China Hot selling CO2 Compressor Pressure 100 300bar air compressor price

Product Description

 

CO2 Compressor Pressure 100 300bar    

 

Product Introduction

This CO2 Compressor high pressure is suitable for inlet pressure 3-4bar and discharge pressure 150-200bar.

The CO2 Compressor flow rate of 15nm3-60nm3/hour of PSA air separation oxygen system provides clean oxygen filling service in clinic and hospitals. It can run continuously for 24 hours, and can reach more than 60 bottles per time. This is the feature of medical oil free high pressure CO2 Compressor.

 

Structural Advantage

CO2 Compressor adopts 4 stage compression, water/air cooling method and stainless steel water/air cooler to ensure the good cooling effect of the compressor, which can effectively extend the service life of key wearing parts. The inlet is equipped with low intake pressure and the exhaust end is equipped with exhaust. High pressure protection, high exhausts temperature protection, safety valve and temperature display for each stage. If over temperature and overpressure, the system will alarm and stop, ensuring safe operation. There is a forklift at the bottom of the compressor, which can be easily transferred.

All standard oil free high pressure CO2 Compressor are CE marked to meet the requirements of the CHINAMFG market. We can also provide customized CO2 Compressor according to customer conditions.

Technical Specification

 

Model

Capacity/

Flow Rate

Inlet Pressure Discharge Pressure Power Weight Weight
GOW-3/4-150 3m³/h 3-4bar 150bar 3KW 140kg 850*640*680mm
GOW-5/4-150 5m³/h 3-4bar 150bar 3.5KW 320kg 1000*800*1100mm
GOW-10/4-150 10m³/h 3-4bar 150bar 5KW 320kg 1000*800*1100mm
GOW-15/4-150 15m³/h 3-4bar 150bar 11.5KW 960kg 1650*950*1470mm
GOW-20/4-150 20m³/h 3-4bar 150bar 12KW 960kg 1650*950*1470mm
GOW-30/4-150 30m³/h 3-4bar 150bar 13.5KW 960kg 1650*950*1470mm
GOW-40/4-150 40m³/h 3-4bar 150bar 15KW 960kg 1650*950*1470mm
GOW-50/4-150 50m³/h 3-4bar 150bar 17KW 960kg 1650*950*1470mm

 

Technical Characteristics

1 Completely 100% oil free, no oil required (depending on the specific model)
2 Cylinder is stainless steel
3 Oxygen for VPSA PSA and LOX gas source
4 Not any pollution, keep the same purity into the gas
5 High reliability and high quality
6 Low maintenance cost and simple operation
7 4000 hours piston ring working life under low pressure conditions, 1500-2000 hours working life under high pressure conditions
8 TOP brand motor, can be specially pointed out, just like the SIMENSE brand
9 CE approved to meet the requirements of the EU market
10 According to the customer’s specific working conditions, the compressor is designed for 1 machine compression, 2 stage compression, 3 stage compression and 4 stage compression
11 Low speed, long life, average speed 260-350RPM
12 Low noise, average noise below 75dB, can work quietly in the medical field
13 Continuous heavy-duty operation can run stably for 24 hours without stopping
14 Each stage has an interstate safety valve. If the stage is over pressured, the safety valve will take off and release the overpressure gas to ensure the stable operation of the compressor
15 Each level has a temperature controller. If the temperature between the stages exceeds the standard, the temperature display will sound and light alarm

 

Product Show

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Usage: Hydrogen, Nitrogen, Oxygen, Ozone
Purpose: Gas Filling
Parts: Valve
Application Fields: Medical
Noise Level: Low
Machine Size: Medium
Samples:
US$ 13350/Set
1 Set(Min.Order)

|
Request Sample

Customization:
Available

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air compressor

How Do Gas Air Compressors Compare to Diesel Air Compressors?

When comparing gas air compressors to diesel air compressors, there are several factors to consider, including fuel efficiency, power output, cost, maintenance requirements, and environmental impact. Here’s a detailed explanation of how these two types of air compressors compare:

1. Fuel Efficiency:

Diesel air compressors are generally more fuel-efficient compared to gas air compressors. Diesel engines have higher energy density and better overall efficiency than gasoline engines. This means that diesel compressors can produce more work output per unit of fuel consumed, resulting in lower fuel costs and longer runtimes between refueling.

2. Power Output:

Diesel air compressors typically provide higher power output compared to gas air compressors. Diesel engines are known for their robustness and ability to generate higher torque, making them suitable for heavy-duty applications that require a larger volume of compressed air or higher operating pressures.

