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China Professional Rotary Compressor 12000 BTU R410 Air Condition Compressor 18000 220V Air Conditioner Compressor air compressor portable

Product Description

Series Typical Model Displ. Cooling Capaciry Power COP Capacitor Compressor Hight Discharge Pipe ID Sudbon Pipe ID
cc W Btu/h W w/w uF/V mm mm mm
LA LAS68E-DJ 6.8  1565 5340 578 2.70  25/370 292 8.2 9.8
LAS79E-DJ 7.9  1864 6360 668 2.70  25/370 292 8.2 9.8
LAS86E-DJ 8.6  2000 6824 715 2.80  25/370 292 8.2 9.8
LAS89E-DJ 8.9  2063 7039 732 2.82  25/400 292 8.2 9.8
LAS89EW-DJ 8.9  2063 7039 732 2.82  25/400 264 8.2 9.8
LAS89E-FJ 9.8  2520 8598 592 4.25  25/370 292 8.2 12.9
LAS98E-FJ 9.8  2820 9622 664 4.25  25/370 292 8.2 12.9
LAS98E-DJ 9.8  2340 7984 780 3.00  25/370 279 8.2 9.8
LAS103E-FJ 10.6  3080 10509 725 4.25  25/370 292 8.2 12.9
LAS108E-DJ1 10.8  2570 8769 860 2.98  30/370 264 8.2 9.8
LAS118E-DJ 11.8  2780 9485 962 2.89  30/370 269 8.2 9.8
GB GBS135E-DV1 13.3  3350 11454 1140 2.95  35/370 299 8.2 9.8
GBS135E-FV1 13.3  3775 12880 910 4.27  35/370 292 8.2 12.9
GBS140E-FV1 13.9  3960 13512 927 4.27  35/370 292 8.2 12.9
GBS190ED-MR 19.1  5460 18630 1270 4.30  40/370 340 8.2 12.9
GBS200ED-MR 19.9  4975 16975 1670 2.98  45/400 340 8.2 12.9
GBS240ED-MR 23.9  5840 19926 1980 2.95  50/370 340 8.2 12.9
LB LBS145E-FV1 14.7  3585 12232 1240 2.89  35/370 298 8.2 12.9
ZA ZAS270E-FV1 27.0  6665 22741 2220 3.00  60/400 310 9.8 12.9

After-sales Service: Standard
Warranty: 1 Year
Installation Type: Movable Type
Samples:
US$ 200/Piece
1 Piece(Min.Order)

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Customization:
Available

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

air compressor

What are the energy-saving technologies available for air compressors?

There are several energy-saving technologies available for air compressors that help improve their efficiency and reduce energy consumption. These technologies aim to optimize the operation of air compressors and minimize energy losses. Here are some common energy-saving technologies used:

1. Variable Speed Drive (VSD) Compressors:

VSD compressors are designed to adjust the motor speed according to the compressed air demand. By varying the motor speed, these compressors can match the output to the actual air requirement, resulting in energy savings. VSD compressors are particularly effective in applications with varying air demands, as they can operate at lower speeds during periods of lower demand, reducing energy consumption.

2. Energy-Efficient Motors:

The use of energy-efficient motors in air compressors can contribute to energy savings. High-efficiency motors, such as those with premium efficiency ratings, are designed to minimize energy losses and operate more efficiently than standard motors. By using energy-efficient motors, air compressors can reduce energy consumption and achieve higher overall system efficiency.

3. Heat Recovery Systems:

Air compressors generate a significant amount of heat during operation. Heat recovery systems capture and utilize this wasted heat for other purposes, such as space heating, water heating, or preheating process air or water. By recovering and utilizing the heat, air compressors can provide additional energy savings and improve overall system efficiency.

4. Air Receiver Tanks:

Air receiver tanks are used to store compressed air and provide a buffer during periods of fluctuating demand. By using appropriately sized air receiver tanks, the compressed air system can operate more efficiently. The tanks help reduce the number of starts and stops of the air compressor, allowing it to run at full load for longer periods, which is more energy-efficient than frequent cycling.

5. System Control and Automation:

Implementing advanced control and automation systems can optimize the operation of air compressors. These systems monitor and adjust the compressed air system based on demand, ensuring that only the required amount of air is produced. By maintaining optimal system pressure, minimizing leaks, and reducing unnecessary air production, control and automation systems help achieve energy savings.

