Product Description
Compressor for Oxygen Concentrator High Purity and Output Oil Free
Introduction
Our Compressor for Oxygen Concentrator is total oil free, do not use any lubricate oil, and for the cylinder use stainless steel material, piston ring is self-lubricated material, all this guarantee oxygen is clean and no-pollution.
Compressor for Oxygen Concentrator working speed is slow, normally 200-400 rpm, to keep working do 24 hours heavy duty loading, this Compressor for Oxygen Concentrator main use for hospital oxygen supplier center, to increase oxygen supply line pressure to the room, also can boost oxygen, and filling to the cylinder, such as 15Mpa, 20Mpa. Our Compressor for Oxygen Concentrator can also be used in Industrial acetylene cutting, cutting steel scrap in steel factory, support Boiler oxygen combustion recycle the cryogenic liquid oxygen tank vapor oxygen to the tank.
Normally, according to customer oxygen application condition, our Compressor for Oxygen Concentrator has one pressure stage, 2 pressure stage, 3 pressure stage, and 4 pressure stage, and 5 pressure stage, by the cylinder, has single, double, three, and 4 cylinder.
Main Technical Parameters
No. | Item | Data |
1 | Compressor model | GOW-40/4-150 |
2 | Compressor type | V type, reciprocating piston, water cooled, air cooled |
3 | Compression medium | oxygen |
4 | Volume flow | 40nm3/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 | 960kg |
Precautions for Use
1. Compressor for Oxygen Concentrator should be selected in a clean and dust-free room to work, the use of temperature should not be less than 0 ºC.
2. Compressor for Oxygen Concentrator can be bolted to a horizontal base or placed on a horizontal base table. A thick rubber plate with damping between the filling pump and the abutment shall be in contact with the base station smoothly.
3. Do not contact any fat object in contact with water, glycerin lubrication liquid.
4. Before the first use, the mechanical oil should be injected into the body, and after each replacement of mechanical oil, the body must be outside the grease wipe clean. Do not allow the oil from the upper and lower body joints, the sealing ring and the sealing cover outside the leakage.
5. Smoking is prohibited in the place of use, and strict forbidden prohibition system should be established. The filling workers must wear clean clothes without oil, and must wash their hands with soap before working.
6. Compressor for Oxygen Concentrator should be selected in a clean and non-greasy room to work, the use of environmental encounters not less than 0ºC, indoor lighting lines and power lines can not use the wire, the line connector must use explosion-proof junction box, oxygen filling indoor storage of large oxygen cylinders must not exceed the maintenance of good ventilation. The Oxygen Compressor and the large oxygen cylinder should be used in isolation.
7. Compressor for Oxygen Concentrator to be horizontally placed on the ground, 4 legs cushion flat. Use the external air source tube to connect the gas source bottle with the Oxygen Compressor connecting pipe and the sealing ring of the body connection should be installed correctly.
Why Choose Us
*We will answer calls and receive consultation documents from customer politely and earnestly, to know exactly about customers’ site situation and technical requirements, and record all data in detail.
*We will carefully analyze the information supplied by customers, to provide catalog and technical proposal in time.
*We will contact customers regularly, actually knowing about the progress, thus can provide reasonable suggestions, to help customers reducing costs.
*We sincerely invite customers to visit our company, participating in technical discussion, to determine the best solution.
*If any trouble occurred during the equipment running period, our technicians will communicate with customers and help solve the problem in time.
*We will send technicians to help customers install, debug the equipment and train workers, until the workers are familiar with the operation, technical principle and simple maintenance of the system.
*All the equipment has 18-month warranty from delivery date.
*During the equipment running period, we will contact customers and ask for feedback regularly.
/* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
Usage: | Hydrogen, Nitrogen, Oxygen, Ozone |
---|---|
Purpose: | Gas Filling |
Parts: | Valve |
Application Fields: | Medical |
Noise Level: | Low |
Machine Size: | Medium |
Samples: |
US$ 10300/Set
1 Set(Min.Order) | |
---|
Customization: |
Available
|
|
---|
Can Gas Air Compressors Be Used in Cold Weather Conditions?
