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Natural Gas Dehydration Unit ---Molecular Sieve  Adsorption Units

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Natural Gas Dehydration Unit ---Molecular Sieve  Adsorption Units

Molecular sieve adsorption tower, including the intake pipe and exhaust pipe, the tower body, the adsorption of components, air intake cavity and chamber, intake pipe and exhaust pipe are set in the side of the tower body, uniform adsorption component set inside the tower, air intake cavity is set at the top of the tower, air intake cavity and the intake pipe through chamber is set at the top of the tower chamber and exhaust pipe through. The overall operation performance of the equipment is improved, and the flow of molecular sieve with airflow is reduced to ensure the concentration of molecular sieve in the adsorption chamber.
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LRC Group specializes in offering high-quality natural gas dehydration units for sale that cater to a wide range of applications in the energy industry. Our state-of-the-art dehydration units are designed to effectively remove moisture from natural gas, ensuring its purity and suitability for various processes. The natural gas dehydration process is essential for preventing pipeline corrosion, maintaining gas quality, and complying with stringent industry standards. Whether you operate a small-scale operation or a large industrial facility, our dehydration units for natural gas can be customized to meet your specific needs. At LRC Group, we understand the critical function of gas dehydration units in ensuring the integrity of your gas supply, and we are committed to providing innovative solutions to address your dehydration requirements.

Natural Gas Dehydration Unit ---Molecular Sieve 

The optimal design and operation of molecular sieve gas dehydration units are crucial in the oil and gas industry. Our cutting-edge molecular sieve gas dehydration unit is at the forefront of moisture removal technology. The molecular sieve dehydration process leverages the selective adsorption properties of molecular sieves to efficiently eliminate water molecules from natural gas streams. Choosing the right molecular sieve size for water removal is a critical aspect of mole sieve dehydration units. Our mole sieve dehydration unit is designed to cater to diverse industrial requirements, providing reliable and efficient results. The mol sieve dehydration process is finely tuned to ensure the highest standards of gas quality and corrosion prevention. At the core of our dehydration molecular sieve unit is a meticulous engineering approach that enhances the overall performance of your gas treatment processes. Our molecular sieve dehydration system incorporates advanced molecular sieve 4A and molecular sieve 3A technologies, known for their exceptional water adsorption capabilities. This ensures that your natural gas remains dry and meets industry specifications. With our molecular sieve gas dehydration unit, you can count on the consistent and effective removal of moisture, contributing to the integrity of your gas supply and the efficiency of your operations. Trust in our expertise in molecular sieve gas dehydration to optimize your gas treatment processes and safeguard your equipment.

Specification

Principle:

A molecular sieve is a material with pores (very small holes) of uniform size. These pore diameters are similar in size to small molecules, and thus large molecules cannot enter or be adsorbed, while smaller molecules can. As a mixture of molecules migrate through the stationary bed of porous, semi-solid substance referred to as a sieve (or matrix), the components of highest molecular weight (which are unable to pass into the molecular pores) leave the bed first, followed by successively smaller molecules.

Technological process:

The pressurized air of the turbine compressor is cooled to 10℃ (50°F) through the spray cooling tower. When the vertical molecular aieve adsorber is passed from bottom to top, The impurities such as water, acetylene and carbon dioxide contained in the air are adsorbed and removed one after another. After purification, the air enters the main heat exchanger in the cold box.

 

Technical parameters:

The air volume

28000 – 35000 m3/h

Pressure

0.4 – 0.52MPa, 58 – 75psi (gage pressure)

Inlet temperature

< 15℃ (59°F)

Reletive humidity

100%

The volume of CO2

360×10-6

CO2 content at the air outlet

≤1×10-6 (core control parameter)

Wate nitrogen gas volume for regeneration

8000~12000m3/h(main control parameter)

Regas temperature into MS

≥165℃ (330°F)(main control parameter)

Air intake of heater

1500~2500m3/h

Schematic Diagram for double Units and three units Process

 

 

Features:

Compact product with simple structure ensured by the optimum design

Fully automated and unattended operation by electronic control

The products can be custom designed according to the user requirements about oxygen purity, production rate or delivery gas pressure, etc.

The absorbent for gas separation can be used semi-permanently.

Applications:

Widely used in power, petroleum, Chemical metallurgy, Environmental protection, Pharmaceutical, aerospace, aviation and other industries throughout the country.

 

Count on us, your trusted gas dehydration unit suppliers, to provide cutting-edge equipment that meets industry standards and exceeds expectations. With our TEG dehydration unit and molecular sieve dehydration unit , you can ensure the integrity of your natural gas supply while optimizing your operations. Contact us today to learn more about how our TEG gas dehydration unit can benefit your business.

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