Tag Archives: natural gas compressor

China Professional Air-Cooled 25MPa CH4 Piston Natural Gas Booster Compressor for CNG Station 12v air compressor

Product Description

Company Profile

 

The company’s main products include desulfurization, dehydrocarbons, separation, compression, filling, storage and transportation equipment for natural gas extraction in oil and gas fields; complete sets of wellhead gas recovery equipment; complete sets of vented natural gas recovery equipment; complete sets of coalbed methane, shale gas and biogas development and utilization equipment Equipment; CNG filling station complete equipment; LNG complete equipment; BOG compressor; large-displacement screw-piston compound compressor; membrane nitrogen and adsorption nitrogen production complete equipment; in addition, hydrogen, oxygen, nitrogen, argon, carbon monoxide gas, carbon dioxide gas, coal gas, hydrogen sulfide gas, propylene gas, ethylene gas, methyl chloride gas, trifluoropropane gas, liquefied petroleum gas and other special gases, low-temperature gases and air compressors. Among them, the W and V series non-lubricated compressors produced by introducing advanced foreign technology have reached the international advanced level.

 

Product Description

The company currently has 10 series of leading products and hundreds of specifications. Its volumetric flow rate: 0.05~200m3/min. Pressure range: low pressure type 0~1.6MPa, medium pressure
Type 1.6~8.0MPa, high pressure type 8.0~50.0MPa. Lubrication methods are divided into 3 types: oil, oil-free and completely oil-free. The structural types include Z, W, V, D, M and H types. There are 3 cooling methods: air cooling, water cooling, and mixed cooling. In addition to providing users with customized products, we can also carry out personalized design and manufacturing according to user needs.
CNG STHangZhouRD STATION COMPRESSOR
CNG standard stations are built where natural gas pipelines pass through.
Gas is taken directly from the natural gas pipeline. Natural gas undergoes desulfurization, pressure regulation, metering, and
Filtration, dehydration and other processes enter the compressor unit, and then compress, cool and purify
Then the pressure is increased to 25Mpa, and finally the high-pressure trailer is supplied to the high-pressure trailer through the air filling column.
Fill up the gas, and also fill up the car through the gas vending machine. Our company can provide overall
Solutions and turnkey projects.
Equipment composition: air inlet filter pressure regulating metering device, desulfurization tower, low-pressure dehydration device, piston compressor, sequence control panel, gas storage bottle group, adding
Gas machines, gas filling columns, CNG trailers, gas alarm devices and other equipment.
Covered area: about 2000~4000m²
Optimal transportation radius: 150km
Suitable scale: ≥40000Nm²/d
Equipment installation time: about 30 days.
 

NO. TYPE Intake pressure
MPa
CAPACITY
Nm3/h
MOTOR
KW
COOLING  WEIGHT(TONS) SIZE
mm
1 W-5.6/0.5-250 0.05 500 160 WATER COOLING 9 5000×2300×2200
2 W-3.6/1-250 0.1 435 110 WATER/MIX COOLING 6 2400×2220×2150
3 W-4.75/1-250 0.1 570 132 WATER/MIX COOLING 6 2400×2220×2150
4 W-7.5/1-250 0.1 900 270 WATER/MIX COOLING 17 8500×2260×2200
5 W-4.5/1.4-250 0.14 650 160 WATER/MIX COOLING 7 3820×2270×2150
6 W-4.7/2-250 0.2 850 185 WATER/MIX COOLING 7 3820×2270×2150
7 WF-3.6/(1.5~2.5)-250  0.15~0.25 0.15~0.25 540~750 160 AIR COOLING 14 6200×2190×2080
8 W-3.6/(1.5~3)-250 0.15~0.3 540~860 185 WATER/MIX COOLING 7 4000×2270×2150
9 V-3.2/(3-5)-250 0.3~0.5 760-1150 220 AIR COOLING 14 6300×2525×2500
10 VF-3.2/(3~5)-250 0.3~0.5 770~1150 220 WATER/MIX COOLING 14 6300×2500×2500
11 W-1.5/8-250 0.8 810 132 WATER/MIX COOLING 8 4000×2300×2000
12 VF-2/(10~16)-250 1.0~1.6 1320~2000 280 AIR COOLING 10 5600×2500×2300
13 D-5/(2~4)-250 0.2~0.4 900~1500 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
14 D-4.2/(3~6)-250 0.3~0.6 1000-1760 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
15 D-3.6/(4~7)-250 0.4~0.7 1050~1730 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
16 D-2.6/(7~12)-250 0.7~1.2 1250~2000 280 WATER/AIR/MIX COOLING 20 5000×3500×2500
17 VF-0.76/(7~13)-250 0.7~1.3 365~640 100 WATER/AIR/MIX COOLING 8 6000×2200×2230

