Customization: | Available |
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Manufacturing Process: | Mesh Knitting and Grids Welding |
Surface Treatment: | Grids with Pickling Treatment |
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Light Weight Titanium Wire Mesh Demister Pad Anti Corrosive
Space metal Titanium mist eliminator, tailor made Ti demister pad
Located in Anping, China, we enjoy many advantages like convenient material purchasing, lower labor cost, faster courier service, etc.
Wire Mesh Mist Eliminator 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...
Other Material of construction and its application:
Materials | Main Application Area |
SS304 | Water solutions, Nitric acid reduced crude petroleum fraction etc. |
SS316L | Fatty acid reduced crude containing naphthenic acids and corrosive chemicals |
Synthetic fiber | For corrosive service at moderate temperature |
PP(Polypropylene) | For corrosive service at temperature up to 70ºC |
PTFE | For corrosive service at temperature of (-190ºC, 250ºC) |
Monel | Caustic soda, dilute acid |
Nickel | Caustic Soda, food products |
Copper | Freon, alcohol |
Aluminium | Nitric Acid |
When properly designed demister pads can give efficiency up to 99.9% with minimal pressure drop. Normally demister pads can remove droplets down to 5 microns and lower with a free volume of up to 99% and a surface area of up to 1940 m2/m3. Due to high value of free volume the pressure drop across the demister pad is sufficiently low in most applications.
Demister pads or Mist eliminators are porous blankets of metal or plastic knitted wire mesh, designed and constructed for the efficient, economical removal of entrained liquid droplets from vapor streams. Demister Pads can be fabricated in any required size and shape and may be installed in new or existing process vessels.
HOW IT WORKS
When vapor and entrained liquid droplets pass through a mist eliminator, the vapor moves freely through the mesh pad but the liquid droplets, due to their greater inertia, cannot make the necessary sharp turns and as a result are thrown into contact with the wire surfaces and briefly held there. As more droplets enter the pad and collect on the wires, they grow in size, run down the wire to the bottom surface of the mesh separator and fall from the unit. Overhead vapor is now free of entrained liquid.
Our Factory Advantages:
Optimized solutions
Standard configurations
Tailored made configurations
Expedited services available
knowledge and engineering experience
High quality manufacturing standards and procedures
Manufactured in a variety of corrosion resistant materials (Metals, Plastics and Co-knit mesh options)