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ISO9001 Mesh Pad Mist Eliminator Scrubber Demister Pad 150mm

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Anping Yuanqiao Petrochemical Equipment Co., Ltd

ISO9001 Mesh Pad Mist Eliminator Scrubber Demister Pad 150mm

Country/Region china
Categories Filter Meshes
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Product Details

316L Glass Fiber Co Custom Size Bar Grids Knitmesh Pad Demister

 

316L Glass Fiber Co Custom Size Bar Grids Knitmesh Pad Demister

 

 

The gas / vapor containing droplets passes into mesh pad demister at a predetermined velocity. It easily finds open path through the mesh but the droplets and mist impinge on the filaments of mesh where they coalesce and eventually grow to such a size to overcome surface tension of liquid and force of gravity. Then the liquid droplets so formed fall down. And the mist free gas / vapour passes through the mesh demister pad.

 

Knit mesh demister material options and reason:

 

MaterialsMain Application Area
SS304Water solutions, Nitric acid reduced crude petroleum fraction etc.
SS316LFatty acid reduced crude containing naphthenic acids and corrosive chemicals
Synthetic fiberFor corrosive service at moderate temperature
PP(Polypropylene)For corrosive service at temperature up to 70℃
PTFEFor corrosive service at temperature of (-190℃, 250℃)
MonelCaustic soda, dilute acid
NickelCaustic Soda, food products
CopperFreon, alcohol
AluminiumNitric Acid

 

Knit mesh demister types and description:

 

1) York 931 demister, mesh density 80 kg/m3. For a given load of mist, the highest flow velocity is achieved of all styles. Ideal where it is required to minimize the pressure loss, possible clogging is concerned, the size of particle to be collected is relatively large, and/or a very high efficiency is not required.

 

2) York 431 demister, mesh density 144 kg/m3. Used for general purposes. An efficiency of 98 to 99% is achieved at a velocity of 1 to 5 m/sec.

 

3) York 421 demister, mesh density 192 kg/m3. Used where an especially high efficiency is required. While a pressure loss is slightly higher, it achieves an efficiency of 99 to 100% with particle sizes 3μ or more at a velocity of 1 to 6 m/sec., and is ideal where an efficiency of 90% or more is required at a velocity of 1 m/sec. or less.

 

 

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