CNG MOTHER STATION COMPRESSOR
The CNG mother station is built in a place where natural gas pipelines pass through.
Take the gas directly from the gas pipeline. Natural gas undergoes desulfurization, pressure regulation, metering, filtration,
Dehydration and other processes enter the compressor unit, and then are compressed, cooled and purified to make it
The pressure is increased to 25Mpa, and finally the high-pressure trailer is filled with air through the air filling column.
Sometimes, cars can also be refueled through gas vending machines. Our company provides turnkey projects.
Equipment composition: air inlet filter pressure regulating metering device, desulfurization tower, low pressure desulfurization tower
Water device, piston compressor, sequence control panel, gas storage bottle group, gas filling
machine, gas filling column, CNG trailer, gas alarm device and other equipment.
Covered area: about 2000~4000m²
Optimal transportation radius: 150km
Suitable scale: ≥40000Nm²/d
Equipment installation time: about 30 days.

NO. TYPE Intake pressure
MPa
CAPACITY
Nm3/h
MOTOR
KW
COOLING  WEIGHT(TONS) SIZE
mm
1   D-5/(2-4)-250 0.2~0.4 900~1500 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
2   VF-3.2/(3~5)-250 0.3~0.5 770~1150 220 AIR COOLING 14 6300×2500×2500
3   D-4.2/(3-6)-250 03~0.6 1000-1760 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
4   D-3.6/(4~7)-250 0.4~0.7 1050~1730 315 WATER/AIR/MIX COOLING 23 5000×3500×2500
5   D-2.6/(7~12)-250 0.7~1.2 1250~2000 280 WATER/MIX COOLING 20 5000×3500×2500
6   VF-0.76/(7~13)-250 0.7~0.3 365~640 100 MIX COOLING 8 6000×2200×2230
7   D-2.8/(8-12)-250 0.8~1.2 1350-2150 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
8   V-2/(9-14)-250 0.9~1.4 1200-1800 280 WATER/AIR/MIX COOLING 12 6500×2525×2300
9   VFD-2/14-210 1.4 1800 280 AIR COOLING 15 10000×4000×3000
10   D-2.5/(12-14)-250 1.2~1.4 1950-2250 18 WATER/AIR/MIX COOLING 23 5000×3500×2500
11   VF-2/(10~16)-250 1.0~1.6 1320~2000 280 AIR COOLING 10 5600×2500×2300
12   D-2.8/(10~16)-250 1.0~1.6 1800-2850 355 WATER/AIR/MIX COOLING 23 5000×3500×2500
13   V-1.43/(16~20)-250 1.6~2.0 1460~1800 220 WATER/AIR/MIX COOLING 11 6000×2500×2250
14   D-2.4/(16-20)-250 1.6~2.0 2450-3000 355 WATER/AIR/MIX COOLING 23 5000×3500×2500
15   D-2.4/(16-23)-210 1.6~2.3 2450-3450 355 WATER/AIR/MIX COOLING 23 5000×3500×2500
16   V-1.8/(18-23)-210 1.8~2.3 2000-2590 280 WATER/AIR/MIX COOLING 12 6500×2525×2200
17   D-1.45/(20-35)-250 2.0~3.5 1830-3100 280 WATER/AIR/MIX COOLING 23 5000×3500×2500
18   V-0.8/(19~35)-250 1.9~3.5 960~1720 160 WATER/AIR/MIX COOLING 13 6500×2525×2200
19   VF-1/(25~40)-250 2.5~4.0 1560~2700 220 AIR COOLING 13.5 4250×2525×2100
20   D-1.45/(40~60)-250 4.0~6.0 3600~5300 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
21   D-1.3/(50-70)-250 5.0~7.0 3970~5530 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
22   D-1.3/(60-70)-250 6.0~7.0 4758~5530 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
23   D-1.2/(40-80)-250 4.0~8.0 4758~5530 315 WATER/AIR/MIX COOLING 23 5000×3500×2100
24   D-3.5/(7-10)-250 0.7~1 1680~2240 550 AIR COOLING 28 6600×4300×2500