6. Leak Detection and Repair:

Air leaks in compressed air systems can lead to significant energy losses. Regular leak detection and repair programs help identify and fix air leaks promptly. By minimizing air leakage, the demand on the air compressor is reduced, resulting in energy savings. Utilizing ultrasonic leak detection devices can help locate and repair leaks more efficiently.

7. System Optimization and Maintenance:

Proper system optimization and routine maintenance are essential for energy savings in air compressors. This includes regular cleaning and replacement of air filters, optimizing air pressure settings, ensuring proper lubrication, and conducting preventive maintenance to keep the system running at peak efficiency.

By implementing these energy-saving technologies and practices, air compressor systems can achieve significant energy efficiency improvements, reduce operational costs, and minimize environmental impact.

air compressor

What safety precautions should be taken when working with compressed air?

Working with compressed air requires adherence to certain safety precautions to prevent accidents and ensure the well-being of individuals involved. Here are some important safety measures to consider:

1. Personal Protective Equipment (PPE):

Wear appropriate PPE, including safety goggles or a face shield to protect eyes from flying debris or particles, hearing protection to reduce noise exposure, and gloves to safeguard hands from potential hazards.

2. Compressed Air Storage:

Avoid storing compressed air in containers that are not designed for this purpose, such as soda bottles or makeshift containers. Use approved and properly labeled air storage tanks or cylinders that can handle the pressure and are regularly inspected and maintained.

3. Pressure Regulation:

Ensure that the air pressure is regulated to a safe level suitable for the equipment and tools being used. High-pressure air streams can cause serious injuries, so it is important to follow the manufacturer’s recommendations and never exceed the maximum allowable pressure.

4. Air Hose Inspection:

Regularly inspect air hoses for signs of damage, such as cuts, abrasions, or leaks. Replace damaged hoses immediately to prevent potential accidents or loss of pressure.

5. Air Blowguns:

Exercise caution when using air blowguns. Never direct compressed air towards yourself or others, as it can cause eye injuries, hearing damage, or dislodge particles that may be harmful if inhaled. Always point blowguns away from people or any sensitive equipment or materials.

6. Air Tool Safety:

Follow proper operating procedures for pneumatic tools. Ensure that tools are in good working condition, and inspect them before each use. Use the appropriate accessories, such as safety guards or shields, to prevent accidental contact with moving parts.

7. Air Compressor Maintenance:

Maintain air compressors according to the manufacturer’s guidelines. Regularly check for leaks, clean or replace filters, and drain moisture from the system. Proper maintenance ensures the safe and efficient operation of the compressor.

8. Training and Education:

Provide adequate training and education to individuals working with compressed air. Ensure they understand the potential hazards, safe operating procedures, and emergency protocols. Encourage open communication regarding safety concerns and implement a culture of safety in the workplace.

9. Lockout/Tagout:

When performing maintenance or repairs on compressed air systems, follow lockout/tagout procedures to isolate the equipment from energy sources and prevent accidental startup. This ensures the safety of the individuals working on the system.

10. Proper Ventilation:

Ensure proper ventilation in enclosed areas where compressed air is used. Compressed air can displace oxygen, leading to a potential risk of asphyxiation. Adequate ventilation helps maintain a safe breathing environment.

By adhering to these safety precautions, individuals can minimize the risks associated with working with compressed air and create a safer work environment.

air compressor

What are the safety considerations when operating an air compressor?

Operating an air compressor requires careful attention to safety to prevent accidents, injuries, and equipment damage. Here are some important safety considerations to keep in mind:

1. Read the Manual: Before operating an air compressor, thoroughly read and understand the manufacturer’s instruction manual. Familiarize yourself with the specific safety guidelines, recommended operating procedures, and any specific precautions or warnings provided by the manufacturer.

2. Proper Ventilation: Ensure that the area where the air compressor is operated has adequate ventilation. Compressed air can produce high levels of heat and exhaust gases. Good ventilation helps dissipate heat, prevent the buildup of fumes, and maintain a safe working environment.

3. Personal Protective Equipment (PPE): Always wear appropriate personal protective equipment, including safety glasses or goggles, hearing protection, and non-slip footwear. Depending on the task, additional PPE such as gloves, a dust mask, or a face shield may be necessary to protect against specific hazards.

4. Pressure Relief: Air compressors should be equipped with pressure relief valves or devices to prevent overpressurization. Ensure that these safety features are in place and functioning correctly. Regularly inspect and test the pressure relief mechanism to ensure its effectiveness.

