
Stainless Steel Wire Demister
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Basic Info
Place of Origin: | Hebei China |
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Payment Type: | L/C, T/T |
Product Description
Product Description
Stainless steel Wire Mesh Demister
Wire mesh demister(also known as mist eliminator, demister pads). This is a kind of high efficiency separation devices, used throughout all kinds of process industries, to remove liquid droplets from gas and/or vapour streams.
Mechanism:
The principle of demister operation is based on having a large number of obstacles intercepting entrained droplets in a vapour flow. This large number of obstacles must provide minimum drop in pressure over the removal system.
The demister is employed where the liquid droplet size is below 10 microns. The pad is made up of knitted mesh of metallic or synthetic material. The vapour is made to pass through this mesh, causing the vapour to flow freely but the liquid droplets being entangled due to inertia.
The droplets stick to the mesh surface for a brief period of time. As more and more droplets collect, they coalesce into a larger droplet, gaining weight and eventually falling off due to gravity. The vapour thus separated is almost free of liquid.
Material
Some of the commonly used materials are:
· SS 304 SS 304L SS 316 SS 316L
· Monel 400 Monel 600 Monel 800
· Teflon
· Hostaflon
· Poly-propylene
· Inconel 625 Inconel 825
· Can be produced according special requirements.
Product show



Wire mesh demister(also known as mist eliminator, demister pads). This is a kind of high efficiency separation devices, used throughout all kinds of process industries, to remove liquid droplets from gas and/or vapour streams.
Mechanism:
The principle of demister operation is based on having a large number of obstacles intercepting entrained droplets in a vapour flow. This large number of obstacles must provide minimum drop in pressure over the removal system.
The demister is employed where the liquid droplet size is below 10 microns. The pad is made up of knitted mesh of metallic or synthetic material. The vapour is made to pass through this mesh, causing the vapour to flow freely but the liquid droplets being entangled due to inertia.
The droplets stick to the mesh surface for a brief period of time. As more and more droplets collect, they coalesce into a larger droplet, gaining weight and eventually falling off due to gravity. The vapour thus separated is almost free of liquid.
Material
Some of the commonly used materials are:
· SS 304 SS 304L SS 316 SS 316L
· Monel 400 Monel 600 Monel 800
· Teflon
· Hostaflon
· Poly-propylene
· Inconel 625 Inconel 825
· Can be produced according special requirements.
Product show



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