3. Cost:

In terms of upfront cost, gas air compressors are generally more affordable compared to diesel air compressors. Gasoline engines and components are typically less expensive than their diesel counterparts. However, it’s important to consider long-term costs, including fuel expenses and maintenance, which can vary depending on factors such as fuel prices and usage patterns.

4. Maintenance Requirements:

Diesel air compressors often require more regular maintenance compared to gas air compressors. This is because diesel engines have additional components such as fuel filters, water separators, and injector systems that need periodic servicing. Gas air compressors, on the other hand, may have simpler maintenance requirements, resulting in reduced maintenance costs and time.

5. Environmental Impact:

When it comes to environmental impact, diesel air compressors produce higher emissions compared to gas air compressors. Diesel engines emit more particulate matter, nitrogen oxides (NOx), and carbon dioxide (CO2) compared to gasoline engines. Gas air compressors, especially those powered by propane, tend to have lower emissions and are considered more environmentally friendly.

6. Portability and Mobility:

Gas air compressors are generally more portable and easier to move compared to diesel air compressors. Gasoline engines are typically lighter and more compact, making gas air compressors suitable for applications where mobility is essential, such as construction sites or remote locations.

It’s important to note that the specific requirements of the application and the availability of fuel sources also play a significant role in choosing between gas air compressors and diesel air compressors. Each type has its own advantages and considerations, and the choice should be based on factors such as the intended usage, operating conditions, budget, and environmental considerations.

In conclusion, gas air compressors are often more affordable, portable, and suitable for lighter applications, while diesel air compressors offer higher power output, fuel efficiency, and durability for heavy-duty operations. Consider the specific needs and factors mentioned above to determine the most appropriate choice for your particular application.

air compressor

Can Gas Air Compressors Be Used for Pneumatic Tools?

Yes, gas air compressors can be used for pneumatic tools. Here’s a detailed explanation:

1. Versatile Power Source:

Gas air compressors, powered by gasoline or diesel engines, provide a portable and versatile power source for operating pneumatic tools. They eliminate the need for electrical power supply, making them suitable for remote locations or construction sites where electricity may not be readily available.

2. High Power Output:

Gas air compressors typically offer higher power output compared to electric compressors of similar size. This high power output enables gas compressors to deliver the necessary air pressure and volume required by pneumatic tools, ensuring optimal tool performance.

3. Mobility and Portability:

Gas air compressors are often designed with mobility and portability in mind. They are compact and equipped with wheels or handles, allowing for easy transportation to different job sites. This mobility is advantageous when using pneumatic tools in various locations or when working in confined spaces.

4. Continuous Operation:

Gas air compressors can provide continuous air supply for pneumatic tools without the need for frequent pauses or recharging. As long as there is an adequate fuel supply, gas compressors can operate for extended periods, allowing uninterrupted use of pneumatic tools for tasks such as drilling, nailing, sanding, or painting.

5. Suitable for High-Demand Applications:

Pneumatic tools used in heavy-duty applications often require a robust air supply to meet their performance requirements. Gas air compressors can generate higher air flow rates and maintain higher operating pressures, making them suitable for high-demand pneumatic tools like jackhammers, impact wrenches, or sandblasters.

6. Flexibility in Compressor Size:

Gas air compressors are available in various sizes and capacities, allowing users to choose the compressor that best matches the air demands of their pneumatic tools. From small portable compressors for light-duty tasks to larger industrial-grade compressors for heavy-duty applications, there is a wide range of options to suit different tool requirements.

7. Reduced Dependency on Electrical Infrastructure:

Using gas air compressors for pneumatic tools reduces reliance on electrical infrastructure. In situations where the electrical power supply is limited, unreliable, or expensive, gas compressors offer a viable alternative, ensuring consistent tool performance without concerns about power availability.

It’s important to note that gas air compressors emit exhaust gases during operation, so proper ventilation is necessary when using them in enclosed spaces to ensure the safety of workers.

In summary, gas air compressors can effectively power pneumatic tools, offering mobility, high power output, continuous operation, and suitability for various applications. They provide a reliable and portable solution for utilizing pneumatic tools in locations where electrical power supply may be limited or unavailable.

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 Hot selling CO2 Compressor Pressure 100 300bar   air compressor priceChina Hot selling CO2 Compressor Pressure 100 300bar   air compressor price
editor by CX 2024-04-10

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