APSL Systems Limited
5 products found

APSL Systems Limited products

Produced Water Treatment

APSL - APSL Twin-Spin Deoiling Hydrocyclones

APSL Twin-Spin Deoiling Hydrocyclones are specifically designed to enhance oil separation efficiency through mechanical improvements. These hydrocyclones support upgrades and retrofits of existing equipment, regardless of its original supply source. Their design boosts flow, performance, material durability, reliability, and overall system lifecycle. APSL leverages its extensive expertise to offer bespoke solutions by utilizing unique features of its proprietary technology or enhancing existing equipment designs. The upgrade service covers the full spectrum from inspection to design, fabrication, and installation, tailored to meet customer specifications. Trial site evaluation units are also made available as required. These advanced features are intended to ensure operability and maintainability while delivering consistent performance in demanding oil and gas applications.

APSL - Desanding Hydrocyclones for Oil & Gas Applications

APSL Systems provides a comprehensive range of solid-liquid desanding hydrocyclones designed for oil and gas industry applications. These hydrocyclones are adept at separating sand and particulates from multiphase streams, including produced water, seawater, and gas streams. They are integral in pre and post choke wellhead applications, enhancing the efficiency of oilfield operations. The design considers factors like fluid type, temperature, pressure, and solid characteristics, with small cyclones required for particles under 30 microns. APSL offers solutions ranging from small ceramic cyclones for erosion resistance to larger options for handling particles over 50 microns. Their pressure vessels meet various ANSI or API standards and can be constructed from materials like carbon steel, duplex, or exotic alternatives. Besides new solutions, APSL provides retrofitting and upgrade services to improve existing systems, offering enhancements to performance, reliability, and longevity.

APSL - Mechanical \ Hydraulic Induced Gas Flotation & CFU

Superior performance, low cost and compact design are just a few reasons why APSL Induced Gas Flotation continues to be one of the preferred technologies for removing hydrocarbons and solids from produced water. APSL supplies a complete range of high performance vertical single cell and horizontal multi-cell hydraulic as well as multi-cell mechanically induced gas flotation machines and compact flotation units.

 

APSL - Deep Bed Nutshell Filters

The APSL Deep Bed Nutshell Filter is the next generation of automated, self-cleaning granular media filter. This high efficiency design outperforms any other granular media filter. No other style of filter; sand, nutshell, or mixed media, has the ability to fluidise and fully suspend the media and contaminants for media regeneration.

Seawater Treatment

APSL - Sea Water Coarse Filtration

The APSL Twin-Slot automatic backwashing filter is engineered for complex offshore oil and gas sea water filtration needs. This robust system is designed to handle contaminants such as silica solids and organic matter, including plankton that proliferates during seasonal blooms. These contaminants adhere to the filter screens, necessitating a high-performance backwash mechanism. With its highly efficient backwash system, the Twin-Slot filter is also effective for filtering oily produced water, where oil present can cause contaminants to stick to the filters. To maximize flow flexibility, it accommodates 1 to 4 high-performance slotted wedge wire screens inside a common pressure vessel. Filtration capacities range from 25 to 2,000 micrometers, with options down to 2 micrometers for finer filtration needs utilizing Twin-Slot+ elements. The filter's construction is highly durable, employing materials like SS316L, Duplex, and Super Duplex, with alternatives such as Titanium available. Its design adheres to various pressure vessel standards, ensuring reliability and longevity in demanding environments.