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New Dehydration 0.001Torr Three Lobe Economic Booster System

New Dehydration 0.001Torr Three Lobe Economic Booster System
New Dehydration 0.001Torr Three Lobe Economic Booster System
New Dehydration 0.001Torr Three Lobe Economic Booster System
New Dehydration 0.001Torr Three Lobe Economic Booster System
New Dehydration 0.001Torr Three Lobe Economic Booster System
New Dehydration 0.001Torr Three Lobe Economic Booster System
New Dehydration 0.001Torr Three Lobe Economic Booster System

New Dehydration 0.001Torr Three Lobe Economic Booster System Specification

  • Max Suction
  • 0.001 Torr
  • Flow Rate
  • Up to 1600 m3/h
  • Mounting Type
  • Skid Mounted/Base Plate
  • Control System
  • PLC/Manual
  • Theory
  • Three Lobe Booster Principle, Vacuum Pump (Three Lobe Roots Booster)
  • Working Temperature
  • -10C to 80C
  • Head Size
  • Medium/Heavy Duty
  • Features
  • Energy Efficient, Compact Design, Low Maintenance, High Ultimate Vacuum
  • Fuel Tank Capacity
  • N/A (Electric powered)
  • Voltage
  • 380V/415V, 3 Phase, 50/60Hz
  • Caliber
  • DN50-DN150
  • Noise Level
  • 80 dB(A)
  • Speed
  • Up to 3450 rpm
  • Discharge Pressure
  • up to 1 bar
  • Inlet/Outlet
  • Customizable Flange or Threaded
  • Frequency
  • 50/60 Hz
  • Material
  • Cast Iron/Stainless Steel
  • Structure
  • Three Lobe Roots Blower Assembly, Horizontal, Three-Lobe Roots
  • Power
  • 3 kW-45 kW, 7.5~30 kW
  • Standard
  • ISO/CE Certified
  • Fuel Type
  • Electric, Electric
  • Pressure
  • Ultra Low Pressure/Vacuum, Up to 0.12 MPa
  • Usage
  • Industrial Dehydration - Vacuum Application, Industrial/Vacuum Dehydration
  • Application
  • Dehydration, Vacuum Drying, Pharma Processing, Food Processing, Chemical Industries, Dehydration, Distillation, Vacuum Packing
  • Suction Type
  • Vacuum Suction
  • Seals Type
  • Oil-Sealed/Mechanical
  • Priming
  • Self Priming
  • Pump Type
  • Economic Three Lobe Booster, Roots Booster Pump
  • Capacity
  • Variable, as per model
  • Drive Type
  • Direct or Belt Driven
  • Operation Mode
  • Continuous
  • Protection Grade
  • IP54/IP55
  • Weight
  • Varies with model (Approx. 600-1800 kg)
  • Lubrication
  • Oil-lubricated Bearings
  • Cooling Method
  • Air or Water cooling (optional)
  • Surface Treatment
  • Anti-corrosive Coating
  • Insulation Class
  • F or H
  • Vacuum Level
  • 0.001Torr achievable
 

New Dehydration 0.001Torr Three Lobe Economic Booster System Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Main Domestic Market
  • Gujarat
 

About New Dehydration 0.001Torr Three Lobe Economic Booster System

This innovative dehydration system features a three-lobe economic booster, engineered for superior vacuum performance. Achieving an impressive ultimate vacuum of 0.001 Torr, it's ideal for applications demanding extremely low pressures. The "three-lobe" design signifies a robust and efficient rotary lobe pump, often used as a booster in vacuum systems to enhance pumping speed and reach deeper vacuum levels. Its "economic" aspect suggests a cost-effective solution, balancing high performance with operational efficiency. This system is perfect for industrial dehydration processes where rapid and thorough moisture removal is critical, offering a powerful yet economical approach to achieving ultra-low vacuum environments.

Advanced Vacuum Booster Technology

Relying on the trusted three lobe roots booster principle, this system delivers remarkable vacuum performance essential for sensitive industrial processes. With options for direct or belt-driven operation, it meets the needs of both medium and heavy-duty applications, ensuring optimal system flexibility.


Versatile Cooling and Customizable Design

The system features optional air or water cooling, allowing users to tailor operation to their environment and process demands. Custom inlet/outlet flanges, media selection, and a choice of anti-corrosive coatings make it adaptable to various installations and chemical exposures.


Energy Efficiency and Low Maintenance

With energy-efficient operation, oil-lubricated bearings, and robust construction, the booster offers extended service intervals and minimal wear. Its compact, skid-mounted design ensures easy installation and integration into existing PLC or manual control systems.

FAQ's of New Dehydration 0.001Torr Three Lobe Economic Booster System:


Q: How does the three lobe booster system achieve ultra-low vacuum levels?

A: The system utilizes a three lobe roots booster mechanism, which efficiently increases gas flow while reducing pressure, enabling vacuum levels as low as 0.001 Torr-suitable for demanding dehydration and drying processes.

Q: What are the main benefits of using this booster pump in industrial dehydration?

A: Key advantages include rapid moisture removal, energy efficiency, low maintenance requirements, high ultimate vacuum for quality end-products, and robust anti-corrosive protection for operation in harsh industrial settings.

Q: When is it best to choose air cooling versus water cooling for this system?

A: Air cooling is recommended where water availability is limited or ambient temperatures are moderate. Water cooling provides enhanced thermal regulation, ideal for high-duty cycles or higher environmental temperatures, ensuring continuous optimal performance.

Q: Where can this booster system be installed and integrated?

A: Designed for versatility, it can be skid-mounted or base plate installed, fitting seamlessly into vacuum drying, pharmaceutical, chemical, and food-industry production lines. Its IP54/IP55 protection grade supports deployment in industrial environments.

Q: What is the process for customizing inlets, outlets, and mounting for specific applications?

A: Upon assessing process requirements, flange or threaded connections, caliber sizes (DN50-DN150), and mounting configurations are tailored at manufacturing stage. Coordination with the supplier ensures the booster fits your existing setup.

Q: How is operation and control managed for the booster system?

A: Operation is managed via either PLC-based automation for sophisticated process integration or through manual controls for straightforward use, allowing flexibility in both new and retrofitted systems.

Q: What kind of maintenance is required and what are typical service intervals?

A: Periodic checks for oil-lubricated bearings and seals ensure reliable operation. Thanks to robust construction and efficient design, maintenance intervals are extended, reducing total operating costs and minimizing downtime.

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