China wholesaler China Water Ring Vacuum Pump for Chemical, Chemical Fertilizer, Paper and Pharmaceutical Industry 2BV5 Series manufacturer

Product Description

Catalogue sheet 2BV5 series.
          Liquid Ring  Vacuum pump

Introducing the 2BV5 Series China Pumps Liquid Water Ring Vacuum Pump – a top-of-the-line product designed to meet all your vacuum pumping needs. This high-quality vacuum pump is perfect for a wide range of applications, from industrial to commercial use.

With its advanced technology and superior performance, the 2be1 202 Series China Pumps Liquid Water Ring Vacuum Pump is the ideal choice for those seeking a reliable and efficient vacuum pump. Its powerful motor ensures maximum suction power, while its durable construction guarantees long-lasting performance.

This vacuum pump is designed to handle a variety of liquids and gases, making it a versatile tool for any industry. Its compact size and easy-to-use design make it a popular choice for those seeking a reliable and efficient vacuum pump.

So if you’re looking for a top-quality vacuum pump that can handle all your pumping needs, look no further than the 2be1 202 Series China Pumps Liquid Water Ring Vacuum Pump. With its superior performance and advanced technology, this vacuum pump is sure to exceed your expectations.

Product Description
ELMO-F vacuum pumps are designed by Siemens. The pumps are suitable for evacuating gases and wet vapoure down to inlet pressure of 33 mbar (97% vacuum).
All these vacuum pumps are supplied with built-in cavitation protection. For long-term operation below 80mbar abs. the cavitation protection should be connected for protecting the pump. An inlet pressure of 10 mbar abs. can be achieved by connecting a gas ejector(see accessories). The gas ejector can be mounted directly CHINAMFG the vacuum pump.
The 2BV5 ELMO-F pumps are especially space-saving units in monoblock design(degree of protection IP55).
They are available in cast iron ( fitted with Stainless steel impeller and portplate) and in chrome-nickel steel (see table).

 

Table 1
Material of construction for 2BV5
MODEL 2BV5(2AV1) TYPE VACUUM/COMPRESSOR PRODUCT CODE 110-161
MATERIALS AND WEIGHTS
COMPONENTS ALL IRON(SS FIT) ST. STEEL OPTIONAL  
BODY/LOBE GB 9439 HT200/ASTM A48 CLASS30B ASTM A351 CF8 CF8M,CF3,CF3M,2205  
HEAD GB 9439 HT200/ASTM A48 CLASS30B ASTM A351 CF8 CF8M,CF3,CF3M,2205  
SHAFT GB/T 1220 20Cr13/ASTM A276 420 GB/T1220 S30408 /A276 304 ASTM A276 316L  
ROTOR ASTM A351 CF-8 ASTM A351 CF8 CF8M,CF3,CF3M,2205  
CONE/PORT PLATE ASTM A351 CF-8 ASTM A351 CF8 CF8M,CF3,CF3M,2205  
SHAFT SEALING Mechanical seal Mechanical seal    
GASKETS Rubber sealant Loctite 515/510    
CONSTRUCTION DETAILS
PORT TYPE (NO. OF STAGES) PLATE (1) ROTOR BALANCE TYPE DYNAMIC
ROTATION VIEWED @ D.E. CLOCKWISE BALANCE TOLERANCE ISO1940 G6.3
                         
Table 2 Pump data
Performance Data
/Pump Size Capacity Suction Pressure Speed Motor Data Drive Weight P/N
m³/h mbar.A RPM Power Frequency Voltage kg
2BV5 110 40- 100 33 – 1000 1450/1750 4KW 50Hz 380V-△/660V-Y Monoblock 97 2AV2 110-0H.00/0K.00
2BV5 111 60 – 140 33 – 1000 1450/1750 5.5KW 50Hz 380V-△/660V-Y Monoblock 113 2AV2 111-0K.00
2BV5 121 80 – 180 33 – 1000 1450/1750 7.5KW 50Hz 380V-△/660V-Y Monoblock 144 2AV2 121-0K.00
2BV5 131 110 – 240 33 – 1000 1450/1750 11KW 50Hz 380V-△/660V-Y Monoblock 194 2AV2 131-0K.00
2BV5 161 150 – 300 33 – 1000 980/11150 12+SF1.25 50Hz 380V-△/660V-Y Monoblock 340 2AV2 161-0K.02

