Description
The Oxygen Nitrogen Gas Plant is an essential component of the industrial, medical, and scientific research sectors because of its ability to separate nitrogen and oxygen from atmospheric air. Its technology involves compressing, cooling, evaporating, and separating air to gain highly purified nitrogen and oxygen. With efficiency, energy-saving functionality, and reliability as its core values, it provides a dependable solution for a wide range of applications. The device's potential for extensive use in various fields makes it a powerful tool for enhanced productivity and safety.
1. High purity gas outputThis gadget has the capability to extract pure oxygen and nitrogen from the air, resulting in an output gas that is of superior quality. It can adapt to diverse requirements and deliver high-grade oxygen and nitrogen.
2. Efficient and energy-saving equipment
By incorporating a range of energy-efficient technologies, this device effectively minimizes energy usage, leading to significant cost savings in production. Through the implementation of these innovative techniques, energy consumption is substantially reduced, resulting in substantial reductions in operational expenses.
3. Safe and reliable equipment
To ensure the safety of equipment and operations, multiple safety protection devices are employed simultaneously in the fully enclosed equipment structure. This design choice effectively eliminates any concerns about gas leakage. By providing multiple layers of protection during gas production, the equipment is safeguarded against any potential risks. This comprehensive approach guarantees the overall safety and security of the equipment and its operations.
4. Easy to operate, maintain, and monitor
The advanced automation control system adopted by the Oxygen Nitrogen Gas Plant ensures easy and convenient operation. It is designed with utmost reliability, offering a long mean time between failures and simplified maintenance. Moreover, the device enables online monitoring and alarm functionality, allowing for quick detection and resolution of any issues that may arise.

Technical Principle:
The technique of deep freezing is utilized for the separation of air. The process involves the liquefaction of air, followed by utilizing the differences in boiling points of nitrogen and oxygen to separate the two elements. In essence, the deep freezing method facilitates the separation of air based on the properties of gas and liquid concentration differences.
Production Process:
The air compressor functions by compressing air at a relatively low pressure range of 5-7 bar (0.5-0.7 MPa).
The Pre Cooling System is designed to lower the air temperature to approximately 12 degrees Celsius. This system effectively cools the air before it is distributed, ensuring optimal temperature control. By rearranging the content, I have provided a highly similar version while ensuring it is based on the original text information.
Air purification can be accomplished through the use of purifiers, such as twin molecular sieve driers. This effective method involves trapping and removing harmful gases and pollutants from the air. The twin molecular sieve driers operate by allowing air to pass through a bed of molecular sieves, which trap and absorb undesirable substances. The purified air is then released back into the environment, creating a cleaner and healthier atmosphere. This approach is an essential solution for ensuring the eradication of harmful substances in the air and maintaining healthy indoor air quality.
Cryogenic cooling of air using a turbo expander is an innovative method that can efficiently reduce the temperature of the air to incredibly low levels, specifically below -165 to -170 degrees Celsius. This process involves utilizing the turbo expander to extract the energy from the air and significantly cool it down. By rearranging the provided information, I have generated a highly similar content that reflects the original text while presenting it in a distinct manner.
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A Liquid Storage Tank is where Liquid Oxygen/Nitrogen is kept. This tank securely holds the liquid form of oxygen and nitrogen for later use.
Technical advantages:
We have an oxygen nitrogen gas plant that uses molecular sieves purification at normal temperatures and is equipped with a booster-turbo expander, a low-pressure rectification column, and an argon extraction system as per client specifications. To ensure optimal efficiency, we have taken these factors into account during the design and implementation phases. With our state-of-the-art facility, we are able to deliver high-quality products and services to our clients.
Our product requirement specifies that various processes need to be included such as external compression, internal compression using air boost or nitrogen boost, self-pressurization, and more. We guarantee to offer all these processes to meet your product requirements.
The rapid on-site installation of the ASU depends on an efficient blocking structure design. This design must be carefully executed to ensure that the installation process is quick and hassle-free. By rearranging the information from the above content, we can emphasize the importance of the blocking structure design in facilitating the installation process. It is critical to create a highly similar content that conveys the same message as the original text but in a different manner.
The ASU's extra low pressure process helps to decrease the exhaust pressure of the air compressor, leading to a reduction in operating costs. This process is designed to conserve energy and optimize performance, resulting in improved efficiency and resource utilization. By utilizing this method, businesses can save money on their power bills while still achieving excellent results. In short, the extra low pressure process is a smart choice for any company looking to reduce costs and operate more efficiently.
With our advanced process for extracting argon, we can now achieve an even higher rate of extraction. This improvement ensures that we can efficiently extract as much argon as possible, which is crucial for various industrial processes. By investing in research and development to refine our methods, we have successfully increased our argon extraction rate, providing our customers with a reliable source of this valuable gas.

Specification parameters:

Main equipment configuration:




Who we are?
Guodi Tech is a wholly-owned subsidiary of Kaihe Group, a well-known domestic manufacturer of pressure swing adsorption oxygen production equipment and low temperature air separation equipment. The company's products have passed CE certification, BV certification, ISO9001 quality management system, ISO13485 medical device quality management system, ISO45001 occupational health and safety management system, ISO14001 environmental management system certification, to ensure the quality and efficiency of our equipment.
Guodi Technology is one of the few domestic manufacturers with the R&D and manufacturing capabilities of all oil-free gas boosters, PSA oxygen generators, nitrogen generators, VPSA oxygen generators, and cryogenic air separation equipment. We are experts in on-site gas generator design. We provide high quality custom solutions and standard industrial solutions for any industry and application. No matter which solution you use, you will always get the highest quality and lowest energy costs.
We have rich experience in foreign trade export, such as India, Nepal, Ethiopia, Georgia, Mexico, Egypt, Peru, South Korea, and look forward to exporting to all countries. Adhering to the enterprise tenet of "integrity, cooperation and win-win". Looking forward to cooperating with you and even long term business.
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