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1700m³/h Medium Efficiency Chemical Fiber Bag Filter,F5

Reference Price:US$from $5

Min. Order:1 unit

Short Description:

The 1700m³/h Medium Efficiency Chemical Fiber Bag Filter, F5 is designed for effective air filtration in industrial and commercial settings.

  • frame: galvanized frame
  • filter media: aluminum mesh
  • sealing glue: PU two-component polyurethane AB adhesive
  • divider: 120g/㎡ adhesive board paper
  • protective netting: Sprayed Diamond Wire Mesh
  • filtration efficiency: F5
  • Maximum operating temperature: 80℃
  • Maximum operating humidity: 100%
  • 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

1700m³/h Medium Efficiency Chemical Fiber Bag Filter,F5

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Summary

Cleanroom

1700m³/h Medium Efficiency Chemical Fiber Bag Filter,F5

Choose your installation & validation options below

Validation

Installation & Validation

Choose your upgrade options

Product Description

The 1700m³/h Medium Efficiency Chemical Fiber Bag Filter, F5 is designed for effective air filtration in industrial and commercial settings. With an airflow capacity of 1700m³/h, it efficiently captures moderate-sized particles, ensuring improved air quality. This F5-rated filter is made from high-quality chemical fiber materials, offering durability and long-lasting performance. It strikes an optimal balance between filtration efficiency and airflow, making it ideal for various applications such as HVAC systems, industrial ventilation, and air handling units.

Design Features

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01

Enhanced Durabilit

Unique high dust-capacity structure improves filter longevity.
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02

Quality Filter Media

Utilizes glass fiber media from American JM Company for effective filtration.

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03

Flame Retardant Performanc

Meets UL-2 standard, suitable for fire-certified enterprises

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04

Filtration Efficiency Grade

Available in F5, F6, F7, and F8 efficiency grades (EN779).

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Material composition

Product dimensions parameters

Material Parameters

Outer frame material Aluminum profile/aluminum plate folding frame/galvanized frame/stainless steel frame
Filter material chemical fiber
Filter bag type Self-sewn bags
Support frame material Galvanized iron wire
Filter efficiency F5:45%@0 5um, F6:65%@0 5um,
F7:85%@0 5 um, F8:90%@0.5um, F9:95%@0. 5 um
Maximum operating temperature 150℃
Maximum operating humidity 100%
Outer frame material Aluminum profile/aluminum plate folding frame/galvanized frame/stainless steel frame
Filter material chemical fiber
Filter bag type Self-sewn bags
Support frame material Galvanized iron wire
Filter efficiency F5:45%@0 5um, F6:65%@0 5um,
F7:85%@0 5 um, F8:90%@0.5um, F9:95%@0. 5 um
Maximum operating temperature 150℃
Maximum operating humidity 100%

Technical Parameters


Size Bags air volume Filter area Dust holding capacity Initial resistance Final resistance Filtration efficiency
287x592x381 3 1000 1.58 ≈380 <50 250-300 F5
≈330 <65 250-300 F6
≈290 <80 300-400 F7
≈250 <100 300-400 F8
490x592x381 5 1700 2.65 ≈630 <50 250-300 F5
≈560 <65 250-300 F6
≈480 <80 300-400 F7
≈420 <100 300-400 F8
592x592x381 6 2050 3.18 ≈740 <6 250-300 F5
≈660 <65 250-300 F6
≈590 <80 300-400 F7
≈500 <100 300-400 F8


Size Bags air volume Filter area Dust holding capacity Initial resistance Final resistance Filtration efficiency
287x592x381 3 1000 1.58 ≈380 <50 250-300 F5
≈330 <65 250-300 F6
≈290 <80 300-400 F7
≈250 <100 300-400 F8
490x592x381 5 1700 2.65 ≈630 <50 250-300 F5
≈560 <65 250-300 F6
≈480 <80 300-400 F7
≈420 <100 300-400 F8
592x592x381 6 2050 3.18 ≈740 <6 250-300 F5
≈660 <65 250-300 F6
≈590 <80 300-400 F7
≈500 <100 300-400 F8

FAQ

1. How to determine the right size for a medium efficiency chemical fiber bag filter?

To determine the right size for a medium efficiency chemical fiber bag filter, you need to consider factors such as airflow capacity, system dimensions, and the specific filtration needs of your environment. The filter should fit snugly within the filter housing while ensuring optimal air circulation. Key factors include: - Airflow rate (m³/h) - Filter dimensions - The type of contaminants to be filtered Selecting the correct size ensures the filter works efficiently, maintaining air quality and minimizing energy consumption.


2. How to store medium efficiency chemical fiber bag filters?

Medium efficiency chemical fiber bag filters should be stored in a clean, dry, and well-ventilated area to prevent damage or contamination before use. They should be kept in their original packaging to protect them from dirt, moisture, and physical damage. Storing the filters properly ensures they retain their performance and durability when installed in HVAC or industrial systems.


3. Medium efficiency chemical fiber bag filter for office buildings

The **medium efficiency chemical fiber bag filter** is a great solution for air filtration in office buildings. It efficiently removes moderate-sized particles, such as dust, pollen, and allergens, improving indoor air quality for office environments. This filter ensures a healthier work atmosphere for employees, enhances comfort, and reduces the risk of airborne illnesses. Additionally, it provides cost-effective air filtration with low energy consumption, making it ideal for large office spaces.