Characteristic Curves

 

Selection and ordering data accessories 2BV5
    material For ELMO-F type   Order No.   Weight Appr.
KG
   
 

 

 
Lime transformer
prevents lime scale build up in
pumps, pipes, tanks, The structure
of the lime crystals in changed on a physical basis with the help of
permanent magnets so that there is
no lime scale build up
Brass, chromed 2BV2…
2BV5 110/111
2BV6 110/111

2BV5 121/131/161
2BV6 121/131/161

2BX1 115

2BX1 116

1.4

1.8

 
Discharge liquid separator
including recirculation pipe
cavitation protection pipe,
gaskets and screw
Plastic/
Steel
Chrome-nickel steel/
Chrome-nickel steel
2BV5 11.-OK…
2BV5 12./13.-OK…
2BV5 16.-OK

2BV.11.-OH…
2BV.12./13.-OH…
2BV.16.-OH…

2BX1 100
2BX1 101
2BX1 106

2BX1 102
2BX1 103
2BX1 107

7
9
12

17
19.5
38

  Non-return valve
(betweent flanges)
for vertical mounting
Casing: Steel
Cup:Chrome-nickel steel
Gasket:Teflon
2BV5 11.-OK…
2BV5 12./13.-OK…
2BV5 16.-OK
2BY6 905-5BX08
2BY6 906-5BX08
2BY6 908-5BX08
1.2
17
2.3
Casing: Steel
Cup:Chrome-nickel steel
Gasket:Teflon
2BV.11.-OH…
2BV.12./13.-OH…
2BV.16.-OH…
2BY6 905-5HX08
2BY6 906-5HX08
2BY6 908-5HX08
1.2
17
2.3
 
Mounting accessory
for direct mounting of the non-return valve CHINAMFG the pump,
consisting of 1 mating flangs with
weld-neck in acc. With DIN 2642,
PN 10, gaskets, fixing screws.

Consisting of 1 mating flange with
weld-neck in acc. with DIN 2642,
PN 10, gaskets, fixing screws

Flange: Cast iron
Weld-neck:
Chrome-nickel steel

Steel

2BV.110-0
2BV.111-0
2BV.121-0
2BV.131-0
2BV.161-0

2BV.110-OK
2BV.111-OK
2BV.121-OK
2BV.131-OK
2BV.161-OK

2BX1 081
2BX1 081
2BX1 082
2BX1 082
2BX1 083

2BX1 090
2BX1 090
2BX1 091
2BX1 091
2BX1 092

3
3
3.5
3.5
4

3
3
3.5
3.5
4

  Mating flange
1 loose flange with weld-neck,
in acc. With DIN 2642, PN 10,
gasket and fixing screws

Threaded flange
1 loose threaded flange
in acc. With DIN2566, PN 16,
gasket and fixing screws

Flange:Cast iron
Weld-neck:
Chrome-nickel steel

Steel

2BV.110-0
2BV.111-0
2BV.121-0
2BV.131-0
2BV.161-0

2BV.110-OK
2BV.111-OK
2BV.121-OK
2BV.131-OK
2BV.161-OK

2BX1 093
2BX1 093
2BX1 094
2BX1 094
2BX1 095

2BX1 096
2BX1 096
2BX1 097
2BX1 097
2BX1 098

3
3
3.5
3.5
4

3
3
3.5
3.5
4

   
 
Gas ejector (characteristic curves as above)
Mains frequency 50 Hz
Curve No.

101 V+301 V
111 V+311 V
121 V+321 V
131 V+331 V
161 V+361 V

101 V+301 V
111 V+311 V
121 V+321 V
131 V+331 V
161 V+361 V

Head; Diffusor; Jet

Ductile cast iron;ductile cast iron; Chrome-nickel steel

Chrome-nickel steel;Chrome-nickel steel;chrome-nickel steel

2BV5 110-OK…

2BV5 111-OK…
2BV5 121-OK…
2BV5 131-OK…
2BV5 161-OK…

2BV. 110-OH…
2BV. 111-OH…
2BV. 121-OH…
2BV. 131-OH…
2BV. 161-OH…

2BP5 110-1KC

2BP5 111-1KC
2BP5 121-1KC
2BP5 131-1KC
2BP5 161-1KC
2BP5 110-1HC
2BP5 111-1HC
2BP5 121-1HC
2BP5 131-1HC
2BP5 161-1HC

15

19

25

15

19

25

Mains frequency 60 Hz
Curve No.

