High-Quality Desulphurisation Equipment: Leading China Suppliers & Factory Solutions for Natural Gas Processing Supplier, Manufacturers

In the extraction and processing of natural gas, including unconventional sources like shale gas and coal bed methane, the presence of hydrogen sulphide (H₂S) can lead to significant challenges. It not only causes corrosion of equipment but also poses environmental hazards and serious safety risks during production, affecting the quality of the end-use gas. To achieve efficient utilization of natural gas, advanced desulphurisation technology is essential. Currently, the predominant desulphurisation methods in the industry are categorized into dry desulphurisation and wet desulphurisation, each offering unique technical advantages to meet the diverse needs of various industries. As a leading supplier in China, our factory specializes in providing top-quality desulphurisation solutions tailored to enhance safety and efficiency in natural gas processing.

Product Description

Dry desulfurization
Efficient and stable ‘solid state purification’ programme
Dry desulfurization equipment
Dry desulphurisation takes fixed-bed desulphurisation tower as the core device, which is filled with oxidising desulphurising agents such as iron oxide and activated carbon. When the sulphur-containing raw gas passes through the desulphurisation tower, H₂S undergoes redox reaction with the desulphurising agent, and is adsorbed and converted into sulphide and fixed in the bed, thus realising deep desulphurisation. This process has the characteristics of simple process, convenient operation, no need for complex liquid circulation system, etc. It is especially suitable for processing gas with small volume and low sulphur content, and is widely used in remote gas wells and small gas stations. In addition, dry desulphurisation has high operational stability and strong adaptability to fluctuations in working conditions, which can continuously guarantee the purification effect.
Wet desulfurization
Wet desulphurisation: recycling ‘liquid purification’ system
Wet desulfurization system
Wet FGD adopts the principle of gas-liquid absorption, after the sulphur-containing raw gas enters the absorption tower, H₂S and the desulphurisation liquid (such as alcohol-amine solution and quebracho solution) sprayed in the tower will fully contact with each other and undergo a chemical reaction, which will be rapidly absorbed and removed, and the purified gas will be fed into the downstream process. After absorbing H₂S, the desulphurisation rich liquid enters the regeneration tank under reduced pressure, and under the action of air oxidation, H₂S is converted into sulphur monomers to form a foamy suspension. The sulphur foam is extracted through the separation equipment, and finally formed into solid sulphur for export after settling, heating and melting processes. At the same time, the desulphurisation liquid restores its activity and becomes poor liquid, which is pressurised by the poor liquid pump and returned to the absorption tower for recycling. Although the process is complex, it has a large treatment capacity and high desulphurisation efficiency, and can be adapted to high sulphur content working conditions.
Frequently Asked Questions
Q: What is the core device used in the dry desulfurization process?
The core device is a fixed-bed desulfurization tower filled with solid oxidizing desulfurizing agents, such as iron oxide and activated carbon.
Q: Under what conditions is dry desulfurization most suitable?
It is ideal for processing gas with small volumes and low sulfur content, making it widely used in remote gas wells and small gas stations.
Q: How does the wet desulfurization process remove H₂S?
It utilizes gas-liquid absorption where the raw gas contacts a sprayed desulfurization liquid (like alcohol-amine or quebracho solution) in the absorption tower to chemically react and remove H₂S.
Q: How is the desulfurization liquid recycled in the wet system?
After absorbing H₂S, the rich liquid is depressurized in a regeneration tank. Air oxidation converts the H₂S into solid sulfur, while the restored desulfurization liquid (poor liquid) is pumped back into the absorption tower.
Q: What are the main advantages of wet desulfurization over dry desulfurization?
Although the wet process is more complex, it offers a much larger treatment capacity, higher desulfurization efficiency, and can adapt to working conditions with high sulfur content.

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