HPF Process For H₂S Removal From Coke Oven Gas Technology
Technical Characteristics:
Utilizing ammonia native to the coke oven gas as the alkali source and an HPF composite catalyst (hydroquinone, PDS, ferrous sulfate) as the core, the process employs a wet liquid-phase catalytic oxidation mechanism. It simultaneously removes H₂S and HCN. The desulfurization liquor is fully recycled within the system; generated sulfur foam is processed via a sulfur melting kettle to yield high-quality sulfur products. Crucially, residual spent liquor is recycled directly into the coking coal blend, eliminating secondary pollution.
Ø Technical Advantages:
l Low Operating Cost: Utilizes ammonia native to the coke oven gas as the alkali source, eliminating the need for purchased caustic soda or lime. The HPF composite catalyst offers high activity and low consumption rates, significantly reducing OPEX.
l High Purification Efficiency: Achieves a desulfurization efficiency of ≥98% and a decyanization efficiency of ≥80%. The process delivers superior purified coke oven gas (COG), fully complying with stringent industry standards for downstream utilization.
l Simplified Waste Management: Exhibits slow salt accumulation and minimal spent liquor generation. The effluent can be directly recycled into the coking coal blend, eliminating the need for a standalone wastewater treatment facility.
l Equipment Protection: Efficient H₂S and HCN removal mitigates acid gas corrosion in downstream units, significantly extending the service life of critical assets such as final coolers and crude benzene recovery plants.