High Heat Resistant Pre Air Filter 23" x 11" Air volume:1050m³/h
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High Heat Resistant Pre Air Filter 23" x 11" Air volume:1050m³/h
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Summary
High Heat Resistant Pre Air Filter 23" x 11" Air volume:1050m³/h
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High Heat Resistant Pre Air Filter 23&qu
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Min. Order:1 unit -
High Heat Resistant Pre Air Filter 23&qu
US$From $10
Min. Order:1 unit -
High Heat Resistant Pre Air Filter 23&qu
US$From $10
Min. Order:1 unit
Product Description
The High Heat Resistant Pre Air Filter (23" x 11") is designed to provide efficient filtration in high-temperature environments, with an air volume capacity of 1050m³/h. It effectively captures contaminants while maintaining optimal airflow, ensuring system protection and enhanced performance in demanding industrial applications..These filters are essential for industries where air quality is crucial, even in extreme heat conditions.
Applications
These filters are commonly used in the following areas:
Power plants
Chemical processing
Steel and metal production
Industrial HVAC systems
Design Features
The key features of the High Heat Resistant Pre Air Filter include:
Heat-resistant construction for high-temperature environments.
Efficient filtration of dust, dirt, and other particles.
Durable and long-lasting performance under harsh conditions.
photo
Material composition
Media | Glass fiber |
Frame | Aluminum/Galvanized steel/Stainless steel |
Efficiency | 85% at 2.0μm |
Max. Humidity | 100% |
Optional aluminum | 17-96mm |
Media | Glass fiber |
Frame | Aluminum/Galvanized steel/Stainless steel |
Efficiency | 85% at 2.0μm |
Max. Humidity | 100% |
Optional aluminum | 17-96mm |
OEM:
Customized design is available for the European Union EN779 high heat resistant pre-filter G3.
Product dimensions parameters
OEM: Customized design is available for the European Union EN779 high heat resistant pre-filter G3.
Model NO. | Actual Size | Air Flow | Media Area | Velocity | Efficiency |
HxWxD (mm) | (m³/h) | Flow (m²) | (m/s) | ||
K43-001 | 594*289*21 | 750 | 0.28 | 1.21 | G3 |
K43-003 | 594*492*21 | 1550 | 0.58 | 1.22 | G3 |
K43-004 | 594*289*46 | 1050 | 0.4 | 1.7 | G3 |
K43-005 | 594*492*46 | 1800 | 0.67 | 1.71 | G3 |
K43-006 | 594*594*46 | 2200 | 0.81 | 1.73 | G3 |
K43-009 | 594*594*69 | 3000 | 1.11 | 2.36 | G3 |
K43-012 | 594*594*80 | 3450 | 1.28 | 2.72 | G3 |
K43-013 | 594*289*96 | 1550 | 0.58 | 2.51 | G3 |
K43-014 | 594*492*96 | 2650 | 0.97 | 2.52 | G3 |
K43-015 | 594*594*96 | 3150 | 1.17 | 2.48 | G3 |
Model NO. | Actual Size | Air Flow | Media Area | Velocity | Efficiency |
HxWxD (mm) | (m³/h) | Flow (m²) | (m/s) | ||
K43-001 | 594*289*21 | 750 | 0.28 | 1.21 | G3 |
K43-003 | 594*492*21 | 1550 | 0.58 | 1.22 | G3 |
K43-004 | 594*289*46 | 1050 | 0.4 | 1.7 | G3 |
K43-005 | 594*492*46 | 1800 | 0.67 | 1.71 | G3 |
K43-006 | 594*594*46 | 2200 | 0.81 | 1.73 | G3 |
K43-009 | 594*594*69 | 3000 | 1.11 | 2.36 | G3 |
K43-012 | 594*594*80 | 3450 | 1.28 | 2.72 | G3 |
K43-013 | 594*289*96 | 1550 | 0.58 | 2.51 | G3 |
K43-014 | 594*492*96 | 2650 | 0.97 | 2.52 | G3 |
K43-015 | 594*594*96 | 3150 | 1.17 | 2.48 | G3 |
FAQ
1. What are the environmental impacts of using High Heat Resistant Pre Air Filters?
High Heat Resistant Pre Air Filters are beneficial to the environment in several ways. By maintaining efficient airflow and reducing particulate matter in industrial processes, they contribute to cleaner air. However, it's important to note that their disposal can generate waste, particularly if they are not recyclable. To minimize environmental impact, manufacturers are increasingly developing filters with recyclable materials and reusable designs.
