China OEM Oxygen Cylinder Filling Compressor with Highly Reliable Performance with Great quality

Product Description

Oxygen Cylinder Filling Compressor with Highly Reliable Performance            

  

Introduction

Oil-free Oxygen Cylinder Filling Compressor is a reciprocating piston with single function. It does not need to add lubricating oil, does not pollute pressurized oxygen, has a fully sealed structure, and runs without leakage. Bearings are all added with imported special grease to ensure durability of the Oxygen Cylinder Filling Compressor.

 

Main Technical Parameters

 

No. Item Data
1 Compressor model GOW-20/4-150
2 Compressor type V type, reciprocating piston, water cooled, air cooled
3 Compression medium oxygen
4 Volume flow 20nm3/h
5 Intake pressure 4bar
6 Exhaust pressure 150bar
7 Inlet temperature ≤40ºC
8 Exhaust temperature no more than ambient temperature +15ºC after cooling
9 Driving mode explosion-proof motor
10 External size (length × width × height) 1650*950*1470mm
11 Weight Weight

 

Operation of Oxygen Compressor

1. It is best to use soft water for cooling water to avoid the chemical reaction of calcium and magnesium plasma in water due to high temperature, which forms scale in the cooler and affects the heat transfer effect of the cooler. If the cooling water tower circulation system is used, the water must be regularly added softener to maintain clean water. Cooling water quality requirements are as follows:
(a) Suspended solids ≤100mg/L,
(b)PH value: Between 6.5-9,
(c) Hardness of silver carbonate ≤140.  (When the drainage temperature is 45ºC) 
The automatic supply system of cooling water circulation system must be perfected, otherwise, after several hours of operation, the cooling water quantity is insufficient, and the compressor will stop due to insufficient water pressure. The cooling tower should be placed to dissipate heat easily, well ventilated, and should be supported and fixed to prevent dumping. 
The water pressure of cooling water shall generally be maintained between 0.15-0.3mpa, not more than 0.4mpa, not less than 0.1mpa. 
Cooling water consumption: 40× gas value (Nm³/h) Unit: L/h. 
The cooling water outlet temperature should be kept below 40ºC, and the temperature difference between inlet and outlet water is 6-10ºC. 
When the Oxygen Cylinder Filling Compressor is not used for a long time or the ambient temperature is lower than 0ºC, the cooling water in the Oxygen Cylinder Filling Compressor should be released.
Cooling water pipe diameter should not be smaller than the compressor waterway diameter.
2. After the Oxygen Cylinder Filling Compressor is installed and assembled, confirm that it meets the installation and use requirements and then run it. 
3. Before the test run, check whether the bolts and nuts are loose. When the fingers press the middle of the belt, the belt can droop about 10mm, then the belt is suitable. 
4. Open the vent on the cut-off valve, through air and cooling water, the inlet pressure inflow pressure controller on state, connect the power supply, the instantaneous start the compressor, and check whether the same as indicated by the arrows, whether running smoothly, such as the above normal, let the compressor running more than 10 min, and then close the discharge valve, the gas buffer tank pressure will increase. At this time, soapy water can be used to test whether the exhaust pipe joint, cylinder head, regulating pipeline leakage, the leakage place is tightened. 
5. When the gas pressure in the exhaust buffer tank rises to the exhaust stop pressure, the pressure switch moves, cutting off the magnetic starter control loop, and the motor stops. If the gas pressure in the buffer tank does not increase, check whether the value of the pressure gauge at this time indicates the rated exhaust pressure; otherwise, it should be adjusted according to article
6. When the inlet gas pressure drops to the intake stop pressure, the intake pressure controller will act, cut off the control circuit, and the motor will stop. Check whether the position of the pressure indication value is lower than the intake stop pressure value, otherwise it should be adjusted.
7. When the work is over or the power line is cut off, cut off the compressor power supply. At the same time, cut off the cooling water, and drain the cooling water in the water cooling heat exchanger and the cylinder.

 

Oxygen Compressor Protection

 

1. The operator must hold the corresponding electrician operation certificate, and work under the guidance of electrical technicians. Power supply must be cut off before electrical maintenance, and special person monitoring and warning signs should be set up. 
2. During the operation of the Oxygen Cylinder Filling Compressor, do not touch the moving parts such as the transmission belt and fan wheel, and do not touch the cylinder wall, air pipe, and water pipe to avoid scalding.

 

Presentation

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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$ 11930/Set
1 Set(Min.Order)

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Request Sample

Customization:
Available

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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 Natural Gas Compression?

Gas air compressors are not typically used for natural gas compression. Here’s a detailed explanation:

1. Different Compressed Gases:

Gas air compressors are specifically designed to compress atmospheric air. They are not typically designed or suitable for compressing natural gas. Natural gas, which is primarily composed of methane, requires specialized compressors designed to handle the unique properties and characteristics of the gas.

