Customization: | Available |
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Manufacturing Process: | Mesh Knitting and Grids Welding |
Surface Treatment: | Grids with Pickling Treatment |
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Air Filter Pad Gas Liquid Separator 500 - 480 Mm Framed Knit Mesh
The framed knit mesh gas liquid separator is mainly constructed by knitted wire mesh, weld mesh screen and curved ss plate frames. The mesh pad consists multiple layers of fabric-knitted from metals or synthetic fiber monofilament chosen to suit the particular duty requirements. After knitting each layer is crimped and then converted into desired size or shape of pads. The pads are not entirely rigid and generally supported by weld mesh screen. The grids usually adopt stainless steel 25mm*3mm flat bars and Φ6mm round rods. Sometimes like this case bending metal plate frame are also used.
Located in Anping, China, we enjoy many advantages like convenient material purchasing, lower labor cost, faster courier service, etc. Demister Material we usually use: PP, PTFE, SS304, SS304L, SS316, SS316L, SS201, SS202, SS310S, SS321, Copper, Nickel, Titanium, Duplex 2205, Duplex 2507, NS-80, Monel 400 alloy, Co-knit 904L+fiber glass, Co-knit 316L+ fiber glass, Co-knit 316L+PP flat...
Demister mist eliminator Specifications in this case
Item | Value | Unit |
Material | SS304 | / |
Shape & Size | 500*480 | mm |
Mesh Thickness | 20 | mm |
Demsiter Height | 25 | mm |
Wire Diameter | 0.23 | mm |
Mesh Density | 120 | kg/m3 |
Void Fraction | 0.985 | / |
Specific Area | 260 | m2/m3 |
Grids | 1mm thick plate+weld mesh screen | mm |
Advantages of knit mesh gas liquid separator:
1. Reduce Pollution
Improve process efficiency by reducing product carryover in chemical plants thus saving the planet, one droplet at a time.
2. Flexible
Made to any size or shape and with the material and wire diameters that customers require.
3. Specialist Support
Specialist support through the design and development processes.
The knit mesh gas liquid separator is designed to collect liquid particles contained in the vapour phase after boiling, vacuum evaporation or bubbling process.
Small droplets in the gas contact the wide surface of the filaments of the mesh pad demister, gradually grow into large liquid droplets and flow and drop by a special structure accelerating the coalescing of the liquid droplets. The mesh pad of the demister is highly porous, so the vapour gas passes through the demister without hindrance, leaving only pure gas.
The process is not a type of filtering as the hole size of the knit mesh is not specially related to the size of the liquid droplets. This mist elimination is caused by the collision and sudden change resulting from the flowing speed of the small liquid droplets, and the coalescing of the liquid drips and gravity cause their descent.
This is a process combing mechanical and physical phenomenon.