CNG SUBSTATION COMPRESSOR
CNG substations are built in places where no natural gas pipelines pass through.
The CNG trailer transfers the gas from the mother station to the station and unloads the gas through the gas unloading column.
Gas machines refill cars.
Equipment composition: gas unloading column, sub-station compressor, sequence control panel, storage
Gas cylinder sets, gas dispensers, gas alarm devices, CNG trailers and other equipment.
Covered area: about 1000~1500m²
Way of working:
After natural balance, the direct intake air is compressed and supercharged, and the average working capacity is
More than 1000 square meters
Compressor exhaust volume changes range as trailer pressure drops:
1800-400Nm²/h

NO. TYPE Intake pressure
MPa
CAPACITY
Nm3/h
MOTOR
KW
COOLING  WEIGHT(TONS) SIZE
mm
1 VF-0.32/(30~200)-250 3~20 1500 75 AIR 5.5 5538×2134×1680
2 VFD-0.32/(30~200)-250 3~20 1500 75 AIR 9.65 5538×2438×2438
3 DFD-0.32/(30-200)-250 3~20 1500 75 AIR 8.5 4400×2610×2591
4 VFD-0.32/(20~200)-250 2~20 1500 75 AIR 9.65 5538×2438×2438
5 VF-0.26/(30-200)-250 3~20 1000 55 AIR 5.5 5538×2350×2000
6 VFD-0.26/(30-200)-250 3~20 1000 55 AIR 9.5 5538×2350×2438
7 ZFD-0.1/(30~200)-250 3~20 650 37 AIR 8.5 7000×2700×2700
8 ZFD-0.24/(30-200)-250 3~20 1400 37×2 AIR 8.5 7000×2700×2700
9 KR-1500/(20-200)-250 2~20 1500 30×2 AIR 10 5500×2500×2950
10 KR-2000/(20-200)-250 2~20 2000 37×2 AIR 10 5500×2500×2950
11 DFD-3[0.28]/(2-4)[25-200]-250 0.2~0.4

2.5~20

540-900
(STANARD STATION AND SUBSTATION)
1300
160

75

AIR 12.5 4050×3450×2100

Detailed Photos

 

After Sales Service

In addition to the high-quality performance of our products, we also attach great importance to providing customers with comprehensive services. We have an independent service operation and maintenance team, providing customers with various support and services, including technical support, debugging services, spare parts supply, renovation and upgrading, and major maintenance. We always adhere to the principle of customer-centrism, ensuring the safe and stable operation of customer equipment. Our service team is committed to providing reliable support for customers’ operations 24/7.
 

