Poly-MAXX Absolute-Rated Filter

Current Price:
$163.00
Shipping calculated at checkout.
Stock Status:
In stock, ready to ship
Stock Status:
Sold Out
Lead Time: 12 days
note

Available for pickup at San Clemente Warehouse

970 Calle Negocio
San Clemente CA 92673
United States

Usually ready in 24 hours
Note

We currently only ship to locations within the United States of America.

The Poly-MAXX Absolute-Rated Filter Cartridge provides a seamless blend of high filtration efficiency with optimal throughput. This provides the benefits of absolute-rated depth media without sacrificing flowrate.

These depth filters are constructed on the latest microfiber blowing equipment, capable of accurately controlling fiber diameter and integrity. The end product is an absolute-rated depth filer with the most uniform media and product consistency in the industry.

Each cartridge is made with 100% polypropylene media, giving it an expansive range of chemical compatibility capable of meeting the demands of critical applications. Additionally, all materials used in construction meet USP Class VI and CFR 21 requirements for food and beverage contact.

The pleated design of the filter media allows for maximized surface area, which allows for optimal flowrates and increased filter life. This, coupled with the 99.98% retention rating makes this the perfect filter to use in botanical extraction and post-processing applications where high efficiency is required and flowrate cannot be compromised.

Specifications

Cartridge Type
PMX (Poly-MAXX)
Cartridge Length
20-inch
Outer Diameter
2.7-inch
O-Ring Material
EPDM

Applications

  • Water Purification
  • Food & Beverage
  • Chemicals
  • Botanical Extract

Downloads

Features

  • 99.98% Filtration Efficiency means reliable and consistent filtration.
  • Pleated design provides a large surface area, increasing flow rate and filter life.
  • Low pressure drops.
  • Highly compatible with various chemicals and solvents.
  • Meets FDA, CFR 21 and USP Class VI standards.
  • No particle bypass due to thermal bonding.