5. Secure Connections: Use proper fittings, hoses, and couplings to ensure secure connections between the air compressor, air tools, and accessories. Inspect all connections before operation to avoid leaks or sudden hose disconnections, which can cause injuries or damage.

6. Inspect and Maintain: Regularly inspect the air compressor for any signs of damage, wear, or leaks. Ensure that all components, including hoses, fittings, and safety devices, are in good working condition. Follow the manufacturer’s recommended maintenance schedule to keep the compressor in optimal shape.

7. Electrical Safety: If the air compressor is electric-powered, take appropriate electrical safety precautions. Use grounded outlets and avoid using extension cords unless approved for the compressor’s power requirements. Protect electrical connections from moisture and avoid operating the compressor in wet or damp environments.

8. Safe Start-Up and Shut-Down: Properly start and shut down the air compressor following the manufacturer’s instructions. Ensure that all air valves are closed before starting the compressor and release all pressure before performing maintenance or repairs.

9. Training and Competence: Ensure that operators are adequately trained and competent in using the air compressor and associated tools. Provide training on safe operating procedures, hazard identification, and emergency response protocols.

10. Emergency Preparedness: Have a clear understanding of emergency procedures and how to respond to potential accidents or malfunctions. Know the location of emergency shut-off valves, fire extinguishers, and first aid kits.

By adhering to these safety considerations and implementing proper safety practices, the risk of accidents and injuries associated with operating an air compressor can be significantly reduced. Prioritizing safety promotes a secure and productive working environment.

China Professional Rotary Compressor 12000 BTU R410 Air Condition Compressor 18000 220V Air Conditioner Compressor   air compressor portableChina Professional Rotary Compressor 12000 BTU R410 Air Condition Compressor 18000 220V Air Conditioner Compressor   air compressor portable
editor by CX 2023-11-16

China manufacturer 220/240V 50Hz Rotary Screw Air Compressor Price SD140UV Highly Air Conditioner Compressor wholesaler

Product Description

Series Typical model Displ. Cooling Capaciry COP Capacitor Compressor Hight Test Mode
cc W Btu/h w/w uF/V mm
D SD074CV 7.4  1210 4129 2.90  13/400 205.0  ASHRAE/T
SD091CV 9.1  1490 5084 2.94  13/400 205.0  ASHRAE/T
SD104CV 10.4  1740 5937 3.03  15/400 232.9  ASHRAE/T
SD122CV 12.2  2040 6960 2.96  15/400 232.9  ASHRAE/T
SD134CV 13.4  2260 7711 3.01  17/400 232.9  ASHRAE/T
SD140UV 14.0  2385 8138 3.20  30/400 242.9  ASHRAE/T
SD145CV 14.5  2480 8462 3.04  20/400 232.9  ASHRAE/T
SD150RV 15.0  2535 8649 3.15  20/400 242.9  ASHRAE/T
SD156CV 15.6  2650 9042 3.05  25/400 232.9  ASHRAE/T
G SG157RV 15.7  2500 8530 3.10  25/450 256.0  ASHRAE/T
SG162CV 16.2  2650 9042 3.03  30/400 242.0/249.3 ASHRAE/T
SG167CV 16.7  2760 9417 3.00  35/400 242.0/249.3 ASHRAE/T
SG173CV 17.3  2850 9724 3.00  35/400 242.0/249.3 ASHRAE/T
SG184SV 18.4  3050 10407 3.11  35/450 256.0/263.9 ASHRAE/T
SG210UV 21.0  3550 12113 3.23  35/450 261.0  ASHRAE/T
L SL190HV 19.0  3180 10850 3.25  30/450 279.0  ASHRAE/T
SL193CV 19.3  3250 11089 3.00  35/450 264.0  ASHRAE/T
SL222CV 22.2  3740 12761 3.05  35/450 279.0  ASHRAE/T
SL268UV 26.8  4565 15576 3.23  45/450 289.0  ASHRAE/T
SL286UV 28.6  4845 16531 3.17  45/450 289.0  ASHRAE/T
H SH286UV-2A 28.6  4910 16753 3.33  45/450 307.8  ASHRAE/T
SH295UV 29.5  5571 17094 3.25  40/450 293.4  ASHRAE/T
SH300UV 30.0  5120 17469 3.25  40/450 307.8  ASHRAE/T
SH307UV-2 30.7  5230 17845 3.30  45/450 307.8  ASHRAE/T
SHY33M***S 30.7  5200 17742 3.25  50/400 307.8  ASHRAE/T
SH315RV 31.5  5330 18186 3.15  35/450 293.4  ASHRAE/T
SHX33S***S 33.6  5710 19483 3.15  60/400 307.8  ASHRAE/T
SH356UV 35.6  6120 20881 3.32  65/450 307.8  ASHRAE/T
SHW33T***U 35.7  5990 2571 3.01  50/420 293.4  ASHRAE/T
SHV33Y***U 41.7  7100 24225 3.04  50/450 338.9  ASHRAE/T
SH417UV 41.7  7100 24225 3.25  50/450 338.9  ASHRAE/T
TH TH420RV-1 42.0  7320 24976 3.30  70/450 358.9  ASHRAE/T
TH425RV-1 42.5  7320 24976 3.28  70/450 372.7  ASHRAE/T
TH428RV 42.8  7440 25385 3.20  50/450 358.9  ASHRAE/T
THK33X***U 45.4  7750 26443 3.05  60/450 338.9  ASHRAE/T
THU33W***U 48.8  8350 28490 3.15  60/450 372.7  ASHRAE/T
TH508MV 50.8  8660 29548 3.00  90/450 358.9  ASHRAE/T