Training plan

Technical training is divided into 2 parts: company training and on-site training.
1)Company training
Before the unit is delivered, that is during the unit assembly period, users will be provided with a one-week on-site training by the company. Provide local accommodation and transportation facilities, and provide free venues, teaching materials, equipment, tools, etc. required for training. The company training content is as follows:
The working principle, structure and technical performance of the unit.
Unit assembly and adjustment, unit testing.
Operation of the unit, remote/local operation, manual/automatic operation, daily operation and management, familiar with the structure of each system of the unit.
Routine maintenance and upkeep of the unit, and precautions for operation and maintenance.
Analysis and troubleshooting of common faults, and emergency handling methods.
2) On-site training
During the installation and trial operation of the unit, on-site training will be conducted to teach the principles, structure, operation, maintenance, troubleshooting of common faults and other knowledge of the unit, so as to further become familiar with the various systems of the unit, so that the purchaser can independently and correctly operate the unit. Operation, maintenance and management.
 

Packaging & Shipping

 

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After-sales Service: 12 Month
Warranty: 12 Month
Lubrication Style: Lubricated

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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 role of air compressors in power generation?

Air compressors play a significant role in power generation, supporting various operations and equipment within the industry. Here are some key roles of air compressors in power generation:

1. Combustion Air Supply:

Air compressors are used to supply compressed air for the combustion process in power generation. In fossil fuel power plants, such as coal-fired or natural gas power plants, compressed air is required to deliver a steady flow of air to the burners. The compressed air helps in the efficient combustion of fuel, enhancing the overall performance and energy output of the power plant.

2. Instrumentation and Control:

Air compressors are utilized for instrumentation and control systems in power generation facilities. Compressed air is used to operate pneumatic control valves, actuators, and other pneumatic devices that regulate the flow of steam, water, and gases within the power plant. The reliable and precise control provided by compressed air ensures efficient and safe operation of various processes and equipment.

3. Cooling and Ventilation:

In power generation, air compressors are involved in cooling and ventilation applications. Compressed air is used to drive air-operated cooling fans and blowers, providing adequate airflow for cooling critical components such as generators, transformers, and power electronics. The compressed air also assists in maintaining proper ventilation in control rooms, substations, and other enclosed spaces, helping to dissipate heat and ensure a comfortable working environment.

4. Cleaning and Maintenance:

Air compressors are employed for cleaning and maintenance tasks in power generation facilities. Compressed air is utilized to blow away dust, dirt, and debris from equipment, machinery, and electrical panels. It helps in maintaining the cleanliness and optimal performance of various components, reducing the risk of equipment failure and improving overall reliability.

5. Pneumatic Tools and Equipment:

In power generation plants, air compressors provide the necessary compressed air for operating pneumatic tools and equipment. These tools include impact wrenches, pneumatic drills, grinders, and sandblasting equipment, which are utilized for installation, maintenance, and repair tasks. The high-pressure air generated by compressors enables efficient and reliable operation of these tools, enhancing productivity and reducing manual effort.

6. Nitrogen Generation:

Sometimes, air compressors are used in power generation for nitrogen generation. Compressed air is passed through a nitrogen generator system, which separates nitrogen from other components of air, producing a high-purity nitrogen gas stream. Nitrogen is commonly used in power plant applications, such as purging systems, blanketing in transformers, and generator cooling, due to its inert properties and low moisture content.

7. Start-up and Emergency Systems:

Air compressors are an integral part of start-up and emergency systems in power generation. Compressed air is utilized to power pneumatic starters for gas turbines, providing the initial rotation needed to start the turbine. In emergency situations, compressed air is also used to actuate emergency shutdown valves, safety systems, and fire suppression equipment, ensuring the safe operation and protection of the power plant.

Overall, air compressors contribute to the efficient and reliable operation of power generation facilities, supporting combustion processes, control systems, cooling, cleaning, and various other applications critical to the power generation industry.

air compressor

How does the horsepower of an air compressor affect its capabilities?

The horsepower of an air compressor is a crucial factor that directly impacts its capabilities and performance. Here’s a closer look at how the horsepower rating affects an air compressor:

Power Output:

The horsepower rating of an air compressor indicates its power output or the rate at which it can perform work. Generally, a higher horsepower rating translates to a greater power output, allowing the air compressor to deliver more compressed air per unit of time. This increased power output enables the compressor to operate pneumatic tools and equipment that require higher air pressure or greater airflow.