2. What is the lifespan of High Heat Resistant Pre Air Filters?
The lifespan of High Heat Resistant Pre Air Filters varies depending on the operating environment and the level of airborne contaminants. Typically, these filters can last between 6 months and 2 years before they need replacement. Regular maintenance, such as cleaning or inspecting for wear and tear, can help extend their operational life.
3. Can High Heat Resistant Pre Air Filters be used in pharmaceutical production?
Yes, High Heat Resistant Pre Air Filters can be used in pharmaceutical production, provided the temperature conditions are suitable for their material properties. These filters are effective at preventing contaminants from entering sterile areas, ensuring air quality and safety in environments where sensitive processes and products are handled. They can also maintain optimal airflow while withstanding high temperatures commonly found in certain pharmaceutical manufacturing processes.
4. Can High Temperature Primary Filters be used in HVAC systems?
Yes, High Temperature Primary Filters can be used in HVAC systems, particularly in industries that experience high temperatures or deal with hot air sources. These filters provide efficient filtration while maintaining system performance even under demanding conditions. They help protect HVAC components from overheating or contamination, ensuring smooth operation.
5. What is the airflow capacity of High Heat Resistant Pre Air Filters?
The airflow capacity of High Heat Resistant Pre Air Filters is typically around 1550³/h, which allows for efficient air passage through the filter without compromising its ability to trap large particles. This high airflow capacity makes the filter suitable for use in systems that require consistent air movement even in high-temperature environments.
6. How does a High Heat Resistant Pre Air Filter work?
A High Heat Resistant Pre Air Filter works by allowing air to pass through a heat-resistant filtering medium, where larger particles are trapped before they can enter the system. The filter’s material withstands high temperatures, ensuring consistent performance even in harsh conditions. This pre-filter stage helps extend the life of other downstream filters and sensitive equipment by preventing contaminants from reaching them.
7. Can High Heat Resistant Pre Air Filters be customized for specific applications?
Yes, High Heat Resistant Pre Air Filters can be customized for specific applications to meet unique operational requirements. Customizations may include:
Adjusting the filter size to fit specific machinery or equipment
Using materials that are more resistant to certain chemicals or environmental conditions
Varying the filtration efficiency depending on the type of contaminants present
These customizations ensure that the filter can perform optimally for a variety of industrial and commercial applications.
8. How do High Temperature Primary Filters prevent equipment failure?
High Temperature Primary Filters prevent equipment failure by ensuring that harmful particles are removed from the air before they can reach sensitive machinery. By filtering out dust, soot, and other debris, they reduce the risk of mechanical damage, clogging, and overheating. This helps prevent costly downtime and extends the lifespan of the equipment.
9. How do High Heat Resistant Pre Air Filters affect system airflow and pressure?
High Heat Resistant Pre Air Filters are designed to maintain an optimal balance between airflow and pressure. While they trap large particles, they are engineered to allow for sufficient airflow without causing a significant pressure drop. This ensures that the system operates efficiently without excessive strain on the equipment, even in high-temperature environments.
10. Can High Heat Resistant Pre Air Filters be used in high-heat production areas?
Yes, High Heat Resistant Pre Air Filters are ideal for use in high-heat production areas. These filters are built to withstand the elevated temperatures commonly found in environments such as furnaces, kilns, and other industrial processes that generate significant heat. They help protect sensitive machinery from contamination while maintaining a stable airflow in these demanding environments.
11. How do High Heat Resistant Pre Air Filters prevent particle buildup in equipment?
High Heat Resistant Pre Air Filters prevent particle buildup in equipment by capturing larger contaminants at the intake stage, before they can enter the system. This reduces the accumulation of dirt, dust, and other debris on internal components, which can lead to malfunctions, overheating, or reduced efficiency. By preventing such buildup, these filters help maintain the system’s optimal performance.
12. How do High Temperature Primary Filters improve air quality in factories?
High Temperature Primary Filters improve air quality in factories by removing airborne contaminants that can affect both the environment and worker health. These filters are designed to capture larger particles such as dust, fumes, and smoke, ensuring that clean air is circulated throughout the production area. This contributes to a healthier, safer working environment while also protecting equipment from damage.
13. What are the safety precautions when using High Heat Resistant Pre Air Filters?
When using High Heat Resistant Pre Air Filters, several safety precautions should be observed:
Ensure proper installation to prevent leaks or bypassing of air.
Check filter integrity regularly to avoid breakdowns that could expose equipment to contaminants.
Handle with care during replacement or maintenance to avoid injury from sharp edges or hot surfaces.
Following these safety guidelines will ensure the filter’s effectiveness and protect both personnel and equipment.
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