China Professional Azbel New Diaphragm Gas Compressor air compressor oil

Product Description

Product Description

The equipment does not need to add lubricating oil, and the discharged gas does not contain oil and oil vapor, so it can be protected from pollution, eliminating the need for complex filtration and purification systems, saving equipment costs and maintenance costs, and has significant features such as safety, reliability, and easy operation.

Product Name

Oil-Free Oxygen Booster compressor

Cooling Method

Air-cooled or water-cooled

Range Of Rotation

300-600r/min

Power Range

<55KW

Flow Range

Support Customization

Inspiratory Pressure Range

0-0.6Mpa

Exhaust pressure range

≤25.0Mpa

Compression stage

3-4Class

Working Principle

 

A booster air compressor or compressed air pressure amplifier operates on the simple principle that within a closed system (non-vacuum), the pressure increases as volume decreases. An air booster compression system comprises a receiver tank, pipework,and discharge tank.The receiver tank has an inlet that receives compressed process air coming from a primary feed and channels it through several compression stages to further increase the pressure. Additionally, the receiver tank serves as a limited storage capacity for when the system is not actively delivering compressed air.After going through a series of compression stages, pressurized air flows through the piping into the discharge tank which contains an outlet that supplies the gas to the site.

 

Application Field

Company Profile

HangZhou Azbel Technology Co., Ltd. is located in HangZhou, China. The company adopts a separate operation of factories and offices. Our factory is located in Xihu (West Lake) Dis. County, HangZhou City, with the most professional technology and our office is located in CHINAMFG Gongwang Building in HangZhou HangZhou which have a state-of-the-art team. It has a fully automatic casting production workshop with an annual casting of more than 3,000 tons of stainless steel. There are more than 20 engineering and technical personnel, including 8 senior engineers. The company integrates control, casting, research and development, production, and sales.Its products are widely used in petrochemical, electric power, paper-making, metallurgy, energy and other industries. With advanced and prudent design concepts, sophisticated process equipment and complete testing and testing equipment, the company has a high-quality workforce to ensure high product quality and excellent service, and has won unanimous praise and trust from users over the years.

Advantages

 

* Low production cost
* Low working pressure and safely.
* Good flexibility. The purity and output for oxygen can be easily adjusted.
* Simple Process And Less Equipment,High Automation And Operation Convenience
* Quick Starting And Easy Stopping, The system can provide product gas in 30 minutes after starting and also can be operated

Packaging & Shipping

The equipments will wrapped by the pearl wool and crate,the full sets will download in the container.

FAQ

Q.What are the steps of cryogenic air separation?

A.Cryogenic separation of air into its constituent gases involves various processes. Combination of these processes are needed in a cryogenic air separation plant, of which the fundamental ones are (i) air compression, (ii) air purification, (iii) heat exchanging, (iv) distillation, and (v) product compression

Q;What is cryogenic distillation for air separation unit?

A:Cryogenic air separation processes are routinely used in medium to large scale plants to produce nitrogen, oxygen, and argon as gases and/ or liquid products. Cryogenic air separation is the preferred technology for producing very high purity oxygen and nitrogen.

Q:How much energy does a cryogenic air separation unit use?

A:Designed for production of liquid oxygen, nitrogen and argon under pressure up to 0.3 MPa, with total capacity of 500 up to 6000kg/h. Specific power consumption is 1.5 kWt*h/kg (for small units) up to 0.8 kWt*h/kg.

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Usage: Hydrogen, Nitrogen, Oxygen, Ozone
Purpose: Air Compressor
Parts: PLC, Pressure Vessel, Other, Engine, Gear, Motor,
Customization:
Available

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

air compressor

Can Gas Air Compressors Be Used for High-Pressure Applications?

Gas air compressors can be used for high-pressure applications, but there are certain considerations to keep in mind. Here’s a detailed explanation:

Gas air compressors are available in various sizes and configurations, and their suitability for high-pressure applications depends on factors such as the compressor’s design, power output, and the specific requirements of the application. Here are some key points to consider:

1. Compressor Design:

Not all gas air compressors are designed to handle high-pressure applications. Some compressors are specifically built for low-to-medium pressure ranges, while others are designed to deliver higher pressure outputs. It is important to select a gas air compressor model that is rated for the desired pressure range. The compressor’s specifications and manufacturer’s guidelines will provide information on the maximum pressure it can generate.

2. Power Output:

The power output of a gas air compressor is a crucial factor in determining its suitability for high-pressure applications. High-pressure compressors require more power to achieve and sustain the desired pressure levels. It is important to ensure that the gas air compressor has sufficient power output to meet the demands of the specific high-pressure application.

3. Cylinder Configuration:

The cylinder configuration of the gas air compressor can also affect its ability to handle high-pressure applications. Compressors with multiple cylinders or stages are designed to generate higher pressures compared to compressors with a single cylinder. Multi-stage compressors compress the air in multiple steps, allowing for higher pressure ratios.

4. Safety Considerations:

High-pressure applications require careful attention to safety considerations. Gas air compressors used for high-pressure applications should be equipped with appropriate safety features such as pressure relief valves, pressure gauges, and safety shut-off systems. It is crucial to follow all safety guidelines and regulations to ensure safe operation.

5. Maintenance and Inspection:

Regular maintenance and inspection are essential for gas air compressors used in high-pressure applications. High-pressure operation can put additional stress on the compressor components, and proper maintenance helps ensure optimal performance and safety. Regular inspections and adherence to maintenance schedules will help identify and address any potential issues before they become major problems.