Air Pressure:

The horsepower of an air compressor is directly related to the air pressure it can generate. Air compressors with higher horsepower ratings have the capacity to produce higher air pressures. This is particularly important when operating tools or machinery that require specific air pressure levels to function optimally. For example, heavy-duty pneumatic tools like jackhammers or impact wrenches may require higher air pressure to deliver the necessary force.

Air Volume:

In addition to air pressure, the horsepower of an air compressor also affects the air volume or airflow it can provide. Higher horsepower compressors can deliver greater volumes of compressed air, measured in cubic feet per minute (CFM). This increased airflow is beneficial when using pneumatic tools that require a continuous supply of compressed air, such as paint sprayers or sandblasters.

Duty Cycle:

The horsepower rating of an air compressor can also influence its duty cycle. The duty cycle refers to the amount of time an air compressor can operate continuously before it needs to rest and cool down. Higher horsepower compressors often have larger and more robust components, allowing them to handle heavier workloads and operate for longer periods without overheating. This is particularly important in demanding applications where continuous and uninterrupted operation is required.

Size and Portability:

It’s worth noting that the horsepower rating can also affect the physical size and portability of an air compressor. Higher horsepower compressors tend to be larger and heavier due to the need for more substantial motors and components to generate the increased power output. This can impact the ease of transportation and maneuverability, especially in portable or mobile applications.

When selecting an air compressor, it is essential to consider the specific requirements of your intended applications. Factors such as desired air pressure, airflow, duty cycle, and portability should be taken into account. It’s important to choose an air compressor with a horsepower rating that aligns with the demands of the tools and equipment you plan to operate, ensuring optimal performance and efficiency.

Consulting the manufacturer’s specifications and guidelines can provide valuable information on how the horsepower rating of an air compressor corresponds to its capabilities and suitability for different tasks.

air compressor

What is the difference between a piston and rotary screw compressor?

Piston compressors and rotary screw compressors are two common types of air compressors with distinct differences in their design and operation. Here’s a detailed explanation of the differences between these two compressor types:

1. Operating Principle:

  • Piston Compressors: Piston compressors, also known as reciprocating compressors, use one or more pistons driven by a crankshaft to compress air. The piston moves up and down within a cylinder, creating a vacuum during the intake stroke and compressing the air during the compression stroke.
  • Rotary Screw Compressors: Rotary screw compressors utilize two intermeshing screws (rotors) to compress air. As the male and female screws rotate, the air is trapped between them and gradually compressed as it moves along the screw threads.

2. Compression Method:

  • Piston Compressors: Piston compressors achieve compression through a positive displacement process. The air is drawn into the cylinder and compressed as the piston moves back and forth. The compression is intermittent, occurring in discrete cycles.
  • Rotary Screw Compressors: Rotary screw compressors also employ a positive displacement method. The compression is continuous as the rotating screws create a continuous flow of air and compress it gradually as it moves along the screw threads.

3. Efficiency:

  • Piston Compressors: Piston compressors are known for their high efficiency at lower flow rates and higher pressures. They are well-suited for applications that require intermittent or variable air demand.
  • Rotary Screw Compressors: Rotary screw compressors are highly efficient for continuous operation and are designed to handle higher flow rates. They are often used in applications with a constant or steady air demand.

4. Noise Level:

  • Piston Compressors: Piston compressors tend to generate more noise during operation due to the reciprocating motion of the pistons and valves.
  • Rotary Screw Compressors: Rotary screw compressors are generally quieter in operation compared to piston compressors. The smooth rotation of the screws contributes to reduced noise levels.

5. Maintenance:

  • Piston Compressors: Piston compressors typically require more frequent maintenance due to the higher number of moving parts, such as pistons, valves, and rings.
  • Rotary Screw Compressors: Rotary screw compressors have fewer moving parts, resulting in lower maintenance requirements. They often have longer service intervals and can operate continuously for extended periods without significant maintenance.

