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The PURO CELL® filter is a carbon loaded rigid box-type gas phase filter engineered to provide medium and high-efficiency filtration combined with odor control. Its construction eliminates the need for retainers and special external wire media supports. A high surface area-to-depth ratio provides the maximum amount of effective filter media in areas of minimum in-line duct space. These carbon-loaded pleated box filters clean the air by removing airborne molecular contaminants present at levels less than one particle per million.
Features:
Applications:
The Purolator PURO CELL filter contains highly activated carbon for high efficiency in low concentration applications. Specific applications include air conditioning filters, furnace filters, heating vents, air intakes, air purification devices, and ozone removal devices.
Appropriate end users are those involved with filtration of hospital facilities, chemical plant offices/labs, pollution control areas, sewage disposal and waste management plant offices, airports, kitchens and restaurants, or commercial offices.
Critical manufacturing industries (including pharmaceuticals, micro electronics, and cleanrooms) require top quality air filtration products like the PURO CELL filter to remove low level concentrations of gases.
Frame Construction:
The PURO CELL perimeter frame is constructed of high strength, corrosion-resistant, galvanized steel. To prevent air bypass, the filter pak is sealed to the frame on all sides. Filter integrity is maintained by pleat stabilizers which are bonded to both the air entry and air exit sides of the pak.
Media and Backing:
Each PURO CELL filter is loaded with 600 grams/sq. meter (GSM) of superior 90% active, 20 x 50 mesh-size carbon particles. Our top-grade carbon provides six times the adsorbent surface area of standard GAC carbon, making it vastly more effective, efficient, and long-lasting. No adhesive is used in the media: Fine mesh carbon granules are bonded to the synthetic fibers by a unique thermal process that requires no adhesive, and blinds less than 1.5% of each carbon particle's effective surface area. As a result, more than 98.5% of the carbon's surface is exposed to contaminated air, resulting in maximum gas adsorbing capacity and efficiency. This bonding method also features minimal dust release.