Process of molecular sieve removing acid gas from natural gas

molecular sieve desulphurization

Sichuan Rongteng Automation Equipment Co., Ltd. is a Chinese manufacturer of molecular sieve desulfurization products widely used in the natural gas industry. Our molecular sieve technology removes acid gases from natural gas, improving its quality and making it safer to transport and use.

Molecular Sieve Processing Natural Gas Technology

Molecular sieves are crystalline metal-alumina-silicate materials widely used in the natural gas industry. Our technology uses specialized porous media to filter acid gases, such as hydrogen sulfide and carbon dioxide, from natural gas. Molecular sieves are used in a wide range of applications including dry gas treatment, dehydration and removal of impurities.

We have many years of experience in the design and manufacture of molecular sieve systems for natural gas processing. Our systems are custom designed to meet each client’s specific needs and maximize efficiency and cost-effectiveness.

 Molecular sieve technology is a very mature gas treatment and processing technology. The molecular sieve desulfurization device consists of two, three or more tower bodies containing solid adsorbents, gas filters, and other related regeneration equipment. Special solid desiccant zeolite is placed inside. Acidic gas (rich in H2S) comes into contact with zeolite, which captures hydrogen sulfide (H2S) due to its porous structure. The inlet gas (acid gas) loses H2S and becomes sweet gas, which is then discharged into further processes or treatments (such as dehydration, fuel gas for turbines, etc.). Sweet gas may contain very small amounts of dust and adsorbent particles, which should be removed through a gas filter located upstream of the tower. Filters can protect instruments, valves, upstream equipment, and pipelines from short-term or long-term damage. Due to H2S being trapped in the adsorption bed, it should be removed by hot gas. Hot gas is a sweet gas that is heated to 315 ° C through a special direct combustion heater and then discharged into a waste bed (adsorbent bed containing H2S). As the hot gas flows upwards through the bed, it absorbs H2S and hydrocarbons, and is discharged into the flare system. This process is called bed regeneration. After regeneration, the bed should be cooled first, and then the bed should be exposed to acidic gas for repeated gas desulfurization cycles.

Features

Our molecular sieve desulphurization unit products have the following characteristics:

Efficient: Our molecular sieve technology is highly efficient and can remove impurities from natural gas with high precision.

Environmentally Friendly: Our products are designed to meet stringent environmental standards, ensuring our customers comply with all relevant regulations.Acidic gas (rich in H2S) comes into contact with zeolite, which captures hydrogen sulfide (H2S) due to its porous structure. The inlet gas (acid gas) loses H2S and becomes sweet gas, which is then discharged into further processes or treatments (such as dehydration, fuel gas for turbines, etc.). Sweet gas may contain very small amounts of dust and adsorbent particles, which should be removed through a gas filter located upstream of the tower. Filters can protect instruments, valves, upstream equipment, and pipelines from short-term or long-term damage. Due to H2S being trapped in the adsorption bed, it should be removed by hot gas. Hot gas is a sweet gas that is heated to 315 ° C through a special direct combustion heater and then discharged into a waste bed (adsorbent bed containing H2S). As the hot gas flows upwards through the bed, it absorbs H2S and hydrocarbons, and is discharged into the flare system. This process is called bed regeneration. After regeneration, the bed should be cooled first, and then the bed should be exposed to acidic gas for repeated gas desulfurization cycles.

Contact us:

 

Sichuan Rongteng Automation Equipment Co., Ltd.

www. rtgastreat.com

E-mail: sales01@rtgastreat.com

Phone/whatsapp: +86 138 8076 0589


Post time: May-21-2023