6. Size and Portability:

  • Piston Compressors: Piston compressors are available in both smaller portable models and larger stationary units. Portable piston compressors are commonly used in construction, automotive, and DIY applications.
  • Rotary Screw Compressors: Rotary screw compressors are typically larger and more suitable for stationary installations in industrial and commercial settings. They are less commonly used in portable applications.

These are some of the key differences between piston compressors and rotary screw compressors. The choice between the two depends on factors such as required flow rate, pressure, duty cycle, efficiency, noise level, maintenance needs, and specific application requirements.

China Professional Air-Cooled 25MPa CH4 Piston Natural Gas Booster Compressor for CNG Station   12v air compressorChina Professional Air-Cooled 25MPa CH4 Piston Natural Gas Booster Compressor for CNG Station   12v air compressor
editor by CX 2024-05-15

China Best Sales 2020 Silent Air Cooling Screw Air Compressor for Natural Gas Filling Station with Good quality

Product Description

Product Description

Product Parameters

Technical Data of Direct Drive Electric Motor Screw Air Compressors

Model Working Pressure Capacity Motor Power Driven Method Cooling Method Dimension(mm) Net Weight Air Outlet Pipe Diameter
Psi bar Cfm m3/min kw/hp L W H KGS
SGPM08 102 7 42.4 1.2 7.5/10 Direct Drive Air Cooling
/
Water Cooling
900 670 850 200 1/2”
116 8 38.8 1.1
145 10 33.5 0.95
174 12 28.3 0.8
SGPM11 102 7 58.3 1.65 11/15 1080 750 1571 280 3/4”
116 8 53.0 1.5
145 10 45.9 1.3
174 12 38.8 1.1
SGPM15 102 7 88.3 2.5 15/20 1080 750 1571 300 3/4”
116 8 81.2 2.3
145 10 74.2 2.1
174 12 67.1 1.9
SGPM18 102 7 113.0 3.2 18.5/25 1380 850 1185 430 1”
116 8 105.9 3.0
145 10 95.3 2.7
174 12 84.7 2.4
SGPM22 100 7 134.2 3.8 22/30 1380 850 1185 450 1”
116 8 127.1 3.6
145 10 113.0 3.2
174 12 95.3 2.7
SGPM30 102 7 187.1 5.3 30/40 1380 850 1185 500 1”
116 8 176.6 5.0
145 10 158.9 4.5
174 12 141.2 4.0
SGPM37 102 7 240.1 6.8 37/50 1500 1000 1345 650 11/2″
116 8 218.9 6.2
145 10 197.7 5.6
174 12 176.6 5.0
SGPM45 102 7 261.3 7.4 45/60 1500 1000 1345 680 11/2″
116 8 247.2 7.0
145 10 218.9 6.2
174 12 197.7 5.6
SGPM55 102 7 353.1 10.0 55/75 1800 1250 1670 1150 2″
116 8 339.0 9.6
145 10 300.1 8.5
174 12 268.4 7.6
SGPM75 102 7 473.2 13.4 75/100 1800 1250 1670 1200 2″
116 8 444.9 12.6
145 10 395.5 11.2
174 12 353.1 10.0
SGPM90 102 7 572.0 16.2 90/120 1800 1250 1670 1350 2″
116 8 529.7 15.0
145 10 487.3 13.8
174 12 434.3 12.3
SGPM110 102 7 741.5 21.0 110/150 2300 1470 1840 1800 2 1/2”
116 8 699.1 19.8
145 10 614.4 17.4
174 12 522.6 14.8
SGPM132 102 7 865.1 24.5 132/175 2300 1470 1840 1850 2 1/2”
116 8 819.2 23.2
145 10 723.9 20.5
174 12 614.4 17.4
SGPM160 102 7 1013.4 28.7 160/200 2300 1470 1840 2000 2 1/2”
116 8 974.6 27.6
145 10 868.6 24.6
174 12 759.2 21.5
SGPM185 102 7 1129.9 32.0 185/250 3150 1980 2152 3500 DN85
116 8 1073.4 30.4
145 10 967.5 27.4
174 12 875.7 24.8
SGPM220 102 7 1271.2 36.0 220/300 3150 1980 2152 3800 DN85
116 8 1211.1 34.3
145 10 1066.4 30.2
174 12 978.1 27.7
SGPM250 102 7 1483.0 42.0 250/350 3150 1980 2152 4000 DN85
116 8 1430.1 40.5
145 10 1348.8 38.2
174 12 1218.2 34.5
SGPM315 102 7 1800.8 51.0 315/430 4000 1980 2152 6000 DN110
116 8 1772.6 50.2
145 10 1571.3 44.5
174 12 1412.4 40.0
SGPM355 102 7 2259.8 64.0 355/480 4000 1980 2152 6500 DN110
116 8 2153.9 61.0
145 10 1995.0 56.5
174 12 1730.2 49.0
Motor Protection Class: IP23/IP54/IP55 or as per your required
Voltage: 380V/50Hz/3ph, 380V/60Hz/3ph, 220V/50Hz/3ph, 220V/60Hz/3ph, 440V/50Hz/3ph, 440V/60Hz/3ph, or as per your requests.

