
ASU Air Gas Separation Plant Medical Oxygen Plant
Hangzhou Lianghuan Technology Co., Ltd. is one of the most reliable manufacturers and suppliers of asu air gas separation plant medical oxygen plant in China. If you're going to buy high quality asu air gas separation plant medical oxygen plant made in China, welcome to get quotation from our factory. Good service and reasonable price are available.
The ASU Air Gas Separation Plant Medical Oxygen Plant is an innovative and advanced oxygen production system that is perfect for hospitals, clinics, and other medical facilities. This product is designed to provide a constant and reliable supply of oxygen, which is crucial in medical operations and procedures.
Our ASU Air Gas Separation Plant Medical Oxygen Plant is the perfect solution for medical institutions looking to improve their oxygen supply. This product represents the best in oxygen generation technology, which offers a host of benefits over traditional oxygen cylinders.
One of the most significant advantages of our ASU Air Gas Separation Plant Medical Oxygen Plant is its efficiency. Our product has a high oxygen generation rate, which means that it can produce more oxygen with less energy consumption than any other system in the market.
The ASU Air Gas Separation Plant Medical Oxygen Plant has a modular design, which makes it easy to install and operate. Our product is also versatile and can be configured to meet the specific needs of any medical facility. With our ASU Air Gas Separation Plant Medical Oxygen Plant, medical institutions can easily manage their oxygen supply and ensure the highest levels of quality and safety.
Our product is also designed to be very reliable and low maintenance. This ensures that medical facilities can enjoy a constant flow of oxygen without worrying about equipment breakdowns or maintenance issues. Our ASU Air Gas Separation Plant Medical Oxygen Plant is equipped with state-of-the-art monitoring and control systems, which alert users if any problems or issues arise.
Another great benefit of our product is its low environmental impact. Oxygen cylinders require transportation and handling, which can be costly and risky. Our ASU Air Gas Separation Plant Medical Oxygen Plant is an eco-friendly solution that reduces the carbon footprint associated with oxygen generation and transportation.
Finally, our ASU Air Gas Separation Plant Medical Oxygen Plant is highly cost-effective. Medical institutions that switch to our product can save a significant amount of money on oxygen generation and supply. This allows them to redirect resources towards other critical medical operations and procedures
In conclusion, the ASU Air Gas Separation Plant Medical Oxygen Plant is an innovative and advanced oxygen production system that offers many benefits to medical institutions. From efficiency and reliability to versatility and cost-effectiveness, there are many reasons why our product is the best choice for any medical facility looking to improve its oxygen supply. Contact us today to learn more and to order your ASU Air Gas Separation Plant Medical Oxygen Plant.
Overview
Industrial Purity Nitrogen Plant combines air compression, adsorption purification and cryogenic distillation. They produce nitrogen up to 99.999% purity.
Nitrogen generation systems are safe, reliable, and easy to both operate and maintain. Several options are available, depending on customer needs. For example, they may include a standby evaporator and storage device to improve availability and reliability, or a liquid cogeneration device to supplement the standby liquid storage device. Similarly, the nitrogen generation system can optimize capital expenditure (capex) and operating expenditure (OPEX) according to customer requirements. These equipment are fully packaged for rapid installation.

1. Oxygen Plant
2. ASU Induction: Air separation equipment separates air from the atmosphere into its main components, usually nitrogen and oxygen, and sometimes argon and other rare and inert gases.
3. Production process:
To achieve low distillation temperatures, the air separation unit requires a refrigeration cycle that operates through the Joule-Thomson effect, and the cooling equipment must be kept within an insulating enclosure (often referred to as a "cold box"). The cooling of the gas requires a large amount of energy to make this refrigeration cycle work and is provided by the air compressor. Modern ASUs use expansion turbines for cooling; the output of the expander helps drive the air compressor, which increases efficiency. The process includes the following main steps
A sort of. Before being compressed, the air is pre-filtered to remove dust.
b. The air is compressed and the final delivery pressure is determined by the recovery rate of the product and the fluid state (gas or liquid). Typical pressure ranges are between 5 and 10 bar gauge. The air flow can also be compressed to different pressures to increase the efficiency of the ASU. During the compression process, water condenses out in the interstage cooler.