After-sales Service: Standard
Warranty: 1 Year
Transport Package: Carton
Samples:
US$ 200/Piece
1 Piece(Min.Order)

|

Order Sample

Customization:
Available

|

.shipping-cost-tm .tm-status-off{background: none;padding:0;color: #1470cc}

Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



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

air compressor

What is the impact of humidity on compressed air quality?

Humidity can have a significant impact on the quality of compressed air. Compressed air systems often draw in ambient air, which contains moisture in the form of water vapor. When this air is compressed, the moisture becomes concentrated, leading to potential issues in the compressed air. Here’s an overview of the impact of humidity on compressed air quality:

1. Corrosion:

High humidity in compressed air can contribute to corrosion within the compressed air system. The moisture in the air can react with metal surfaces, leading to rust and corrosion in pipes, tanks, valves, and other components. Corrosion not only weakens the structural integrity of the system but also introduces contaminants into the compressed air, compromising its quality and potentially damaging downstream equipment.

2. Contaminant Carryover:

Humidity in compressed air can cause carryover of contaminants. Water droplets formed due to condensation can carry particulates, oil, and other impurities present in the air. These contaminants can then be transported along with the compressed air, leading to fouling of filters, clogging of pipelines, and potential damage to pneumatic tools, machinery, and processes.

3. Decreased Efficiency of Pneumatic Systems:

Excessive moisture in compressed air can reduce the efficiency of pneumatic systems. Water droplets can obstruct or block the flow of air, leading to decreased performance of pneumatic tools and equipment. Moisture can also cause problems in control valves, actuators, and other pneumatic devices, affecting their responsiveness and accuracy.

4. Product Contamination:

In industries where compressed air comes into direct contact with products or processes, high humidity can result in product contamination. Moisture in compressed air can mix with sensitive products, leading to quality issues, spoilage, or even health hazards in industries such as food and beverage, pharmaceuticals, and electronics manufacturing.

5. Increased Maintenance Requirements:

Humidity in compressed air can increase the maintenance requirements of a compressed air system. Moisture can accumulate in filters, separators, and other air treatment components, necessitating frequent replacement or cleaning. Excessive moisture can also lead to the growth of bacteria, fungus, and mold within the system, requiring additional cleaning and maintenance efforts.

6. Adverse Effects on Instrumentation:

Humidity can adversely affect instrumentation and control systems that rely on compressed air. Moisture can disrupt the accuracy and reliability of pressure sensors, flow meters, and other pneumatic instruments, leading to incorrect measurements and control signals.

To mitigate the impact of humidity on compressed air quality, various air treatment equipment is employed, including air dryers, moisture separators, and filters. These devices help remove moisture from the compressed air, ensuring that the air supplied is dry and of high quality for the intended applications.

air compressor

What is the role of air compressors in manufacturing and industrial processes?

Air compressors play a crucial role in various manufacturing and industrial processes, providing a reliable source of compressed air that powers a wide range of equipment and tools. Here are some key roles of air compressors in manufacturing and industrial settings:

1. Pneumatic Tools and Equipment:

Air compressors power a wide range of pneumatic tools and equipment used in manufacturing processes. These tools include impact wrenches, air drills, sanders, grinders, nail guns, and spray guns. Compressed air provides the necessary force and energy for these tools, enabling efficient and precise operations.

