BIO-RESISTANT FILTER COALESCER CARTRIDGE
A filter coalescer cartridge for treating jet fuels is disclosed. The filter coalescer cartridge has spaced apart filter/coalescer layers to effectively remove particulate contaminates and water from the transient fuel being treated. The outer most layer is a knitted sock material formed from cotton threads including a metallic silver disposed thereon to provide an anti-microbial property to the sock material.
1 . A filter coalescer cartridge for treating jet fuel comprising:
a pleat block assembly;
a fiber wrap surrounding the pleat block assembly; and
a knitted sock material surrounding at least the fiber wrap, the knitted sock material including a metallic silver to provide an anti-microbial property to the sock material.
2 . The filter coalescer cartridge according to claim 1 wherein the cartridge has a generally cylindrical shape.
3 . The filter coalescer cartridge according to claim 1 wherein the pleat block assembly includes:
a first layer of pleated glass fiber filter media having oppositely disposed facing surfaces formed in an annular array of individual parallel spaced apart pleats;
a second layer of pleated glass fiber filter media having oppositely disposed facing surfaces formed in an annular array of individual parallel spaced apart pleats, the second layer of pleated filter media surrounding the first layer of filter media to form a nested pleated structure such that outer facing peaks of the first layer of media fit within inner valleys of the second layer of media and inner facing peaks of the second media fit within outer valleys of the first layer of media;
a fluid pervious support layer surrounding the outer surface of the second layer of pleated filter media; and
an intermediate spacer layer disposed between the first and second layers of pleated filter media.
4 . The filter coalescer cartridge according to claim 3 wherein the first layer and the second layer of filter media are formed of glass fibers of at least two different fiber diameter mixes.
5 . The filter coalescer cartridge according to claim 4 wherein one of the fiber diameter mixes is comprised of fibers of one diameter and the fiber diameter of the other of the fiber diameter mixes contains fibers of a greater diameter.
6 . The filter coalescer cartridge according to claim 3 wherein the intermediate spacer layer is comprised of a fluid impervious material.
7 . The filter coalescer cartridge according to claim 6 wherein the fluid impervious material effectively spaces the pleats of the first layer from the pleats of the second layer of filter media.
8 . The filter coalescer cartridge according to claim 1 including a perforated tube surrounding the pleat block assembly.
9 . The filter coalescer cartridge according to claim 1 wherein the pleat block assembly includes:
a first pleat block;
a second pleat block disposed adjacent to and surrounding the first pleat block;
a first perforated tube interposed between an outermost surface of the first pleat block and an innermost surface of the second pleat block; and
a second perforated tube surrounding the second pleat block.
10 . The filter coalescer cartridge according to claim 9 wherein the first pleat block and the second pleat block are formed from a dual layer media constructed of two different glass fiber mixes incorporated into a unitary media and a screen support layer surrounding an outer surface of the unitary media.
11 . The filter coalescer cartridge according to claim 1 wherein the fiber wrap surrounding the pleat block assembly includes:
a first fiber layer having an inner and an outer surface;
a second fiber layer having an inner and an outer surface surrounding the outer surface of the first fiber layer; and
a fluid pervious support layer surrounding the outer surface of the second fiber layer.
12 . The filter coalescer cartridge according to claim 11 wherein the inner fiber layer and the outer fiber layer are formed of glass fibers.
13 . The filter coalescer cartridge according to claim 1 including a layer of non-woven polyester fiber surrounding the fiber wrap.
14 . The filter coalescer cartridge according to claim 1 wherein the knitted sock material is formed form a plurality of cotton threads woven together, a selected quantity of the threads including at least one plastic filament having metallic silver particles disposed thereon.
15 . A filter coalescer cartridge for treating jet fuel comprising:
a pleat block assembly;
a fiber wrap surrounding the pleat block assembly including a first glass fiber layer having an inner and an outer surface, a second glass fiber layer having an inner and an outer surface surrounding the outer surface of the first glass fiber layer, and a fluid pervious support layer surrounding the outer surface of the second glass fiber layer; and
a knitted sock material surrounding at least the fiber wrap, the knitted sock material formed form a plurality of cotton threads woven together, a selected quantity of the threads including at least one plastic filament having metallic silver particles disposed thereon to provide an anti-microbial property to the sock material.
16 . The filter coalescer cartridge according to claim 15 wherein the pleat block assembly includes:
a first layer of pleated glass fiber filter media having oppositely disposed facing surfaces formed in an annular array of individual parallel spaced apart pleats;
a second layer of pleated glass fiber filter media having oppositely disposed facing surfaces formed in an annular array of individual parallel spaced apart pleats, the second layer of pleated filter media surrounding the first layer of filter media to form a nested pleated structure such that outer facing peaks of the first layer of media fit within inner valleys of the second layer of media and inner facing peaks of the second media fit within outer valleys of the first layer of media;
a fluid pervious support layer surrounding the outer surface of the second layer of pleated filter media; and
a fluid pervious intermediate spacer layer disposed between the first and second layers of pleated filter media.
17 . The filter coalescer cartridge according to claim 15 wherein the pleat block assembly includes:
a first pleat block;
a second pleat block disposed adjacent to and surrounding the first pleat block;
a first perforated tube interposed between an outermost surface of the first pleat block and an innermost surface of the second pleat block; and
a second perforated tube surrounding the second pleat block.
18 . A process for forming a filter coalescer for treating jet fuel comprising:
forming a pleat block assembly;
forming a fiber wrap surrounding the pleat block assembly; and
forming a knitted sock material surrounding at least the fiber wrap, the knitted sock material formed form a plurality of cotton threads woven together, a selected quantity of the threads including at least one plastic filament having metallic silver particles disposed thereon to provide an anti-microbial property to the sock material.
19 . The process of claim 18 including forming the pleat block assembly by:
forming a first layer of pleated glass fiber filter media having oppositely disposed facing surfaces formed in an annular array of individual parallel spaced apart pleats;
forming a second layer of pleated glass fiber filter media having oppositely disposed facing surfaces formed in an annular array of individual parallel spaced apart pleats, the second layer of pleated filter media surrounding the first layer of filter media to form a nested pleated structure such that outer facing peaks of the first layer of media fit within inner valleys of the second layer of media and inner facing peaks of the second media fit within outer valleys of the first layer of media;
forming a fluid pervious support layer surrounding the outer surface of the second layer of pleated filter media; and
forming a fluid pervious intermediate spacer layer disposed between the first and second layers of pleated filter media.
20 . The process of claim 18 including forming the pleat block assembly by:
forming a first pleat block;
forming a second pleat block disposed adjacent to and surrounding the first pleat block;
forming a first perforated tube interposed between an outermost surface of the first pleat block and an innermost surface of the second pleat block; and
forming a second perforated tube surrounding the second pleat block.