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Fume Exhaust Blowers

Fume Exhaust Blowers

Product Details:

  • Life Span 8-10 Years
  • Max Pressure 180 mm WG
  • Output Power 1.5 kW
  • Pressure Range 100-180 mm WG
  • Motor Power 2 HP
  • Flow Rate 1700 CFM
  • Power 2 HP
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Fume Exhaust Blowers Product Specifications

  • 1700 CFM
  • 2880 RPM
  • 1.5 kW
  • 100-180 mm WG
  • 2 HP
  • 8-10 Years
  • 800mm x 750mm x 850mm
  • 1700 CFM
  • Fume Exhaust Blowers
  • 180 mm WG
  • 50 Hz
  • Industrial fume exhaust, Laboratories, Chemical plants
  • 120 Kg
  • Grey
  • Below 85 dB
  • FRP (Fibre Reinforced Plastic)
  • 2 HP
  • 150 mm of WG
  • 415 V
  • Electric

Product Description

Fume Exhaust Blowers

Our company deals in the manufacturing and supplying of Fume Exhaust Blowers which is commonly used in various large industries and power plants for the removal of the hot and dangerous burnt gases generated during the burning of the fuels. The air delivery vent is manufactured by using galvanized materials which offers excellent resistance against high temperature and pressure. The electric motor is fixed with a large fan to collect the gas from the processing and fuel burning zones to expel it to the open environment. 

Technical Specification

Material

Stainless Steel

Power

5 - 10 kW

Voltage

220 - 440 V

Motor Power

5 - 10 HP

Phase

Three Phase

Frequency

50 - 60 Hz



Robust Construction for Harsh Environments

Designed with FRP blades and casing, the fume exhaust blower is ideal for settings requiring corrosion resistance, such as chemical plants and research labs. Its floor-mounted design provides stability and easy installation. With IP55-rated protection, the unit ensures reliable operation in challenging ambient temperatures from -10C to 60C, helping to maintain clean and safe air quality in industrial processes.


High-Efficiency, Low-Noise Operation

The backward curved impeller maximizes air flow while maintaining low noise output, making it suitable for environments with stringent acoustic requirements. With a flow rate of 1700 CFM, motor speed of 2880 RPM, and a pressure range of 100-180 mm WG, the blower achieves optimal ventilation performance. Users benefit from energy-efficient operation and reduced maintenance costs over an 810 year life span.

FAQs of Fume Exhaust Blowers:


Q: How does the backward curved impeller enhance the blowers performance?

A: The backward curved impeller improves air flow efficiency and reduces energy consumption. It generates higher pressure at lower noise levels compared to traditional designs, making it ideal for applications that demand consistent ventilation and low acoustic interference.

Q: What are the main applications for this fume exhaust blower?

A: This blower is commonly used in industrial fume exhaust systems, laboratories, and chemical plants. Its robust FRP construction makes it effective against corrosive gases and ideal for environments where air purity and safety are critical.

Q: When is variable fan speed control recommended for usage?

A: Variable fan speed control is suggested when precise regulation of air flow is needed, such as in laboratories or industrial setups where exhaust requirements may change according to operational needs. It enhances adaptability and energy efficiency.

Q: Where can this fume exhaust blower be installed?

A: The blower is designed for floor mounting and can be installed in indoor settings, including manufacturing plants, research facilities, and chemical processing areas where hazardous fumes need to be effectively removed and ventilated.

Q: What is the process for installing and maintaining the blower?

A: Installation involves securing the blower unit to a stable floor surface and connecting it to a compatible electric supply (415 V). Maintenance typically includes periodic cleaning of the blades and casing, checking the motor and electrical connections, and ensuring variable speed controls are functioning if equipped.

Q: What benefits does FRP blade material provide?

A: FRP (Fibre Reinforced Plastic) offers excellent durability and resistance to chemicals, moisture, and wear. This results in a longer operational life, reduced maintenance frequency, and safe handling of corrosive exhausts in demanding industrial environments.

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