103 V+303 V
113 V+313 V
123 V+323 V
133 V+333 V
163 V+363 V

103 V+303 V
113 V+313 V
123 V+323 V
133 V+333 V
163 V+363 V

Head; Diffusor; Jet

Ductile cast iron;ductile cast iron; Chrome-nickel steel

Chrome-nickel steel;Chrome-nickel steel;chrome-nickel steel

 
2BV5 110-OK…

2BV5 111-OK…
2BV5 121-OK…
2BV5 131-OK…
2BV5 161-OK…

2BV. 110-OH…
2BV. 111-OH…
2BV. 121-OH…
2BV. 131-OH…
2BV. 161-OH…

2BP5 110-1KF
2BP5 111-1KF
2BP5 121-1KF
2BP5 131-1KF
2BP5 161-1KF

2BP5 110-1HF
2BP5 111-1HF
2BP5 121-1HF
2BP5 131-1HF
2BP5 161-1HF

15

19

25

15

19

25

After-sales Service: Online Support
Warranty: 12months
Oil or Not: Oil Free
Structure: Rotary Vacuum Pump
Exhauster Method: Positive Displacement Pump
Vacuum Degree: Low Vacuum
Customization:
Available

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vacuum pump

Can Vacuum Pumps Be Used in the Automotive Industry?

Yes, vacuum pumps are widely used in the automotive industry for various applications. Here’s a detailed explanation:

The automotive industry relies on vacuum pumps for several critical functions and systems within vehicles. Vacuum pumps play a crucial role in enhancing performance, improving fuel efficiency, and enabling the operation of various automotive systems. Here are some key applications of vacuum pumps in the automotive industry:

1. Brake Systems: Vacuum pumps are commonly used in vacuum-assisted brake systems, also known as power brakes. These systems utilize vacuum pressure to amplify the force applied by the driver to the brake pedal, making braking more efficient and responsive. Vacuum pumps help generate the required vacuum for power brake assistance, ensuring reliable and consistent braking performance.

2. Emission Control Systems: Vacuum pumps are integral components of emission control systems in vehicles. They assist in operating components such as the Exhaust Gas Recirculation (EGR) valve and the Evaporative Emission Control (EVAP) system. Vacuum pumps help create the necessary vacuum conditions for proper functioning of these systems, reducing harmful emissions and improving overall environmental performance.

3. HVAC Systems: Heating, Ventilation, and Air Conditioning (HVAC) systems in vehicles often utilize vacuum pumps for various functions. Vacuum pumps help control the vacuum-operated actuators that regulate the direction, temperature, and airflow of the HVAC system. They ensure efficient operation and precise control of the vehicle’s interior climate control system.

4. Turbocharger and Supercharger Systems: In performance-oriented vehicles, turbocharger and supercharger systems are used to increase engine power and efficiency. Vacuum pumps play a role in these systems by providing vacuum pressure for actuating wastegates, blow-off valves, and other control mechanisms. These components help regulate the boost pressure and ensure optimal performance of the forced induction system.

5. Fuel Delivery Systems: Vacuum pumps are employed in certain types of fuel delivery systems, such as mechanical fuel pumps. These pumps utilize vacuum pressure to draw fuel from the fuel tank and deliver it to the engine. While mechanical fuel pumps are less commonly used in modern vehicles, vacuum pumps are still found in some specialized applications.

6. Engine Management Systems: Vacuum pumps are utilized in engine management systems for various functions. They assist in operating components such as vacuum-operated actuators, vacuum reservoirs, and vacuum sensors. These components play a role in engine performance, emissions control, and overall system functionality.

7. Fluid Control Systems: Vacuum pumps are used in fluid control systems within vehicles, such as power steering systems. Vacuum-assisted power steering systems utilize vacuum pressure to assist the driver in steering, reducing the effort required. Vacuum pumps provide the necessary vacuum for power steering assistance, enhancing maneuverability and driver comfort.

