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Applicable industry : | Manufacturing Plant,Energy &Amp; Mining,Other |
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Shenzhen, Guangdong, China
Product description
Product Description
Air separation plants can produce one or both of the two most ordinary atmospheric industrial gases (oxygen and nitrogen) as gases or liquid. Some air separation plants also produce compressed dried argon air, ultra high purity (UHP) oxygen, nitrogen, or the "rare gases" (neon, krypton and xenon).
Air separation plants products may be delivered to customers as gases through local pipelines or regional networks; or they may be delivered as liquids in "bulk liquid" trailers, or as compressed gases in high-pressure gas cylinder.
There are many potential variations in process and mechanical design details which reflect application-specific details of the desired mix of gas and liquid products, required product purities, delivery pressure and production rates.
The most common method of cryogenic air separation oxygen and nitrogen argon plant for air separation is cryogenic distillation. Cryogenic air separation plants are built to provide nitrogen or oxygen and often co-produce argon. It uses mature cryogenic rectification technology. Our factory developed and designed a full-low pressure molecular sieve to purify the air and turbo expander refrigeration process to further reduce the energy consumption of small and medium sized liquid oxygen/nitrogen plant.
KunPeng has Air Separation Plants, Liquid Oxygen / Nitrogen Plant, PSA Oxygen/Nitrogen Generator, Medical (gas) Oxygen Plant, VPSA Oxygen / Nitrogen Generator, and so on. If there is any need, feel free to contact us.
Cryogenic Air Separation Oxygen And Nitrogen Argon Plant-Process Description
The air passes through the air filter, enters the air compressor, compresses to 0.7mpa in the compressor, and then enters the purifier after cooling, where the impurities such as water, carbon dioxide and acetylene in the air are removed. The purified air enters the heat exchanger for heat exchange with the backflow polluted nitrogen. A part of the gas is pumped into the turbine expander through the outlet of the heat exchanger, and the expansion provides a cooling source for the whole set of devices. The other gases continue to cool through the second heat exchanger and then enter the rectifying tower, where they are separated by oxygen and nitrogen. Finally, qualified liquid nitrogen is obtained from the top of the rectifying tower. After decompression by the throttle valve, the liquid air at the bottom enters the condensing evaporator at the top of the tower and the nitrogen heat exchange at the top of the rectifying tower, and then passes through the cooler, the second heat exchanger and the main heat exchanger cooling box as the regenerative purifier.
MODEL |
PRODUCT |
PRODUCTION
( Nm3/h)
|
Purity |
KDO
|
Oxygen
|
50 to 5000
|
99.6% - 99.8%
|
KDN
|
Nitrogen, Liquid nitrogen
|
50 to 30000
|
99.9%-99.999%
|
KDON
|
Oxygen, Nitrogen, Liquid Oxygen,
Liquid Nitrogen
|
50 to 30000
|
Oxygen:99.6% - 99.8%
Nitrogen: 99.9%-99.999%
|
KDONAR
|
Oxygen, Nitrogen, Argon
Liquid Oxygen, Liquid Nitrogen, Liquid Argon
|
O2, N2 : 50 to 30000
Ar : 30 to 90
|
Oxygen:99.6% - 99.8%
Nitrogen: 99.9%-99.999%
Argon: 1.5ppm O2+4ppm N2
|
Special Features of Air Separation Plants
A few of the latest technological features incorporated into the liquid oxygen/nitrogen plant are listed below.
Whether you are producing steel or nonferrous metals, traditional petrochemicals, or running the most advanced gasification or oxy-fuel process for your clean energy application, your air separation plant plays a significant role in your operations. Our company has the technology, experience, and resources necessary to design, engineer, construct, and operate a cost-effective gas supply system for your specific application. We need inspect the customer's gas consumption to understand the customer's needs, specific analysis, comparison, and formulation of gas utilization schemes that meet the actual needs of customers for customers, thank you.
Shenzhen, Guangdong, China
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