Industrial Wire Mesh Demister Pad Vapor Recovery Mist Eliminator Pads
| Place of Origin | Hebei Province,China |
|---|---|
| Brand Name | Luo Jie |
| Certification | ISO 9001:2015 |
| Model Number | LJ-14 |
| Minimum Order Quantity | 10 PCS |
| Price | $29-86/set |
| Packaging Details | Wooden cases,Wooden Pallet,steel pallet |
| Delivery Time | 7-20days according to the quantity |
| Payment Terms | L/C,T/T |
| Supply Ability | 10000 ㎡ 7 days |
| Material: | High-quality Stainless Steel Or Galvanized Wire | Structure Design: | Mesh Structure And Optimized Compression Density For Efficient Mist Separation And Oil Mist Capture |
|---|---|---|---|
| Density: | Available In Different Densities To Meet Light, Medium, And Heavy-duty Operating Conditions | Dimensions: | Standard Sizes Customizable, Suitable For Various Towers And Vessels |
| Temperature Resistance: | Capable Of Withstanding Up To 400°C, Suitable For Mist Separation In High-temperature Environments | Ventilation Efficiency: | Optimized Flow Channel Design Effectively Reduces Airflow Resistance, Ensuring High Ventilation Efficiency |
| Maintenance Requirements: | Simple Structure For Easy Cleaning, Ensuring Long-term Efficient Operation | Packing & Delivery: | Palletized Packing With Moisture-proof Wrap |
| Highlight: | industrial wire mesh demister,industrial demister pad,stainless steel demister pad |
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Optimized for Industrial Applications Demister Pad Vapor Recovery
Product Overview
The Demister Pad is designed for efficient mist and vapor separation in various industrial applications, particularly in vapor recovery systems and gas treatment towers. Constructed from high-quality stainless steel or galvanized wire, the pad is engineered to withstand high temperatures and aggressive environments while offering optimal separation performance. The mesh structure allows for excellent airflow, while its density and material choice ensure long-lasting durability in demanding applications.
Structure & Efficiency
The mesh grid of the Demister Pad is carefully engineered to separate mist and droplets effectively. The compression density and design of the mesh structure enable superior performance in separating both fine mist and large droplets. This structure helps to capture oil mist and water vapor, preventing them from contaminating the surrounding air or gas streams. As the vapor flows through the mesh, it is effectively filtered, and only clean gas exits the system.
Specification Table
| Attribute | Typical Value |
|---|---|
| Material | Stainless Steel / Galvanized Wire |
| Mesh Size | Customizable to 5–15 mm |
| Temperature Resistance | Up to 400°C |
| Density | Light, Medium, Heavy-duty |
| Dimensions | Customizable up to 1500×1500 mm |
| Airflow Resistance | Low resistance for high efficiency |
| Maintenance | Easy to clean and maintain |
| Packing | Palletized with moisture-proof wrap |
Applications
The Demister Pad is widely used in a variety of industries, including chemical, petrochemical, and oil refineries. It is typically placed in gas treatment towers, distillation columns, and scrubbers. The pad's ability to handle high temperatures, along with its excellent vapor separation capabilities, makes it ideal for use in systems that require high-efficiency mist removal and oil recovery.
Temperature Resistance & Durability
Withstanding temperatures of up to 400°C, the Demister Pad is ideal for high-temperature separation processes. Its construction ensures that it can endure extreme conditions without degrading or losing its efficiency. The material's resistance to corrosion makes it suitable for use in environments with high concentrations of chemicals or other aggressive substances, ensuring a long operational life and low maintenance requirements.
Maintenance & Longevity
This product is designed to minimize downtime, thanks to its ease of maintenance. Regular cleaning ensures that the pad operates at its full potential, preventing the buildup of particles that could reduce efficiency. The durable materials used in the Demister Pad guarantee that it can function efficiently for an extended period with minimal maintenance intervention.
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