PCI A8 Series Modulesupplier page
Module product series:
- A8 Series module
About PCI A8 Series Module
The Large Diameter A8 Modules permit simple, rapid, high area and inexpensive MF and UF tubular filtration for new and existing installations in the waste water industry.
Suitable for fluids with high viscosity and/or suspended solids as their wide flow paths make them highly resistant to blocking. Pre-treatment requirements are minimal and often completely avoided, so no prefiltration needed – benefit that renders them a cost-effective choice for many small systems.
Key Applications:
- Side stream MBR
- Recovery and reuse of water from waste streams
- Leachate
- Industrial Clarification
- Brine Recovery
- Food industry effluents
- Metal and Mining Wastewater
- Oil and Gas Wastewater
- Pharmaceutical Wastewater
- Chemical Wastewater
- Textile Wastewater.
PCI Membranes’ Side-Stream Membrane Configuration Advantages
- Suitable as a replacement to competitor products with 27 m2 or 36 m2 membrane area
- Unique offer to install tubular UF membranes with cut off 20k Da, 100k Da, 200k Da, 450k Da or 0.2 micron separation point in an 8 inch housing
- Lower Final Sludge Production: handling and disposal cost benefits
- Superior hygiene and practical operation: side-stream installations do not require a mechanical pre-filtration system for the removal of 1 to 2 mm average or greater particle sizes. This extra plant equipment creates enormous operational, health and safety problems
- Less frequent and simpler membrane cleaning operation
- Simpler membrane maintenance: submersed membranes just need to be removed from the basin
- Optimum engineering, personal health and safety design: ability of intervening on the ultrafiltration membrane modules without any direct contact with the activated sludge or wastewater fluids.
Find out more about the tubular A8 Series:
Module product series:
- A8 Series module
MBR Case studies and specifications
- PCI Membranes Product Brochure and Case Studies (PDF 3.0MB)
Company summary
About this page
This page was last updated on 09 June 2021
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