China Good quality 100% Oil-Free Oxygen Booster Compressor Air Compressor for Oxygen Concentrator Oxygen Cylinder Filling Compressor 12v air compressor

Product Description

100% Oil-Free Oxygen Booster Compressor Air Compressor for Oxygen Concentrator Oxygen Cylinder Filling Compressor

 

Product Description

Oil-free piston oxygen compressors for oxygen compression

Cape-Golden oxygen compressors are ideally suitable for compressing oxygen thanks to its oil-free, dry-running and gas-tight design.

  • no gas contamination by oil-free and dry running compression
  • Safe operation by using specific, oxygen-compatible materials
  • technically tight gas compressors in operation or when stopped  

Our oil-free oxygen compressors are the preferred choice for high purity and leak tight gas compression applications. We design basic- to fully-instrumented leak-free, non-contaminating reciprocating diaphragm gas compression systems in accordance with customer specifications and API 618 (some exceptions/deviations, see Specifications). Our compressors range in size from 2 kW to 150kW . Discharge pressures range from 50 CHINAMFG to as high as 15,000 CHINAMFG (1,100 bar) and typical flow rates based on compression ratio to 500 Nm3/hr.

Our Advantages

Oil-Free
Our Medical Oxygen Booster is completely oil-free and does not use any lubricating oil. The cylinder is made of stainless steel with oil-free design. The guide ring, piston ring and piston rod packing are all made of self-lubricating material, with 100% oil-free lubrication. All this assures that oxygen is clean and pollution-free. High temperature resistant grease lubrication is adopted for bearing parts, which will not contact with compression medium, avoid gas pollution during compression process, to ensure gas purity. It was controlled by the microcomputer controller, it has the functions of high exhaust temperature, low intake pressure and high exhaust pressure with alarm shutdown, high automation level, and more reliable operation.

 

 

Working Speed 
Our Medical Oxygen Booster working speed is very slow, usually 200-400rpm, which is suitable for 24 hours of continuous working conditions.

Selection
We can configure data remote display and remote control according to customer’s requirement.
Our Medical Oxygen Booster can be used in hospital oxygen centers to increase the pressure of oxygen lines in rooms, and to boost oxygen and fill cylinders. It can also be used for industrial acetylene combustion cutting, waste steel cutting in steel works, supporting boiler oxygen combustion, and circulating the steam oxygen in low temperature liquid oxygen tank to the tank for various working conditions.

 

Pressure Range
Oil-free low pressure Medical Oxygen Booster, could be used in industrial boiler combustion support, hospital centralized oxygen supply booster, and other fields. The pressure ranging is from 0.2~3bar to 10bar-15barg.
 
Application
Oil-free high pressure Medical Oxygen Booster, could be used for high pressure oxygen bottle filling, so as to facilitate the oxygen storage and transport. According to the customers’ demand, the filling pressure is divided into 15mpa, 20mpa, and up to 30mpa. The filling is flow from 1Nm3/h to 300Nm3/h, especially suitable for the filling of PSA oxygen generator. It has characteristics of clean, totally oil-free, simple operation, reliable quality, low speed, and low noise. The Medical Oxygen Booster could be working in continuous working conditions for a long time, which is the best choice of oxygen compressor.
 
Cooling Way
Medical Oxygen Booster, according to the cooling way, can be divided into air cooled and water cooled, customers can choose from it according to the actual local situation.

Product Parameters

150bar/2200PSI Four Stage Compression Oxygen Compressor
Model Flow rate Inlet
Pressure
Discharge
pressure
Power Rate Weight Dimension
(mm)
Noise
GOW-3/4-150 1~3m³/h 3~4bar 150bar 1.5~3KW 140kg 850*640*680 ≤80db
GOW-5/4-150 5m³/h 3~4bar 150bar 3kw 320kg 1000*800*1100 ≤80db
GOW-6/4-150 5m³/h 3~4bar 150bar 3kw 320kg 1000*800*1100 ≤80db
GOW-10/4-150 10m³/h 3~4bar 150bar 5.5KW 320kg 1000*800*1100 ≤80db
GOW-12/4-150 12m³/h 3~4bar 150bar 5.5KW 320kg 1000*800*1100 ≤80db
GOW-15/4-150 15m³/h 3~4bar 150bar 11KW 960kg 1650*950*1470 ≤80db
GOW-20/4-150 20m³/h 3~4bar 150bar 11KW 960kg 1650*950*1470 ≤80db
GOW-30/4-150 30m³/h 3~4bar 150bar 11KW 960kg 1650*950*1470 ≤80db
GOW-40/4-150 40m³/h 3~4bar 150bar 11KW 960kg 1650*950*1470 ≤80db
GOW-45/4-150 45m³/h 3~4bar 150bar 15KW 960kg 1650*950*1470 ≤80db
GOW-50/4-150 50m³/h 3~4bar 150bar 15KW 960kg 1650*950*1470 ≤80db
GOW-60/4-150 60m³/h 3~4bar 150bar 18.5KW 960kg 1650*950*1470 ≤80db
GOW-70~150/4-150 70~150m³/h 3~4bar 150bar 30~45KW 2000kg 2100*1100*1600 ≤80db
200bar/3000PSI Four Stage Compression Oxygen Compressor
GOW-3/4-200 1~3m³/h 3~4bar 200bar 1.5~3KW 140kg 850*640*680 ≤80db
GOW-5/4-200 5m³/h 3~4bar 200bar 3KW 320kg 1000*800*1100 ≤80db
GOW-10/4-200 10m³/h 3~4bar 200bar 5.5KW 320kg 1000*800*1100 ≤80db
GOW-12/4-200 12m³/h 3~4bar 200bar 5.5KW 320kg 1000*800*1100 ≤80db
GOW-15/4-200 15m³/h 3~4bar 200bar 11KW 960kg 1650*950*1470 ≤80db
GOW-20/4-200 20m³/h 3~4bar 200bar 11KW 960kg 1650*950*1470 ≤80db
GOW-30~45/4-200 30m³/h 3~4bar 200bar 15KW 960kg 1650*950*1470 ≤80db
GOW-50~60/4-200 50~60m³/h 3~4bar 200bar 18.5KW 960kg 1650*950*1470 ≤80db
GOW-70~120/4-200 80~120m³/h 3~4bar 200bar 30~45KW 2000kg 2100*1100*1600 ≤80db