FAQ

Q1: What is the rotor speed for the air end?

A1: 2980rmp.

Q2: What’s your lead time?
A2: usually, 5-7 days. (OEM orders: 15days)

Q3: Can you offer water cooled air compressor?
A3: Yes, we can (normally, air cooled type).

Q4: What’s the payment term?
A4: T/T, L/C, Western Union, etc. Also we could accept USD, RMB, and other currency.

Q5: Do you accept customized voltage?
A5: Yes. 380V/50Hz/3ph, 380V/60Hz/3ph, 220V/50Hz/3ph, 220V/60Hz/3ph, 440V/50Hz/3ph, 440V/60Hz/3ph, or as per your requests.

Q6: What is your warranty for air compressor?
A6: One year for the whole air compressor(not including the consumption spare parts) and technical supports can be provided according to your needs.

Q7: Can you accept OEM orders?
A7: Yes, OEM orders are warmly welcome.

Q8: How about your customer service and after-sales service?
A8: 24hrs on-line support, 48hrs problem solved promise.

Q9: Do you have spare parts in stock?
A9: Yes, we do.

Q10: What kind of initial lubrication oil you used in air compressor?
A10: TOTAL 46# mineral oil.

Lubrication Style: Lubricated
Cooling System: Air Cooling
Power Source: AC Power
Cylinder Position: Vertical
Structure Type: Closed Type
Installation Type: Stationary Type
Customization:
Available

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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

How does the horsepower of an air compressor affect its capabilities?

The horsepower of an air compressor is a crucial factor that directly impacts its capabilities and performance. Here’s a closer look at how the horsepower rating affects an air compressor:

Power Output:

The horsepower rating of an air compressor indicates its power output or the rate at which it can perform work. Generally, a higher horsepower rating translates to a greater power output, allowing the air compressor to deliver more compressed air per unit of time. This increased power output enables the compressor to operate pneumatic tools and equipment that require higher air pressure or greater airflow.

Air Pressure:

The horsepower of an air compressor is directly related to the air pressure it can generate. Air compressors with higher horsepower ratings have the capacity to produce higher air pressures. This is particularly important when operating tools or machinery that require specific air pressure levels to function optimally. For example, heavy-duty pneumatic tools like jackhammers or impact wrenches may require higher air pressure to deliver the necessary force.

Air Volume:

In addition to air pressure, the horsepower of an air compressor also affects the air volume or airflow it can provide. Higher horsepower compressors can deliver greater volumes of compressed air, measured in cubic feet per minute (CFM). This increased airflow is beneficial when using pneumatic tools that require a continuous supply of compressed air, such as paint sprayers or sandblasters.

