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3100m³/h V-bank Combined activated carbon filter

Reference Price:US$from $10

Min. Order:1 unit

Short Description:

The 3100 m³/h V-bank combined activated carbon filter is engineered for high-efficiency air purification, capable of handling large volumes of air with a capacity of 3100 cubic meters per hour.

  • frame: galvanized frame
  • filter media: High temperature resistant ultrafine glass fiber filter paper
  • sealing glue: PU two-component polyurethane AB adhesive
  • divider: 120g/㎡ adhesive board paper
  • protective netting: Stainless Steel Square Wire Mesh
  • filtration efficiency: F8
  • Maximum operating temperature: 80℃
  • Maximum operating humidity: 80%
  • accreditation: ANSI Z9.5 ASHRAE 110 ASTM E84 CAN/CSA C22.2 NFPA 45 SEFA 1 UL
  • Applicable area: USA Europe Malaysia Canada Middle East Indonesia
  • customs code: 84213990

Cleanroom

3100m³/h V-bank Combined activated carbon filter

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Summary

Cleanroom

3100m³/h V-bank Combined activated carbon filter

Choose your installation & validation options below

Validation

Installation & Validation

Choose your upgrade options

Product Description

The 3100 m³/h V-bank combined activated carbon filter is engineered for high-efficiency air purification, capable of handling large volumes of air with a capacity of 3100 cubic meters per hour. Its innovative V-bank design maximizes the surface area of the activated carbon, enhancing the adsorption of pollutants and odors. This filter is ideal for industrial and commercial applications, ensuring improved indoor air quality and compliance with stringent environmental standards.

Design Features

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01

High Filtration Efficiency

Effectively removes odors, gases, and VOCs from the air.
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02

V-Bank Design

Maximizes surface area for improved air filtration performance.

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03

Durable Construction

Built to last with high-quality materials for long-term use.

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04

Low Pressure Drop

Ensures efficient airflow without significant loss of pressure

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Material composition

Product dimensions parameters

Material Parameters

Filter Media Coal granular activated carbon, coconut shell crushed carbon
Sealant PU two-component polyurethane AB adhesive
Frames Plastic frame, aluminum frame, galvanized frame, stainless steel frame
Protective Mesh Plastic spraying diamond mesh
Sealant EVA neoprene
Odor removal rate 95%
Maximum temperature 80℃
Maximum humidity 80%
Filter Media Coal granular activated carbon, coconut shell crushed carbon
Sealant PU two-component polyurethane AB adhesive
Frames Plastic frame, aluminum frame, galvanized frame, stainless steel frame
Protective Mesh Plastic spraying diamond mesh
Sealant EVA neoprene
Odor removal rate 95%
Maximum temperature 80℃
Maximum humidity 80%

Technical Parameters

Size(mm)(W*H*D) Activated Carbon Net Content(Kg) Odor removal rate(%) Frame Material Number of compartments and. number of surfaces resistances air flow(M³/h)
592*287*292 12.3 ≥95 ABS plastic Four compartments, eight wind surfaces <200 1550
592*592*292 27.1 3500
592*490*292 22.2 2800
592*287*292 13.8 Galvanized frame/aluminum frame/stainless steel frame Four compartments, eight wind surfaces 1800
592*592*292 28.9 3700
592*490*292 23.9 3100
592*287*292 17.3 Five compartments, Ten wind surfaces 2250
592*592*292 36.1 4650
592*490*292 29.8 3850
Size(mm)(W*H*D) Activated Carbon Net Content(Kg) Odor removal rate(%) Frame Material Number of compartments and. number of surfaces resistances air flow(M³/h)
592*287*292 12.3 ≥95 ABS plastic Four compartments, eight wind surfaces <200 1550
592*592*292 27.1 3500
592*490*292 22.2 2800
592*287*292 13.8 Galvanized frame/aluminum frame/stainless steel frame Four compartments, eight wind surfaces 1800
592*592*292 28.9 3700
592*490*292 23.9 3100
592*287*292 17.3 Five compartments, Ten wind surfaces 2250
592*592*292 36.1 4650
592*490*292 29.8 3850

FAQ

1. Can V-bank filters be reused or cleaned?

V-bank filters are generally not designed for reuse or cleaning due to the nature of the activated carbon media, which can become saturated with pollutants over time. Attempting to clean them may reduce their effectiveness and could potentially release trapped contaminants back into the air. It is recommended to replace the filters regularly to ensure optimal performance.