2. Safety Considerations:

Natural gas compression involves handling a flammable and potentially hazardous substance. Compressing natural gas requires specialized equipment that meets stringent safety standards to prevent leaks, minimize the risk of ignition or explosion, and ensure the safe handling of the gas. Gas air compressors may not have the necessary safety features or materials to handle natural gas safely.

3. Equipment Compatibility:

Natural gas compression systems typically include components such as gas compressors, gas coolers, separators, and control systems that are specifically designed and engineered for the compression and handling of natural gas. These components are built to withstand the specific demands and conditions associated with natural gas compression, including the high pressures and potential presence of impurities.

4. Efficiency and Performance:

Compressing natural gas requires specialized compressors that can handle the high-pressure ratios and volumetric flow rates associated with the gas. Gas air compressors are generally not designed to achieve the same compression ratios and performance levels required for natural gas compression. Using gas air compressors for natural gas compression would likely result in inefficient operation and suboptimal performance.

5. Regulatory Compliance:

Compressing natural gas is subject to various regulations and standards to ensure safety, environmental protection, and compliance with industry guidelines. These regulations often dictate specific requirements for equipment, materials, and operating procedures in natural gas compression systems. Gas air compressors may not meet these regulatory requirements for natural gas compression.

6. Industry Standards and Practices:

The natural gas industry has well-established standards and best practices for equipment selection, installation, and operation in gas compression systems. These standards are based on the specific requirements and characteristics of natural gas. Gas air compressors do not align with these industry standards and practices, which are essential for safe and efficient natural gas compression.

In summary, gas air compressors are not suitable for natural gas compression. Natural gas compression requires specialized equipment designed to handle the unique properties and safety considerations associated with the gas. Compressors specifically engineered for natural gas compression offer the necessary performance, safety features, and regulatory compliance required for efficient and reliable operation in natural gas compression systems.

air compressor

Can Gas Air Compressors Be Used in Remote Locations?

Yes, gas air compressors are well-suited for use in remote locations where access to electricity may be limited or unavailable. Their portability and reliance on gas engines make them an ideal choice for providing a reliable source of compressed air in such environments. Here’s a detailed explanation of how gas air compressors can be used in remote locations:

1. Independence from Electrical Grid:

Gas air compressors do not require a direct connection to the electrical grid, unlike electric air compressors. This independence from the electrical grid allows gas air compressors to be used in remote locations, such as wilderness areas, remote job sites, or off-grid locations, where it may be impractical or cost-prohibitive to establish electrical infrastructure.

2. Mobility and Portability:

Gas air compressors are designed to be portable and easy to transport. They are often equipped with handles, wheels, or trailers, making them suitable for remote locations. The gas engine powering the compressor provides mobility, allowing the compressor to be moved to different areas within the remote location as needed.

3. Fuel Versatility:

Gas air compressors can be fueled by various types of combustible gases, including gasoline, diesel, natural gas, or propane. This fuel versatility ensures that gas air compressors can adapt to the available fuel sources in remote locations. For example, if gasoline or diesel is readily available, the gas air compressor can be fueled with these fuels. Similarly, if natural gas or propane is accessible, the compressor can be configured to run on these gases.

4. On-Site Power Generation:

In remote locations where electricity is limited, gas air compressors can serve as on-site power generators. They can power not only the compressor itself but also other equipment or tools that require electricity for operation. This versatility makes gas air compressors useful for a wide range of applications in remote locations, such as powering lights, tools, communication devices, or small appliances.

5. Off-Grid Operations:

Gas air compressors enable off-grid operations, allowing tasks and activities to be carried out in remote locations without relying on external power sources. This is particularly valuable in industries such as mining, oil and gas exploration, forestry, or construction, where operations may take place in remote and isolated areas. Gas air compressors provide the necessary compressed air for pneumatic tools, drilling equipment, and other machinery required for these operations.

6. Emergency Preparedness:

Gas air compressors are also beneficial for emergency preparedness in remote locations. In situations where natural disasters or emergencies disrupt the power supply, gas air compressors can provide a reliable source of compressed air for essential equipment and systems. They can power emergency lighting, communication devices, medical equipment, or backup generators, ensuring operational continuity in critical situations.

7. Adaptability to Challenging Environments:

Gas air compressors are designed to withstand various environmental conditions, including extreme temperatures, humidity, dust, and vibrations. This adaptability to challenging environments makes them suitable for use in remote locations, where environmental conditions may be harsh or unpredictable.

Overall, gas air compressors can be effectively used in remote locations due to their independence from the electrical grid, mobility, fuel versatility, on-site power generation capabilities, suitability for off-grid operations, emergency preparedness, and adaptability to challenging environments. These compressors provide a reliable source of compressed air, enabling a wide range of applications in remote settings.

China OEM Oxygen Cylinder Filling Compressor with Highly Reliable Performance   with Great qualityChina OEM Oxygen Cylinder Filling Compressor with Highly Reliable Performance   with Great quality
editor by CX 2024-05-03