2. Automation and Control Systems:

Compressed air is used in automation and control systems within manufacturing facilities. Pneumatic actuators and valves use compressed air to control the movement of machinery and components. These systems are widely used in assembly lines, packaging operations, and material handling processes.

3. Air Blowing and Cleaning:

Compressed air is employed for blowing and cleaning applications in manufacturing and industrial processes. Air blowguns and air nozzles are used to remove debris, dust, and contaminants from surfaces, machinery, and products. Compressed air is also used for drying, cooling, and purging operations.

4. Air Separation and Gas Generation:

Air compressors are used in air separation plants to generate industrial gases such as nitrogen, oxygen, and argon. These gases are essential for various industrial processes, including metal fabrication, chemical production, and food packaging.

5. HVAC Systems:

Compressed air is utilized in heating, ventilation, and air conditioning (HVAC) systems. It powers pneumatic actuators for damper control, pneumatic controls for pressure regulation, and pneumatic valves for flow control in HVAC applications.

6. Air Compression for Storage and Transport:

Compressed air is used for storage and transport purposes in manufacturing and industrial settings. It is often used to pressurize storage tanks or containers that hold gases or liquids. Compressed air also facilitates the transfer of materials through pipelines and pneumatic conveying systems.

7. Process Instrumentation:

Compressed air is utilized in process instrumentation and control systems. It powers pneumatic instruments such as pressure gauges, flow meters, and control valves. These instruments play a critical role in monitoring and regulating various parameters in industrial processes.

8. Material Handling and Pneumatic Conveying:

In manufacturing and industrial facilities, compressed air is used for material handling and pneumatic conveying systems. It enables the movement of bulk materials such as powders, granules, and pellets through pipelines, facilitating efficient and controlled material transfer.

Overall, air compressors are vital components in manufacturing and industrial processes, providing a versatile and efficient source of power for a wide range of applications. The specific role of air compressors may vary depending on the industry, process requirements, and operational needs.

air compressor

What is the role of air compressor tanks?

Air compressor tanks, also known as receiver tanks or air receivers, play a crucial role in the operation of air compressor systems. They serve several important functions:

1. Storage and Pressure Regulation: The primary role of an air compressor tank is to store compressed air. As the compressor pumps air into the tank, it accumulates and pressurizes the air. The tank acts as a reservoir, allowing the compressor to operate intermittently while providing a steady supply of compressed air during periods of high demand. It helps regulate and stabilize the pressure in the system, reducing pressure fluctuations and ensuring a consistent supply of air.

2. Condensation and Moisture Separation: Compressed air contains moisture, which can condense as the air cools down inside the tank. Air compressor tanks are equipped with moisture separators or drain valves to collect and remove this condensed moisture. The tank provides a space for the moisture to settle, allowing it to be drained out periodically. This helps prevent moisture-related issues such as corrosion, contamination, and damage to downstream equipment.

3. Heat Dissipation: During compression, air temperature increases. The air compressor tank provides a larger surface area for the compressed air to cool down and dissipate heat. This helps prevent overheating of the compressor and ensures efficient operation.

4. Pressure Surge Mitigation: Air compressor tanks act as buffers to absorb pressure surges or pulsations that may occur during compressor operation. These surges can be caused by variations in demand, sudden changes in airflow, or the cyclic nature of reciprocating compressors. The tank absorbs these pressure fluctuations, reducing stress on the compressor and other components, and providing a more stable and consistent supply of compressed air.

5. Energy Efficiency: Air compressor tanks contribute to energy efficiency by reducing the need for the compressor to run continuously. The compressor can fill the tank during periods of low demand and then shut off when the desired pressure is reached. This allows the compressor to operate in shorter cycles, reducing energy consumption and minimizing wear and tear on the compressor motor.

6. Emergency Air Supply: In the event of a power outage or compressor failure, the stored compressed air in the tank can serve as an emergency air supply. This can provide temporary air for critical operations, allowing time for maintenance or repairs to be carried out without disrupting the overall workflow.

Overall, air compressor tanks provide storage, pressure regulation, moisture separation, heat dissipation, pressure surge mitigation, energy efficiency, and emergency backup capabilities. They are vital components that enhance the performance, reliability, and longevity of air compressor systems in various industrial, commercial, and personal applications.

China manufacturer 220/240V 50Hz Rotary Screw Air Compressor Price SD140UV Highly Air Conditioner Compressor   wholesaler China manufacturer 220/240V 50Hz Rotary Screw Air Compressor Price SD140UV Highly Air Conditioner Compressor   wholesaler
editor by CX 2023-10-30