Packaging & Shipping

 

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Usage: Hydrogen, Nitrogen, Oxygen, Ozone
Purpose: Gas Storage
Parts: Valve
Application Fields: Medical
Noise Level: Low
Machine Size: Medium
Samples:
US$ 18200/Set
1 Set(Min.Order)

|
Request Sample

Customization:
Available

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air compressor

Can Gas Air Compressors Be Used in Construction Projects?

Gas air compressors are widely used in construction projects due to their portability, versatility, and ability to provide the necessary compressed air for various applications. They are an essential tool in the construction industry, enabling the efficient and effective operation of pneumatic tools and equipment. Here’s a detailed explanation of how gas air compressors are used in construction projects:

1. Powering Pneumatic Tools:

Gas air compressors are commonly used to power a wide range of pneumatic tools on construction sites. These tools include jackhammers, nail guns, impact wrenches, concrete breakers, air drills, sanders, grinders, and paint sprayers. The compressed air generated by the gas air compressor provides the necessary force and power for efficient operation of these tools, enabling tasks such as concrete demolition, fastening, surface preparation, and finishing.

2. Air Blow and Cleaning Operations:

In construction projects, there is often a need to clean debris, dust, and dirt from work areas, equipment, and surfaces. Gas air compressors are used to generate high-pressure air for air blow and cleaning operations. This helps maintain cleanliness, remove loose materials, and prepare surfaces for further work, such as painting or coating.

3. Operating Pneumatic Systems:

Gas air compressors are employed to operate various pneumatic systems in construction projects. These systems include pneumatic control devices, pneumatic cylinders, and pneumatic actuators. Compressed air from the gas air compressor is used to control the movement of equipment, such as gates, doors, and barriers, as well as to operate pneumatic lifts, hoists, and other lifting mechanisms.

4. Concrete Spraying and Shotcreting:

Gas air compressors are utilized in concrete spraying and shotcreting applications. Compressed air is used to propel the concrete mixture through a nozzle at high velocity, ensuring proper adhesion and distribution on surfaces. This technique is commonly employed in applications such as tunnel construction, slope stabilization, and repair of concrete structures.

5. Sandblasting and Surface Preparation:

In construction projects that require surface preparation, such as removing old paint, rust, or coatings, gas air compressors are often used in conjunction with sandblasting equipment. Compressed air powers the sandblasting process, propelling abrasive materials such as sand or grit onto the surface to achieve effective cleaning and preparation before applying new coatings or finishes.

6. Tire Inflation and Equipment Maintenance:

Gas air compressors are utilized for tire inflation and equipment maintenance on construction sites. They provide compressed air for inflating and maintaining proper tire pressure in construction vehicles and equipment. Additionally, gas air compressors are used for general equipment maintenance, such as cleaning, lubrication, and powering pneumatic tools for repair and maintenance tasks.

7. Portable and Remote Operations:

Gas air compressors are particularly beneficial in construction projects where electricity may not be readily available or feasible. Portable gas air compressors provide the flexibility to operate in remote locations, allowing construction crews to utilize pneumatic tools and equipment without relying on a fixed power source.

Gas air compressors are an integral part of construction projects, facilitating a wide range of tasks and enhancing productivity. Their ability to power pneumatic tools, operate pneumatic systems, and provide compressed air for various applications makes them essential equipment in the construction industry.

air compressor

What Is the Impact of Altitude on Gas Air Compressor Performance?

Altitude can have a significant impact on the performance of gas air compressors. Here’s a detailed explanation:

1. Decreased Air Density:

As altitude increases, the air density decreases. This reduction in air density affects the performance of gas air compressors, primarily because compressors rely on the intake of ambient air to generate compressed air. With lower air density at higher altitudes, the compressor’s ability to draw in a sufficient volume of air is reduced.