6. Application-specific Considerations:

Each high-pressure application may have specific requirements and considerations. It is important to evaluate factors such as the required pressure level, duty cycle, flow rate, and any specific environmental conditions that may impact the performance of the gas air compressor. Consulting with the compressor manufacturer or a qualified professional can help determine the suitability of a gas air compressor for a particular high-pressure application.

In summary, gas air compressors can be used for high-pressure applications, provided that they are designed, rated, and configured appropriately. It is essential to consider factors such as compressor design, power output, safety features, maintenance requirements, and application-specific considerations to ensure safe and reliable operation at high pressures.

air compressor

Can Gas Air Compressors Be Used for Gas Line Maintenance?

Gas air compressors can be used for certain aspects of gas line maintenance, primarily for tasks that require compressed air. Here’s a detailed explanation:

1. Clearing Debris and Cleaning:

Gas air compressors can be utilized to clear debris and clean gas lines. Compressed air can be directed through the gas lines to dislodge and remove dirt, dust, rust particles, or other contaminants that may accumulate over time. This helps maintain the integrity and efficiency of the gas lines.

2. Pressure Testing:

Gas line maintenance often involves pressure testing to ensure the lines can withstand the required operating pressures. Gas air compressors can provide the necessary compressed air to pressurize the lines for testing purposes. By pressurizing the gas lines with compressed air, technicians can identify any leaks or weaknesses in the system.

3. Leak Detection:

Gas air compressors can also be used in conjunction with appropriate leak detection equipment to identify and locate gas leaks in the gas lines. Compressed air can be introduced into the lines, and the detection equipment can then identify any areas where the compressed air escapes, indicating a potential gas leak.

4. Valve and Equipment Maintenance:

Gas line maintenance may involve the inspection, maintenance, or replacement of valves and associated equipment. Compressed air can be used to clean and blow out debris from valves, purge lines, or assist in the disassembly and reassembly of components.

5. Pipe Drying:

Gas air compressors can aid in drying gas lines after maintenance or repairs. By blowing compressed air through the lines, any residual moisture can be removed, ensuring the gas lines are dry before being put back into service.

6. Precautions and Regulations:

When using gas air compressors for gas line maintenance, it is essential to follow safety precautions and adhere to relevant regulations. Gas line maintenance often involves working in hazardous environments, and proper training, equipment, and procedures must be followed to ensure the safety of personnel and the integrity of the gas system.

It is important to note that gas air compressors should not be used directly for pressurizing or transporting natural gas or other combustible gases. Gas line maintenance tasks involving gas air compressors primarily focus on using compressed air for specific maintenance and testing purposes, as outlined above.

In summary, gas air compressors can be useful for certain aspects of gas line maintenance, including clearing debris, pressure testing, leak detection, valve and equipment maintenance, and pipe drying. However, it is crucial to follow safety guidelines and regulations when working with gas lines and compressed air to ensure the safety and integrity of the gas system.

air compressor

How Does a Gas Air Compressor Work?

A gas air compressor works by utilizing a gas engine to power a compressor pump, which draws in air and compresses it to a higher pressure. The compressed air can then be used for various applications. Here’s a detailed explanation of how a gas air compressor operates:

1. Gas Engine:

A gas air compressor is equipped with a gas engine as its power source. The gas engine is typically fueled by gasoline, diesel, natural gas, or propane. When the engine is started, the fuel is combusted within the engine’s cylinders, generating mechanical energy in the form of rotational motion.

2. Compressor Pump:

The gas engine drives the compressor pump through a mechanical linkage, such as a belt or direct coupling. The compressor pump is responsible for drawing in atmospheric air and compressing it to a higher pressure. There are different types of compressor pumps used in gas air compressors, including reciprocating, rotary screw, or centrifugal, each with its own operating principles.

3. Intake Stroke:

In a reciprocating compressor pump, the intake stroke begins when the piston moves downward within the cylinder. This creates a vacuum, causing the inlet valve to open and atmospheric air to be drawn into the cylinder. In rotary screw or centrifugal compressors, air is continuously drawn in through the intake port as the compressor operates.

4. Compression Stroke:

During the compression stroke in a reciprocating compressor, the piston moves upward, reducing the volume within the cylinder. This compression action causes the air to be compressed and its pressure to increase. In rotary screw compressors, two interlocking screws rotate, trapping and compressing the air between them. In centrifugal compressors, air is accelerated and compressed by high-speed rotating impellers.

5. Discharge Stroke:

Once the air is compressed, the discharge stroke begins in reciprocating compressors. The piston moves upward, further reducing the volume and forcing the compressed air out of the cylinder through the discharge valve. In rotary screw compressors, the compressed air is discharged through an outlet port as the interlocking screws continue to rotate. In centrifugal compressors, the high-pressure air is discharged from the impeller into the surrounding volute casing.

6. Pressure Regulation:

Gas air compressors often include pressure regulation mechanisms to control the output pressure of the compressed air. This can be achieved through pressure switches, regulators, or control systems that adjust the compressor’s operation based on the desired pressure setting. These mechanisms help maintain a consistent and controlled supply of compressed air for the specific application requirements.

7. Storage and Application:

The compressed air produced by the gas air compressor is typically stored in a receiver tank or used directly for applications. The receiver tank helps stabilize the pressure and provides a reservoir of compressed air for immediate use. From the receiver tank, the compressed air can be distributed through pipelines to pneumatic tools, machinery, or other devices that require the compressed air for operation.

Overall, a gas air compressor operates by using a gas engine to power a compressor pump, which draws in air and compresses it to a higher pressure. The compressed air is then regulated and used for various applications, providing a reliable source of power for pneumatic tools, machinery, and other equipment.

China Professional Azbel New Diaphragm Gas Compressor   air compressor oilChina Professional Azbel New Diaphragm Gas Compressor   air compressor oil
editor by CX 2024-04-03