C. Process air is typically passed through a molecular sieve bed to remove any residual water vapor and carbon dioxide, which can freeze and clog cryogenic equipment. Molecular sieves are generally designed to remove any gaseous hydrocarbons from the air, as these can be a problem in subsequent air distillations, potentially leading to explosions. The molecular sieve bed must be regenerated. This is done by installing multiple units operating in alternating mode and using dry co-production off-gas to desorb water.
d. Process air passes through an integrated heat exchanger (usually a plate-fin heat exchanger) and is cooled against a low temperature stream of product (and waste). Part of the air liquefies to form an oxygen-rich liquid. The remaining gas is nitrogen-enriched and distilled to nearly pure nitrogen (typically < 1ppm) in a high pressure (HP) distillation column. The condenser of this column requires refrigeration, which is obtained by expanding the more oxygen-rich stream further through a valve or through an expander (reverse compressor).
e. Alternatively, when the ASU produces pure oxygen, the condenser can be cooled by exchanging heat with a reboiler in a low pressure (LP) distillation column (operating at 1.2-1.3 bar absolute). To minimize compression costs, the combined condenser/reboiler of the HP/LP column must operate with a temperature difference of only 1-2 degrees Kelvin, requiring a plate-fin brazed aluminum heat exchanger. Typical oxygen purity ranges from 97.5% to 99.5% and affects maximum oxygen recovery. The refrigeration required to produce liquid products is obtained through the JT effect in the expander, which feeds compressed air directly into the low pressure column. Therefore, a portion of the air is not separated and must leave the upper part of the low pressure column as a waste stream.
F. Since the boiling point of argon (87.3 K under standard conditions) is between oxygen (90.2 K) and nitrogen (77.4 K), argon accumulates in the lower part of the low pressure column. When producing argon, a vapor side draw is drawn from the low pressure column, where the argon concentration is highest. It is sent to another column to rectify the argon to the desired purity, from where the liquid is returned to the same location in the LP column. Argon purity below 1 ppm can be achieved using modern structured packing with very low pressure drop. Although argon is present in the feed at less than 1%, the air argon column requires a lot of energy due to the high reflux ratio (about 30) required in the argon column. Argon column cooling can be provided by cold expanded rich liquid or liquid nitrogen.
G. Finally, the product produced in gaseous form is heated to ambient temperature in the incoming air. This requires carefully designed thermal integration, which must take into account robustness to disturbances (due to switching of molecular sieve beds). Additional external cooling may also be required during start-up.
Why choose us?
- Our Nitrogen Plant products are designed with the latest technology and materials to ensure maximum efficiency and durability.
- We can design the product you need for your business, from high-cost low-volume production to low-cost high-volume production.
- We believe that quality should not come at the expense of affordability, which is why we offer competitive prices for our Nitrogen Plant products.
- We are honest, win-win, create business philosophy, create a good business environment, with a new management model, perfect technology, thoughtful service as the fundamental.
- As a supplier and manufacturer, we offer preferential prices for our Nitrogen Plant products.
- We are constantly innovating our company's development model with products that lead the industry in consumption trends.
- Our skilled team of engineers and technicians are available to assist with any questions or concerns you may have about our Nitrogen Plant products.
- On the basis of fully absorbing the advanced technology, our company has carried out optimization, improvement, and all-round innovation on ASU Air Gas Separation Plant Medical Oxygen Plant. In order to better serve customers, our company will provide product solutions with more efficient design support, more professional sales service, faster product delivery, faster assembly, and better after-sales service.
- At our Chinese factory, we have an uncompromising commitment to quality, ensuring that every Nitrogen Plant product we manufacture meets our exacting standards.
- We continue to build brand value, enhance the company's image, and provide customers with special services.
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