wet acid treatment technology can treat sulfur-containing compounds such as H₂S, SO₂, CS₂ (carbon disulfide), COS, and the like. The sulfur-containing gases after combustion and/or purification enter the converter, where SO₂ is oxidized under vanadium catalyst catalysis to form SO₃; then the process gas containing SO₃ enters the acid condenser, where liquid concentrated sulfuric acid (H₂SO₄) with a mass fraction of ≥98% is formed. After condensation, the process gas is vented from the top of the condenser, and the resulting concentrated sulfuric acid is cooled to 40°C and transported for external use. The system of this equipment has a high level of heat energy utilization. Water vapor or molten salt is used as the heat transfer medium, producing high quality steam that can be used for power generation or heat recovery. If the process gas released after condensation is subject to more stringent emission requirements, it can be subjected to deep environmental treatment to achieve ultra-low emissions.

Description

Wet acid production technology can treat sulfur-containing compounds such as H₂S, SO₂, CS₂ (carbon disulfide), COS and others. The sulfur-containing gases, after combustion and/or purification, enter the converter, where SO₂ is oxidized to form SO₃ in the converter under vanadium catalyst catalysis. The process gas containing SO₃ then enters an acid condenser, where liquid concentrated sulfuric acid (H₂SO₄) with a mass fraction of at least 98% is formed. After condensation, the process gas is vented from the top of the condenser and the resulting concentrated sulfuric acid is cooled to 40°C and transported for external use.
The system of this equipment has a high level of heat energy utilization. Water-vapor or molten salt is used as the heat transfer medium to produce high quality steam that can be used for power generation or heat recovery. If the post-condensation process gas has more stringent emission requirements, it can be subjected to deep environmental treatment to achieve ultra-low emissions.

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