Duty Cycle:

The horsepower rating of an air compressor can also influence its duty cycle. The duty cycle refers to the amount of time an air compressor can operate continuously before it needs to rest and cool down. Higher horsepower compressors often have larger and more robust components, allowing them to handle heavier workloads and operate for longer periods without overheating. This is particularly important in demanding applications where continuous and uninterrupted operation is required.

Size and Portability:

It’s worth noting that the horsepower rating can also affect the physical size and portability of an air compressor. Higher horsepower compressors tend to be larger and heavier due to the need for more substantial motors and components to generate the increased power output. This can impact the ease of transportation and maneuverability, especially in portable or mobile applications.

When selecting an air compressor, it is essential to consider the specific requirements of your intended applications. Factors such as desired air pressure, airflow, duty cycle, and portability should be taken into account. It’s important to choose an air compressor with a horsepower rating that aligns with the demands of the tools and equipment you plan to operate, ensuring optimal performance and efficiency.

Consulting the manufacturer’s specifications and guidelines can provide valuable information on how the horsepower rating of an air compressor corresponds to its capabilities and suitability for different tasks.

air compressor

What are the key components of an air compressor system?

An air compressor system consists of several key components that work together to generate and deliver compressed air. Here are the essential components:

1. Compressor Pump: The compressor pump is the heart of the air compressor system. It draws in ambient air and compresses it to a higher pressure. The pump can be reciprocating (piston-driven) or rotary (screw, vane, or scroll-driven) based on the compressor type.

2. Electric Motor or Engine: The electric motor or engine is responsible for driving the compressor pump. It provides the power necessary to operate the pump and compress the air. The motor or engine’s size and power rating depend on the compressor’s capacity and intended application.

3. Air Intake: The air intake is the opening or inlet through which ambient air enters the compressor system. It is equipped with filters to remove dust, debris, and contaminants from the incoming air, ensuring clean air supply and protecting the compressor components.

4. Compression Chamber: The compression chamber is where the actual compression of air takes place. In reciprocating compressors, it consists of cylinders, pistons, valves, and connecting rods. In rotary compressors, it comprises intermeshing screws, vanes, or scrolls that compress the air as they rotate.

5. Receiver Tank: The receiver tank, also known as an air tank, is a storage vessel that holds the compressed air. It acts as a buffer, allowing for a steady supply of compressed air during peak demand periods and reducing pressure fluctuations. The tank also helps separate moisture from the compressed air, allowing it to condense and be drained out.

6. Pressure Relief Valve: The pressure relief valve is a safety device that protects the compressor system from over-pressurization. It automatically releases excess pressure if it exceeds a predetermined limit, preventing damage to the system and ensuring safe operation.

7. Pressure Switch: The pressure switch is an electrical component that controls the operation of the compressor motor. It monitors the pressure in the system and automatically starts or stops the motor based on pre-set pressure levels. This helps maintain the desired pressure range in the receiver tank.

8. Regulator: The regulator is a device used to control and adjust the output pressure of the compressed air. It allows users to set the desired pressure level for specific applications, ensuring a consistent and safe supply of compressed air.

9. Air Outlet and Distribution System: The air outlet is the point where the compressed air is delivered from the compressor system. It is connected to a distribution system comprising pipes, hoses, fittings, and valves that carry the compressed air to the desired application points or tools.

10. Filters, Dryers, and Lubricators: Depending on the application and air quality requirements, additional components such as filters, dryers, and lubricators may be included in the system. Filters remove contaminants, dryers remove moisture from the compressed air, and lubricators provide lubrication to pneumatic tools and equipment.

These are the key components of an air compressor system. Each component plays a crucial role in the generation, storage, and delivery of compressed air for various industrial, commercial, and personal applications.

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editor by CX 2023-10-26