4. Medium efficiency chemical fiber bag filter vs carbon filter

While both **medium efficiency chemical fiber bag filters** and **carbon filters** serve to improve air quality, they have distinct differences in their capabilities. The chemical fiber bag filter is primarily designed to capture medium-sized particles, such as dust, pollen, and mold spores. In contrast, carbon filters are designed to absorb odors and gaseous pollutants. - **Chemical Fiber Bag Filters**: Capture particles - **Carbon Filters**: Absorb odors and gases The two types of filters can also be used together in systems where both particulate filtration and odor removal are required.


5. Energy efficiency of medium efficiency chemical fiber bag filters

Medium efficiency chemical fiber bag filters are highly energy-efficient, offering a balance between effective filtration and minimal airflow resistance. These filters are designed to capture medium-sized particles without causing significant pressure drop, which helps maintain optimal airflow within HVAC and industrial systems. As a result, they contribute to lower energy costs and improved operational efficiency over time.


6. Medium efficiency chemical fiber bag filter and pressure drop

Pressure drop occurs when air flow through a medium efficiency chemical fiber bag filter is obstructed due to dust accumulation or filter density. To maintain efficient operation, it's essential to monitor the pressure drop regularly. A higher pressure drop indicates that the filter needs cleaning or replacement to restore optimal airflow and filtration capacity, which is crucial to ensure that the system operates efficiently and avoids excess energy consumption.


7. How to improve the lifespan of medium efficiency chemical fiber bag filters

To extend the lifespan of medium efficiency chemical fiber bag filters, it's important to perform regular maintenance, such as: - Cleaning or shaking out excess dust - Inspecting filters for damage - Replacing filters at the recommended intervals By maintaining the filter in optimal condition and ensuring it is regularly replaced when necessary, you can maximize its lifespan and maintain system efficiency. Proper handling during installation and removal also helps prevent unnecessary wear and tear.


8. Medium efficiency chemical fiber bag filter vs high-efficiency filter

Medium efficiency chemical fiber bag filters and high-efficiency filters differ primarily in their particle capture capabilities. While medium efficiency filters are designed to capture moderate-sized particles, high-efficiency filters, such as HEPA filters, are capable of capturing smaller particles with higher precision. The medium efficiency filter is more suitable for environments with moderate air quality concerns, while high-efficiency filters are ideal for settings that require extremely fine filtration, such as medical facilities or clean rooms.


9. What materials are used in medium efficiency chemical fiber bag filters?

Medium efficiency chemical fiber bag filters are typically constructed using synthetic fibers like polyester, polypropylene, or a blend of both. These materials are chosen for their durability, resistance to chemicals, and ability to trap particles effectively while maintaining good airflow. The specific fiber material may vary depending on the intended application and the level of filtration required.


10. Medium efficiency chemical fiber bag filter for petrochemical industry

In the petrochemical industry, medium efficiency chemical fiber bag filters are crucial for maintaining air quality by removing airborne pollutants, such as dust and particulate matter. These filters help to ensure a safe working environment by preventing the inhalation of harmful particles and reducing equipment contamination. With their high durability and efficiency, these filters are well-suited for the demanding conditions found in petrochemical plants.


11. Medium efficiency chemical fiber bag filter for welding fumes

Medium efficiency chemical fiber bag filters are highly effective for filtering welding fumes in industrial settings. These filters capture fine particles and fumes produced during welding, providing a cleaner and safer environment for workers. With their ability to remove hazardous particles, they help reduce the risk of respiratory problems and maintain air quality in welding workshops and factories.


12. What is a medium efficiency chemical fiber bag filter?

A medium efficiency chemical fiber bag filter is a filtration solution designed to capture airborne particles of moderate size, such as dust, pollen, and mold spores. These filters are commonly used in HVAC systems, industrial environments, and commercial applications to improve air quality. Made from durable chemical fibers, these filters offer an excellent balance of filtration performance and airflow efficiency, making them a cost-effective choice for many applications.


13. Medium efficiency chemical fiber bag filter and humidity control

Humidity control is an important factor to consider when using medium efficiency chemical fiber bag filters. High humidity levels can cause moisture buildup on the filter, potentially reducing its effectiveness and lifespan. It's essential to ensure that the air handling system maintains proper humidity levels to prevent the filter from becoming damp, which could affect its particle-capturing efficiency and contribute to mold growth.


14. Do medium efficiency chemical fiber bag filters require pre-filters?

In most cases, medium efficiency chemical fiber bag filters do not require pre-filters; however, in environments with high dust or particulate loads, using a pre-filter may help extend the lifespan of the main filter. Pre-filters capture larger particles, reducing the load on the primary filter and enhancing overall system efficiency. **Deiiang™** recommends consulting with filtration experts to determine if pre-filters are necessary for your specific system needs.


15. Benefits of using a medium efficiency chemical fiber bag filter

Using a medium efficiency chemical fiber bag filter provides several benefits: - Effective removal of moderate-sized airborne particles - Low energy consumption with minimal pressure drop - Improved indoor air quality These filters are cost-effective, durable, and offer reliable performance, making them suitable for a wide range of commercial and industrial applications. Their versatility and efficiency make them an ideal choice for systems that require both optimal filtration and energy savings.

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