8. Diagnostic and Testing Equipment: Vacuum pumps are also utilized in automotive diagnostic and testing equipment. These pumps create vacuum conditions necessary for testing and diagnosing various vehicle systems, such as intake manifold leaks, brake system integrity, and vacuum-operated components.

It’s important to note that different types of vacuum pumps may be used depending on the specific automotive application. Common vacuum pump technologies in the automotive industry include diaphragm pumps, rotary vane pumps, and electric vacuum pumps.

In summary, vacuum pumps have numerous applications in the automotive industry, ranging from brake systems and emission control to HVAC systems and engine management. They contribute to improved safety, fuel efficiency, environmental performance, and overall vehicle functionality.

vacuum pump

Can Vacuum Pumps Be Used for Soil and Groundwater Remediation?

Vacuum pumps are indeed widely used for soil and groundwater remediation. Here’s a detailed explanation:

Soil and groundwater remediation refers to the process of removing contaminants from the soil and groundwater to restore environmental quality and protect human health. Vacuum pumps play a crucial role in various remediation techniques by facilitating the extraction and treatment of contaminated media. Some of the common applications of vacuum pumps in soil and groundwater remediation include:

1. Soil Vapor Extraction (SVE): Soil vapor extraction is a widely used remediation technique for volatile contaminants present in the subsurface. It involves the extraction of vapors from the soil by applying a vacuum to the subsurface through wells or trenches. Vacuum pumps create a pressure gradient that induces the movement of vapors towards the extraction points. The extracted vapors are then treated to remove or destroy the contaminants. Vacuum pumps play a vital role in SVE by maintaining the necessary negative pressure to enhance the volatilization and extraction of contaminants from the soil.

2. Dual-Phase Extraction (DPE): Dual-phase extraction is a remediation method used for the simultaneous extraction of both liquids (such as groundwater) and vapors (such as volatile organic compounds) from the subsurface. Vacuum pumps are utilized to create a vacuum in extraction wells or points, drawing out both the liquid and vapor phases. The extracted groundwater and vapors are then separated and treated accordingly. Vacuum pumps are essential in DPE systems for efficient and controlled extraction of both liquid and vapor-phase contaminants.

3. Groundwater Pumping and Treatment: Vacuum pumps are also employed in groundwater remediation through the process of pumping and treatment. They are used to extract contaminated groundwater from wells or recovery trenches. By creating a vacuum or negative pressure, vacuum pumps facilitate the flow of groundwater towards the extraction points. The extracted groundwater is then treated to remove or neutralize the contaminants before being discharged or re-injected into the ground. Vacuum pumps play a critical role in maintaining the required flow rates and hydraulic gradients for effective groundwater extraction and treatment.

4. Air Sparging: Air sparging is a remediation technique used to treat groundwater and soil contaminated with volatile organic compounds (VOCs). It involves the injection of air or oxygen into the subsurface to enhance the volatilization of contaminants. Vacuum pumps are utilized in air sparging systems to create a vacuum or negative pressure zone in wells or points surrounding the contaminated area. This induces the movement of air and oxygen through the soil, facilitating the release and volatilization of VOCs. Vacuum pumps are essential in air sparging by maintaining the necessary negative pressure gradient for effective contaminant removal.

5. Vacuum-Enhanced Recovery: Vacuum-enhanced recovery, also known as vacuum-enhanced extraction, is a remediation technique used to recover non-aqueous phase liquids (NAPLs) or dense non-aqueous phase liquids (DNAPLs) from the subsurface. Vacuum pumps are employed to create a vacuum or negative pressure gradient in recovery wells or trenches. This encourages the movement and extraction of NAPLs or DNAPLs towards the recovery points. Vacuum pumps facilitate the efficient recovery of these dense contaminants, which may not be easily recoverable using traditional pumping methods.

It’s important to note that different types of vacuum pumps, such as rotary vane pumps, liquid ring pumps, or air-cooled pumps, may be used in soil and groundwater remediation depending on the specific requirements of the remediation technique and the nature of the contaminants.

In summary, vacuum pumps play a vital role in various soil and groundwater remediation techniques, including soil vapor extraction, dual-phase extraction, groundwater pumping and treatment, air sparging, and vacuum-enhanced recovery. By creating and maintaining the necessary pressure differentials, vacuum pumps enable the efficient extraction, treatment, and removal of contaminants, contributing to the restoration of soil and groundwater quality.

vacuum pump

What Industries Commonly Rely on Vacuum Pump Technology?