Gas air compressors are generally designed to operate in a wide range of environmental conditions, including cold weather. However, there are certain considerations and precautions to keep in mind when using gas air compressors in cold weather conditions. Here’s a detailed explanation:
1. Cold Start-Up:
In cold weather, starting a gas air compressor can be more challenging due to the low temperatures affecting the engine’s performance. It is important to follow the manufacturer’s recommendations for cold start procedures, which may include preheating the engine, using a cold weather starting aid, or ensuring the proper fuel mixture. These measures help facilitate smooth start-up and prevent potential damage to the engine.
2. Fuel Type:
Consider the type of fuel used in the gas air compressor. Some fuels, such as gasoline, can be more susceptible to cold weather issues like vapor lock or fuel line freezing. In extremely cold conditions, it may be necessary to use a fuel additive or switch to a fuel type that is better suited for cold weather operation, such as winter-grade gasoline or propane.
3. Lubrication:
Cold temperatures can affect the viscosity of the oil used in the compressor’s engine. It is important to use the recommended oil grade suitable for cold weather conditions. Thicker oil can become sluggish and impede proper lubrication, while oil that is too thin may not provide adequate protection. Consult the manufacturer’s guidelines for the appropriate oil viscosity range for cold weather operation.
4. Moisture Management:
In cold weather, moisture can condense more readily in the compressed air system. It is crucial to properly drain the moisture from the compressor tank and ensure the air lines are free from any accumulated moisture. Failure to manage moisture can lead to corrosion, freezing of air lines, and decreased performance.
5. Protection from Freezing:
In extremely cold conditions, it is important to protect the gas air compressor from freezing. This may involve using insulated covers or enclosures, providing heat sources in the compressor area, or storing the compressor in a temperature-controlled environment when not in use. Taking measures to prevent freezing helps maintain proper operation and prevents potential damage to the compressor components.
6. Monitoring Performance:
Regularly monitor the performance of the gas air compressor in cold weather conditions. Pay attention to any changes in operation, such as reduced air pressure, increased noise, or difficulties in starting. Promptly address any issues and consult the manufacturer or a qualified technician if necessary.
By considering these factors and taking appropriate precautions, gas air compressors can be effectively used in cold weather conditions. However, it is important to consult the specific guidelines provided by the manufacturer for your compressor model, as they may have additional recommendations or specifications for cold weather operation.
How Do Gas Air Compressors Contribute to Energy Savings?
Gas air compressors can contribute to energy savings in several ways. Here’s a detailed explanation:
1. Efficient Power Source:
Gas air compressors are often powered by gasoline or diesel engines. Compared to electric compressors, gas-powered compressors can provide higher power output for a given size, resulting in more efficient compression of air. This efficiency can lead to energy savings, especially in applications where a significant amount of compressed air is required.
2. Reduced Electricity Consumption:
Gas air compressors, as standalone units that don’t rely on electrical power, can help reduce electricity consumption. In situations where the availability of electricity is limited or expensive, using gas air compressors can be a cost-effective alternative. By utilizing fuel-based power sources, gas air compressors can operate independently from the electrical grid and reduce dependence on electricity.
3. Demand-Sensitive Operation:
Gas air compressors can be designed to operate on demand, meaning they start and stop automatically based on the air requirements. This feature helps prevent unnecessary energy consumption during periods of low or no compressed air demand. By avoiding continuous operation, gas air compressors can optimize energy usage and contribute to energy savings.
4. Energy Recovery:
Some gas air compressors are equipped with energy recovery systems. These systems capture and utilize the heat generated during the compression process, which would otherwise be wasted. The recovered heat can be redirected and used for various purposes, such as space heating, water heating, or preheating compressed air. This energy recovery capability improves overall energy efficiency and reduces energy waste.
5. Proper Sizing and System Design:
Selecting the appropriate size and capacity of a gas air compressor is crucial for energy savings. Over-sizing a compressor can lead to excessive energy consumption, while under-sizing can result in inefficient operation and increased energy usage. Properly sizing the compressor based on the specific air demands ensures optimal efficiency and energy savings.