2. What is the best way to install a V-bank activated carbon filter?

The best way to install a V-bank activated carbon filter involves the following steps:

  • Ensure the correct size of the filter matches the housing dimensions.

  • Turn off the ventilation system before installation.

  • Insert the filter into the designated slot, ensuring it fits securely.

  • Seal any gaps to prevent air bypass.

  • Turn the system back on and check for proper airflow.

Proper installation is crucial for maximizing the filter's efficiency and lifespan.


3. Are V-bank filters suitable for use in clean rooms?

Yes, V-bank filters are suitable for use in clean rooms, as they effectively trap airborne contaminants and maintain stringent air quality standards. Their design minimizes pressure drop while maximizing filtration efficiency, making them ideal for environments where cleanliness is paramount. Users can trust Deiiang™ products, designed by Deiiang Jason.peng and tested by Deiiang joebo.Wang, to deliver reliable performance.


4. Can V-bank filters be used in a commercial kitchen?

V-bank filters can indeed be utilized in commercial kitchens, where they help eliminate odors and improve ventilation. Their activated carbon media is effective at adsorbing grease and food odors, contributing to a more pleasant working environment. Regular maintenance and replacements are essential to maintain their effectiveness in such demanding conditions.


5. What are the maintenance requirements for a V-bank filter?

Maintenance for a V-bank filter includes regular inspections and timely replacements. Users should check for saturation indicators and replace the filter every 6 to 12 months, depending on usage and air quality conditions. Keeping the surrounding areas clean and ensuring proper installation will help prolong the filter's lifespan and efficiency.


6. Can V-bank filters be used to remove kitchen smells?

Yes, V-bank filters are effective in removing kitchen smells due to their activated carbon composition, which adsorbs odors and volatile organic compounds. They are particularly useful in environments where cooking odors can linger, such as restaurants and commercial kitchens. For optimal results, regular maintenance and timely replacement are necessary.


7. How does a V-bank combined activated carbon filter work?

A V-bank combined activated carbon filter works by using layers of activated carbon arranged in a V-shape to maximize surface area. As air passes through, contaminants are adsorbed onto the carbon surfaces, effectively removing impurities and odors from the air. This design enhances the filter’s efficiency and performance in air purification applications.


8. How do V-bank filters improve air quality?

V-bank filters improve air quality by efficiently capturing airborne pollutants and odors, thereby reducing indoor air contamination. Their design allows for high airflow while maintaining low pressure drop, ensuring that clean air circulates effectively. This is essential for maintaining a healthy environment in both residential and commercial settings.


9. What are the benefits of using a V-bank activated carbon filter in HVAC systems?

Using a V-bank activated carbon filter in HVAC systems offers several benefits, including:

  • Enhanced removal of odors and harmful gases.

  • Improved overall indoor air quality.

  • Increased energy efficiency due to reduced pressure drop.

  • Longer lifespan compared to traditional filters.

These advantages make them a valuable addition to any HVAC system, ensuring cleaner and healthier air circulation.


10. How does the V-bank design increase filter efficiency?

The V-bank design increases filter efficiency by optimizing the flow of air through the filter media. The V-shaped arrangement creates more surface area for adsorption, allowing for greater pollutant capture without increasing resistance. This results in effective filtration with minimal energy consumption, which is particularly beneficial in high-demand applications.

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