2. Reduced Compressor Output:

The decrease in air density directly affects the compressor’s output. Gas air compressors may experience a decrease in their maximum airflow and pressure capabilities at higher altitudes. This reduction in output can impact the compressor’s efficiency and its ability to deliver the required compressed air for various applications.

3. Increased Compressor Workload:

At higher altitudes, gas air compressors need to work harder to maintain the desired level of compressed air output. The reduced air density means the compressor must compress a larger volume of air to achieve the same pressure as it would at lower altitudes. This increased workload can lead to higher energy consumption, increased wear and tear on the compressor components, and potentially decreased overall performance and lifespan.

4. Engine Power Loss:

If the gas air compressor is powered by an internal combustion engine (such as gasoline or diesel), altitude can also impact the engine’s performance. As the air density decreases, the engine may experience a power loss due to reduced oxygen availability for combustion. This can result in reduced engine horsepower and torque, affecting the compressor’s ability to generate compressed air.

5. Considerations for Proper Sizing:

When selecting a gas air compressor for use at higher altitudes, it is crucial to consider the specific altitude conditions and adjust the compressor’s size and capacity accordingly. Choosing a compressor with a higher airflow and pressure rating than required at sea level can help compensate for the reduced performance at higher altitudes.

6. Maintenance and Adjustments:

Regular maintenance and adjustments are necessary to optimize the performance of gas air compressors operating at higher altitudes. This includes monitoring and adjusting the compressor’s intake systems, fuel-to-air ratio, and ignition timing to account for the reduced air density and maintain proper combustion efficiency.

In summary, altitude has a notable impact on the performance of gas air compressors. The decrease in air density at higher altitudes leads to reduced compressor output, increased compressor workload, potential engine power loss, and considerations for proper sizing and maintenance. Understanding these effects is crucial for selecting and operating gas air compressors effectively in various altitude conditions.

air compressor

How Do You Choose the Right Size Gas Air Compressor for Your Needs?

Choosing the right size gas air compressor is crucial to ensure optimal performance and efficiency for your specific needs. Selecting a compressor that is too small may result in insufficient airflow or pressure, while choosing one that is too large can lead to unnecessary energy consumption and higher costs. Here’s a detailed explanation of the factors to consider when choosing the right size gas air compressor:

1. Required Airflow:

Determine the airflow requirements of your applications. Consider the tools, equipment, or processes that will be powered by the compressor and their respective airflow demands. The required airflow is typically measured in cubic feet per minute (CFM). Determine the total CFM required, taking into account any simultaneous or intermittent tool usage.

2. Operating Pressure:

Identify the operating pressure required for your applications. Different tools and systems have specific pressure requirements, measured in pounds per square inch (PSI). Ensure that the compressor you choose can deliver the required pressure consistently.

3. Duty Cycle:

Consider the duty cycle, which refers to the amount of time the compressor will be in operation within a given period. Some applications may require continuous operation, while others involve intermittent or occasional use. Take into account the duty cycle to ensure that the compressor can handle the expected workload without overheating or experiencing excessive wear.

4. Tank Size:

The tank size of a gas air compressor determines its ability to store compressed air and provide a steady supply. A larger tank can help accommodate fluctuations in demand and reduce the frequency of the compressor cycling on and off. Consider the required storage capacity based on the specific applications and the desired balance between continuous operation and storage capacity.

5. Power Source:

Gas air compressors can be powered by different fuels, such as gasoline, diesel, natural gas, or propane. Consider the availability and cost of the fuel options in your location, as well as the specific requirements of your applications. Choose a compressor that is compatible with a power source that suits your needs.

6. Portability:

Determine if portability is a requirement for your applications. If you need to move the compressor to different job sites or locations, consider a portable model with features like wheels, handles, or a compact design that facilitates easy transportation.

7. Noise Level:

If noise is a concern in your working environment, consider the noise level of the compressor. Gas air compressors can vary in their noise output, and certain models may have noise-reducing features or insulation to minimize sound emissions.

8. Manufacturer Recommendations:

Consult the manufacturer’s recommendations and guidelines for selecting the appropriate compressor size for your specific needs. Manufacturers often provide guidelines based on the anticipated applications, airflow requirements, and other factors to help you make an informed decision.

By considering these factors and carefully assessing your specific requirements, you can choose the right size gas air compressor that meets your airflow, pressure, duty cycle, and other operational needs. It’s advisable to consult with industry professionals or compressor experts for guidance, especially for complex or specialized applications.

China Good quality 100% Oil-Free Oxygen Booster Compressor Air Compressor for Oxygen Concentrator Oxygen Cylinder Filling Compressor   12v air compressorChina Good quality 100% Oil-Free Oxygen Booster Compressor Air Compressor for Oxygen Concentrator Oxygen Cylinder Filling Compressor   12v air compressor
editor by CX 2024-05-16

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