6. Regular Maintenance:
Maintaining gas air compressors in good working condition is essential for energy efficiency. Regular maintenance, including cleaning or replacing air filters, checking and repairing leaks, and ensuring proper lubrication, helps optimize compressor performance. Well-maintained compressors operate more efficiently, consume less energy, and contribute to energy savings.
7. System Optimization:
For larger compressed air systems that involve multiple compressors, implementing system optimization strategies can further enhance energy savings. This may include employing advanced control systems, such as variable speed drives or sequencers, to match compressed air supply with demand, minimizing unnecessary energy usage.
In summary, gas air compressors contribute to energy savings through their efficient power sources, reduced electricity consumption, demand-sensitive operation, energy recovery systems, proper sizing and system design, regular maintenance, and system optimization measures. By utilizing gas-powered compressors and implementing energy-efficient practices, businesses and industries can achieve significant energy savings in their compressed air systems.
What Are the Advantages of Using a Gas Air Compressor Over an Electric One?
Using a gas air compressor offers several advantages over an electric air compressor. Gas-powered compressors provide unique benefits in terms of mobility, versatility, power, and convenience. Here’s a detailed explanation of the advantages of using a gas air compressor:
1. Portability and Mobility:
Gas air compressors are typically more portable and mobile compared to electric compressors. They often feature handles, wheels, or trailers, allowing for easy transportation to different locations. This portability is especially advantageous in situations where compressed air is needed at remote job sites, outdoor events, or areas without access to electricity. Gas air compressors can be easily moved and positioned where they are required.
2. Independence from Electricity:
One of the primary advantages of gas air compressors is their independence from electricity. They are powered by gas engines, which means they do not rely on a direct connection to the electrical grid. This makes them suitable for use in areas where electrical power is limited, unreliable, or unavailable. Gas air compressors offer a reliable source of compressed air even in remote locations or during power outages.
3. Versatility in Fuel Options:
Gas air compressors provide versatility in terms of fuel options. They can be powered by various types of combustible gases, including gasoline, diesel, natural gas, or propane. This flexibility allows users to choose the most readily available or cost-effective fuel source based on their specific requirements. It also makes gas compressors adaptable to different environments and fuel availability in various regions.
4. Higher Power Output:
Gas air compressors typically offer higher power output compared to electric compressors. Gas engines can generate more horsepower, allowing gas compressors to deliver greater air pressure and volume. This higher power output is beneficial when operating pneumatic tools or equipment that require a significant amount of compressed air, such as jackhammers, sandblasters, or heavy-duty impact wrenches.
5. Continuous Operation:
Gas air compressors can provide continuous operation without the need for frequent breaks or cooldown periods. Electric compressors may overheat with prolonged use, requiring intermittent rest periods to cool down. Gas compressors, on the other hand, can operate continuously for longer durations without the risk of overheating. This continuous operation capability is particularly advantageous in demanding applications or situations that require extended periods of compressed air usage.
6. Quick Startup and Response:
Gas air compressors offer quick startup and response times. They can be started instantly by simply pulling a cord or pressing a button, whereas electric compressors may require time to power up and reach optimal operating conditions. Gas compressors provide immediate access to compressed air, allowing for efficient and prompt task completion.
7. Durability and Resistance to Voltage Fluctuations:
Gas air compressors are generally more durable and resistant to voltage fluctuations compared to electric compressors. Electric compressors can be affected by voltage drops or surges, which may impact their performance or cause damage. Gas compressors, however, are less susceptible to voltage-related issues, making them reliable in environments where voltage fluctuations are common.
8. Lower Energy Costs:
Gas air compressors can offer lower energy costs compared to electric compressors, depending on the price of the fuel being used. Gasoline or diesel fuel, for example, may be more cost-effective than electricity in certain regions or applications. This cost advantage can result in significant savings over time, especially for high-demand compressed air operations.
Overall, the advantages of using a gas air compressor over an electric one include portability, independence from electricity, fuel versatility, higher power output, continuous operation capability, quick startup and response times, durability, resistance to voltage fluctuations, and potentially lower energy costs. These advantages make gas air compressors a preferred choice in various industries, remote locations, and applications where mobility, power, and reliability are crucial.
editor by CX 2024-05-02