Vacuum pump technology finds applications in various industries where creating and controlling vacuum or low-pressure environments is crucial. Here’s a detailed explanation:

1. Manufacturing and Production: Vacuum pumps are extensively used in manufacturing and production processes across multiple industries. They are employed for tasks such as vacuum molding, vacuum packaging, vacuum degassing, vacuum drying, and vacuum distillation. Industries like automotive, aerospace, electronics, pharmaceuticals, and food processing rely on vacuum pump technology to achieve precise and controlled manufacturing conditions.

2. Chemical and Pharmaceutical: The chemical and pharmaceutical industries heavily rely on vacuum pumps for numerous applications. These include solvent recovery, vacuum filtration, vacuum drying, distillation, crystallization, and evaporation. Vacuum pumps enable these industries to carry out critical processes under reduced pressure, ensuring efficient separation, purification, and synthesis of various chemical compounds and pharmaceutical products.

3. Semiconductor and Electronics: The semiconductor and electronics industries extensively use vacuum pumps for manufacturing microchips, electronic components, and electronic devices. Vacuum pumps are crucial in processes such as physical vapor deposition (PVD), chemical vapor deposition (CVD), etching, ion implantation, and sputtering. These processes require controlled vacuum conditions to ensure precise deposition, surface modification, and contamination-free manufacturing.

4. Research and Development: Vacuum pump technology is integral to research and development activities across scientific disciplines. It supports experiments and investigations in fields such as physics, chemistry, materials science, biology, and environmental science. Vacuum pumps facilitate processes like freeze drying, vacuum distillation, vacuum evaporation, vacuum spectroscopy, and creating controlled atmospheric conditions for studying various phenomena.

5. Food and Beverage: The food and beverage industry relies on vacuum pumps for packaging and preservation purposes. Vacuum sealing is used to extend the shelf life of food products by removing air and creating a vacuum-sealed environment that inhibits spoilage and maintains freshness. Vacuum pumps are also used in processes like freeze drying, vacuum concentration, and vacuum cooling.

6. Oil and Gas: In the oil and gas industry, vacuum pumps play a role in various applications. They are used for crude oil vacuum distillation, vacuum drying, vapor recovery, gas compression, and gas stripping processes. Vacuum pumps help maintain optimal conditions during oil refining, gas processing, and petrochemical manufacturing.

7. Environmental and Waste Management: Vacuum pumps are employed in environmental and waste management applications. They are used for tasks such as soil vapor extraction, groundwater remediation, landfill gas recovery, and wastewater treatment. Vacuum pumps facilitate the removal and containment of gases, vapors, and pollutants, contributing to environmental protection and sustainable waste management.

8. Medical and Healthcare: The medical and healthcare sectors utilize vacuum pumps for various purposes. They are used in medical equipment such as vacuum-assisted wound therapy devices, vacuum-based laboratory analyzers, and vacuum suction systems in hospitals and clinics. Vacuum pumps are also used in medical research, pharmaceutical production, and medical device manufacturing.

9. Power Generation: Vacuum pumps play a role in power generation industries, including nuclear power plants and thermal power plants. They are used for steam condensation, turbine blade cooling, vacuum drying during transformer manufacturing, and vacuum systems for testing and maintenance of power plant equipment.

10. HVAC and Refrigeration: The HVAC (Heating, Ventilation, and Air Conditioning) and refrigeration industries rely on vacuum pumps for system installation, maintenance, and repair. Vacuum pumps are used to evacuate air and moisture from refrigerant lines and HVAC systems, ensuring optimal system performance and efficiency.

These are just a few examples of industries that commonly rely on vacuum pump technology. The versatility and wide-ranging applications of vacuum pumps make them indispensable tools across numerous sectors, enabling precise control over vacuum conditions, efficient manufacturing processes, and scientific investigations.

China wholesaler China Water Ring Vacuum Pump for Chemical, Chemical Fertilizer, Paper and Pharmaceutical Industry 2BV5 Series   manufacturer China wholesaler China Water Ring Vacuum Pump for Chemical, Chemical Fertilizer, Paper and Pharmaceutical Industry 2BV5 Series   manufacturer
editor by CX 2023-11-27