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Saiptech Co., Ltd.

Test Separator, Production Separator, Liquid Liquid Separator manufacturer / supplier in China, offering Wire Mesh Coalescer for Liquid-Liquid and Vapor-Liquid Separation, Scallops Reactor Internals, Reactor Internals of Scale Traps and so on.

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Supplier Homepage Product Separator Equipment Wire Mesh Coalescer for Liquid-Liquid and Vapor-Liquid Separation

Wire Mesh Coalescer for Liquid-Liquid and Vapor-Liquid Separation

FOB Price: Get Latest Price
Min. Order: 1 Piece
Port: Shanghai, China
Production Capacity: 100 Tons Per Month
Payment Terms: L/C, T/T

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Basic Info
  • Model NO.: Wire Mesh Coalescer
  • Object: Gas Oil Liquid
  • Operating Type: Continuous Type
  • Distillation Equipment Type: Steam Distillation Equipment
  • Condition: New
  • Transport Package: Plywood Box
  • Origin: China
  • Type: Separation Equipment
  • Separation Mode: Filter Separator
  • Installation: Vertical and Horizontal
  • Pressure: High Pressure
  • Trademark: SPT
  • Specification: Tailor made according to customer requirement
  • HS Code: 84199090
Product Description
Saiptech's Wire Mesh Coalescer
Wire Mesh Coalescer for Liquid-Liquid and Vapor-Liquid Separation

Liquid-Liquid Applications
Mixtures of immiscible liquids can generally be separated by a process of settling as a result of the density difference between the two phases. However gravitational settling becomes increasingly difficult as the droplet size of the dispersed phase decreases. The settling process can be enhanced considerably by passing the dispersion through a suitable coalescer pad.
Saiptech's Knitted Dual Media Mesh Pads are effective coalescers in both liquid-liquid and vapour-liquid service. Mesh pad style, face velocity and configuration will depend on the specific application.

Wire Mesh Coalescer for Liquid-Liquid and Vapor-Liquid Separation
Liquid-liquid separator vessels are usually arranged horizontally as shown above. The coalescer pack is used to enhance the separation of liquid dispersions and consists of layers of composite materials chosen to suit service conditions. Generally a metallic wire monofilament is co-knitted with a fibre material which has a surface which is preferentially wetted by the dispersed phase. For hydrocarbon in water dispersions, a thermoplastic fibre is preferred and for water in hydrocarbon dispersion a specially treated glass fibre is used. It is therefore always important to know which is the dispersed phase in the mixture. Whilst the right choice of fibre material ensures maximum collection of the dispersed droplets, the effect of the difference in surface free energies of the monofilament wire and fibre materials in close proximity promotes droplet coalescence.
The Portfolio of Separator Internals
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The comprehensive service from Saiptech
 which can be tailored to your project requirements, including:
• process design
• feasibility studies
• detailed engineering
• equipment manufacture and supply
• installation 
• trouble shooting
• de-bottlenecking
• revamp & capacity expansion

• Test Separators
• Production Separators
• Electrostatic Treaters
• Liquid/Liquid Coalescers
• Slug Catchers
• Cyclone Separators
• KO & FWKO Drums
• Flare Drums
• Compressor Scrubbers
• Pipeline Scrubbers
• Inlet Distributors
• Sand Removal Systems

Saiptech welcome the opportunity to assist our customers, including end users, EPC contractors and vessel fabricators, to select and customize from our standard range of separation internals to provide an optimized solution for any specific process and vessel configuration.
Wire Mesh Coalescer for Liquid-Liquid and Vapor-Liquid Separation
In an increasingly competitive business environment, we have developed a unique approach to providing added value and benefit to our customers by focusing on quality engineering rather than high volume manufacturing. our vessel internals, including distillation and absorption as well as separation equipment function as the vital organs of a process plant. Therefore, well engineered equipment is not only the key to long term profitability but intelligently engineered vessel internals may often result in lower overall capital costs.
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