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Poromet® Cleanable Stainless Steel Filter Elements
Custom &
Standard Sizes
For high-temperature and high-corrosion processing applications.
For over 30 years, Purolator Products Company has been
the recognized leader in porous metal filtration technology. With a
variety of porous metal media to choose from, Purolator has met the stringent
needs of customers in the aerospace, chemical processing, pharmaceutical,
and nuclear power industries. Purolator now offers these proprietary
media in the Poromet® Series, a standard element product line designed
for most commercial housings.
Poromet® elements are designed for high-temperature
and high-corrosion applications. They are superior-quality filters
whose performance exceeds every other competitive element. Poromet®
elements are designed to lower your costs by providing on-stream life
and years of trouble-free service. In addition, Poromet® elements
are easily cleaned, eliminating growing disposal costs.
Features/Benefits
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Electron Beam Welded End Fittings.
Purolator's exclusive electron beam welding process provides superior
product quality at reduced costs. Heat distortion, oxidation, and
sensitization are eliminated. The result is an element that is better
able to withstand high temperatures, corrosive chemicals, and repeated
cleanings. Poromet® elements are offered with double open ends,
1" NPT, or 222 double O-ring end fitting configurations.
- Electropolished Butt-Welded Support Cores. Purolator-manufactured
cores are designed to withstand pressures up to 250 psid. Electropolishing
removes all metal burrs, so the filtered fluids pass through the element
with less restriction.
- Laser-Marked End Fittings. Each Poromet® Series element
is permanently laser-marked for ease of identification and traceability.
- Gaskets and O-Rings. Standard materials are Buna-N. Other compounds
are also available.
- 316L Stainless Steel. All Poromet® Series elements are
made from 316L stainless steel filter media. They are ideal for temperatures
up to 850° F and highly corrosive applications. Volume production
makes Poromet® Series elements price-competitive with other elements
made from lesser alloys.
- Extended Filtration Area. Computer modeling optimizes the number
of pleats and pleat height to maximize the filtering surface area. In
fact, Poromet® pleated elements have over twice the filtering
area as competitive elements. This means lower differential pressures,
greater dirt-holding capacity and longer on-stream life.
- Quality Control. Every Poromet element is bubble-point-tested
prior to shipment to ensure product integrity and performance.
- Standard Sizes. Poromet® elements are designed to replace
standard stringwound and pleated media cartridges. They are offered
in 2 3/8" diameter by 10", 20", 30" and 40" lengths.
Media Choices
| Poromesh® media. Multiple layers
of diffusion-bonded wire cloth are pleated to maximize filter area
and on-stream life. Poromesh media capture contaminants on the upstream
surface of the filter element, where it is easily cleaned or back-flushed. |
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| Porofelt® media. Microscopic,
stainless steel fibers are random-laid and sintered in our proprietary
diffusion bonding process. These media are then supported between
two or more layers of wire cloth and pleated. Porofelt depth media
traps particles deep within its complex pore structure. Porofelt elements
provide finer filtration, with optimum dirt- holding capacity and
permeability. |
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| Poroplate® media.
A self-supporting medium made from multiple layers of woven wire cloth,
sintered into a rigid, porous metal structure. Poroplate elements
are cylindrical, surface type filters that are perfect for back- flushing
and repeated cleaning. Because Poroplate elements are self- supporting,
expensive filter support cores are eliminated. |
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Click here if you'd like
to learn more about Purolator Facet's media choices.

Additional information can be downloaded in Adobe Acrobat PDF format:
• Poromet
Cleanable Stainless Steel Elements (4 pages, 243kb)
• Back
wash cleaning method for Porplate stainless steel elements (2 pages,
31kb)
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