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Anderson / Separator Vessels / Filter Separators

Filter Separators

AFSH · AFSV

The Anderson AFS Series Filter Separator is a multistage gas filtration and separation vessel designed to remove bulk liquids, fine liquid mist, and solid particulates from gas streams. Available in horizontal AFSH and vertical AFSV configurations, the system combines mechanical pre-separation, cartridge filtration, and high-efficiency final separation in one engineered vessel.

Anderson Horizontal Filter Separator (AFSH)

Horizontal multistage vessel that removes bulk liquids, fine mist and solid particulates from gas streams.

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Anderson Vertical Filter Separator (AFSV)

A vertical multistage vessel for applications where plot space is limited or vertical flow and drainage are preferred.

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Designed for

 

Anderson Filter Separators were designed for gas-conditioning applications requiring both liquid and solid removal in one vessel. They are commonly applied when contaminant levels exceed the capability of a simple mechanical separator, when standalone cartridge filtration would load too quickly, or when a final filtration stage must protect high-value rotating equipment and downstream process systems such as compressors and turbines.

 

Product configurations

 

Anderson Filter Separators are available in two configurations.

 

  • AFSH. A horizontal multistage vessel suited for higher gas flow rates and applications with greater liquid handling requirements. The horizontal design can accommodate multiple final separation options, including mesh pad second-stage separation where appropriate.

  • AFSV. A vertical multistage vessel designed for applications where plot space is limited or vertical flow and drainage are preferred. AFSV units provide the same integrated approach to mechanical separation, cartridge filtration, and final separation in a smaller footprint.

 

Key points of differentiation

 

  • Three-stage protection. Combines mechanical pre-separation, cartridge filtration, and final separation in one vessel.

  • Reduced cartridge loading. Bulk liquids and larger contaminants are removed before the gas reaches the filter elements, helping extend service life.

  • High dirt-holding capacity. Cartridge elements capture solid particulate while coalescing fine liquid droplets into larger drops.

  • Flexible final separation. Final-stage options include mesh pads, pocket-type separation vanes, or centrifugal separation elements depending on application needs.

  • Engineered vessel design. Configurations can be tailored for flow rate, liquid loading, pressure, materials, access, and maintenance requirements.

 

Applications

 

Anderson Filter Separators are applied throughout gas transmission, processing, storage, and power systems where reliable removal of entrained liquids and solids is essential. By conditioning the gas stream before critical equipment and process stages, they help reduce wear, fouling, carryover, and unplanned maintenance.

 

  • Ahead of natural gas regulating stations, city gages and distribution facilities to remove water

  • Removal of gas pipeline contaminants on the suction side of compressor stations to prevent damage to compressor, cylinder, and valve wear

  • Ahead of gas storage fields to prevent injection and withdrawal of solids and liquids.

  • Removal of gas contaminants in fuel gas lines and prior to engines, power and industrial plants

  • Ahead of gas processing plants to remove solids and liquids to prevent fouling of process equipment and poisoning of catalyst beds

  • Downstream of reciprocating compressors to remove lubricating oil that has carried over with the gas stream

  • Ahead of solid desiccant and beds to prevent liquid fracturing and dusting of the dry desiccant and fouling with paraffins or asphaltenes

  • Removal of water and pipeline contaminants from the inlet gas stream to dehydrating and treating plants

 

Principle of operation

 

  1. Gravity separation. Inlet velocity is reduced so bulk liquids fall into the sump.

  2. Impingement separation. Support tubes promote droplet coalescence while an impingement force remove liquids and solids down to approximately 10 microns.

  3. Cartridge filtration and coalescence. Filter media captures solid particulates and combines fine liquid mist into larger droplets.

  4. High-efficiency final separation. Anderson separation elements remove virtually all remaining coalesced liquid before clean gas exits the vessel.

EFFICIENCY

Solids

99% removal of solid particles from 0.5 – 3.0 Microns

 

Liquid and solids

99% removal of liquid and solid particles >= 3.0 Microns

SPECIFICATIONS

Operating Envelope

Designed in accordance with ASME Pressure Vessel Code, Section VIII and specific customer requirements

 

Service Media

Suitable for gas, air, and vapor services

 

Inlet/Outlet Pipe Sizes

2” – 24”

 

Materials

Carbon Steel; Stainless Steel (Optional)

 

Connections/Mounting

Flanged

 

Orientation

Horizontal (AFSH); Vertical (AFSV)

OTHER OPTIONS

Final stage

Mesh pads for horizontal configurations where appropriate, pocket-type separation vanes, or centrifugal separation element.

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Additional Gas Separation Vessels

Multistage gas separation vessel that removes bulk liquids, solid particulates, and fine liquid aerosols.

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Vertical vessel carrying an Anderson vane pack.

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Pocket vane separation dropped straight into the pipe run.

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Aftermarket filter, separator, and coalescing elements for the cartridge filtration stage.

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Steam turbine rotor close-up

Tell us the gas, the liquid load and the space you have.

Configurations can be tailored for flow rate, liquid loading, pressure, materials, access, and maintenance requirements.

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