High Heat Resistant Pre Air Filter 23" x 11" Air volume: 1550³/h
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High Heat Resistant Pre Air Filter 23" x 11" Air volume: 1550³/h
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Summary
High Heat Resistant Pre Air Filter 23" x 11" Air volume: 1550³/h
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High Heat Resistant Pre Air Filter 23&qu
US$From $10
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High Heat Resistant Pre Air Filter 23&qu
US$From $10
Min. Order:1 unit -
High Heat Resistant Pre Air Filter 23&qu
US$From $10
Min. Order:1 unit -
High Heat Resistant Pre Air Filter 23&qu
US$From $10
Min. Order:1 unit
Product Description
The High Heat Resistant Pre Air Filter (23" x 11") is designed to efficiently filter air in high-temperature environments with an air volume capacity of 1550 m³/h. It helps capture dust, debris, and larger particles before they reach sensitive machinery, ensuring optimal performance and protection in 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?
The environmental impact of using High Heat Resistant Pre Air Filters is relatively low compared to other industrial filtration methods. These filters help reduce the release of airborne contaminants, such as dust and soot, into the environment. By capturing pollutants before they can spread, they contribute to cleaner air in industrial settings and reduce the overall environmental footprint of operations.
2. Can High Heat Resistant Pre Air Filters withstand high humidity?
Yes, High Heat Resistant Pre Air Filters are designed to operate in both high heat and high humidity environments. These filters use materials that maintain their structural integrity and filtration efficiency, even when exposed to moisture. This makes them suitable for use in humid industrial settings, such as marine applications or areas with frequent temperature fluctuations.
3. How do High Temperature Primary Filters differ from standard filters?
High Temperature Primary Filters differ from standard filters in several key ways:
They are built with materials that can withstand elevated temperatures.
They are designed to capture contaminants in high-heat environments.
They maintain filtration performance under extreme thermal conditions.
In contrast, standard filters may degrade or lose efficiency when exposed to heat, making high-temperature filters more suitable for demanding industrial applications.
4. Can High Heat Resistant Pre Air Filters be used in chemical plants?
Yes, High Heat Resistant Pre Air Filters can be used in chemical plants. These filters help prevent airborne contaminants, such as chemicals, dust, and fumes, from entering sensitive equipment and machinery. They are designed to withstand high temperatures and are effective in maintaining the integrity of systems in environments where harsh substances are present.
5. What is a High Heat Resistant Pre Air Filter?
A High Heat Resistant Pre Air Filter is a specialized filtration device designed to operate in environments where high temperatures are common. It filters out large particles, dust, and debris, preventing them from entering sensitive equipment. These filters are crucial in industrial applications such as manufacturing, energy production, and automotive industries where both high heat and airborne contaminants are prevalent.
6. 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 particles before they enter the system. This helps keep sensitive components free from dust, soot, and other debris that could clog or damage them. By ensuring that only clean air flows through the system, these filters help maintain the efficiency and longevity of the equipment.
7. How do High Heat Resistant Pre Air Filters prevent debris from reaching sensitive parts?
High Heat Resistant Pre Air Filters are designed with specialized materials that trap larger particles, such as dust and debris, before they can reach sensitive parts of machinery. This filtration process helps to keep delicate components, such as motors and sensors, free from damaging particles that could reduce system efficiency or lead to costly repairs.
8. How do High Heat Resistant Pre Air Filters affect the lifespan of HVAC systems?
High Heat Resistant Pre Air Filters positively impact the lifespan of HVAC systems by preventing contaminants from entering the system and causing blockages or damage. By ensuring clean air intake and reducing wear on internal components, these filters help HVAC systems run more efficiently, reducing the need for maintenance and extending the overall lifespan of the system.
9. What is the cost of a High Heat Resistant Pre Air Filter?
The cost of a High Heat Resistant Pre Air Filter can vary depending on the size, material, and specific application requirements. Generally, prices range from \$50 to several hundred dollars per filter. Custom models or filters with higher performance ratings may cost more, but they are an investment in the protection and efficiency of industrial systems.
10. Can High Heat Resistant Pre Air Filters be used in power plants?
Yes, High Heat Resistant Pre Air Filters are well-suited for use in power plants. These filters are capable of withstanding the high temperatures often present in power generation environments while filtering out harmful particles such as soot, dust, and metal shavings. They help ensure that the air entering critical equipment is clean, improving efficiency and reducing the risk of system malfunctions.
11. How do High Heat Resistant Pre Air Filters benefit manufacturing facilities?
High Heat Resistant Pre Air Filters benefit manufacturing facilities by improving air quality and protecting equipment. These filters help capture dust, dirt, and other particles before they enter machines, preventing damage and ensuring optimal performance. By maintaining clean air, they also help reduce maintenance costs and downtime, leading to increased productivity in manufacturing environments.
12. How do High Heat Resistant Pre Air Filters contribute to system reliability?
High Heat Resistant Pre Air Filters contribute to system reliability by ensuring that only clean air enters sensitive equipment. By removing harmful contaminants such as dust, soot, and debris, they prevent blockages and reduce wear and tear on machinery. This helps maintain system performance and reduce the likelihood of unexpected breakdowns.
13. What are the cleaning options for High Heat Resistant Pre Air Filters?
High Heat Resistant Pre Air Filters can be cleaned using a variety of methods depending on the filter design and material. Common cleaning options include:
Rinsing with water to remove larger debris
Blowing out dust and particles with compressed air
Vacuuming to clear finer particles
Regular cleaning helps maintain the filter's efficiency and extends its operational life.
14. How do you maintain High Heat Resistant Pre Air Filters?
Maintaining High Heat Resistant Pre Air Filters involves regular inspections and cleaning to ensure they remain effective. This includes checking for any wear or damage, cleaning out dust and debris, and replacing the filter when necessary. Proper maintenance ensures that the filter continues to perform at optimal levels, providing ongoing protection to machinery and systems.
15. What are the temperature limitations of High Heat Resistant Pre Air Filters?
High Heat Resistant Pre Air Filters are typically designed to withstand temperatures ranging from 200°C to 300°C, depending on the specific filter model and material. Some specialized filters may tolerate even higher temperatures, making them suitable for extreme environments in industries such as metalworking and power generation. It’s important to choose a filter that meets the specific temperature needs of your application.
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