IP Library Granted Patent US 12685948
Granted Patent B2
US 12685948 · App. 18/190,256 · Granted Jul 21, 2026

Systems and adsorption filters for filtering particulate matter from fluid streams

Inventors: Stevie Horton Smith (Galveston, TX); Travis McGee (Angleton, TX); Jon Leslie Howe (Texas City, TX); Dan Faust (League City, TX); Annette B. Crabtree Smith (Galveston, TX); Justin Smith (Missouri City, TX)
B01D15/00
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Quick Facts
Patent No.
US 12685948
App. No.
18/190,256
Granted
Jul 21, 2026
Kind
B2
Abstract

An adsorption filter for removing particulate matter from a fluid includes an outer housing including an upper end, a lower end, and an inner cavity. In addition, the adsorption filter includes a filter assembly disposed in the inner cavity of the outer housing. The filter assembly includes a supply conduit having an inlet end, an outlet end disposed in the inner cavity, and a linear section extending vertically from the outlet end. The supply conduit is configured to flow the fluid into the inner cavity. Further, the filter assembly includes a first pair of filter discs mounted to the linear section of the supply conduit. The first pair of filter discs includes an upper filter disc and a lower filter disc positioned below the upper filter disc. Each filter disc includes a base and a plurality of parallel flow diverters extending from the base. Each base and each flow diverter slidingly engages an inner surface of the outer housing. Each base includes a flow orifice extending vertically therethrough. The flow diverters of the upper filter disc extend downward from the base of the upper filter disc and the flow diverters of the lower filter disc extend upward from the base of the lower filter disc. The flow diverters of the upper filter disc intermesh with the flow diverters of the lower filter disc. An outer surface of each base and an outer surface of each flow diverter is coated in an adhesive configured to capture the particulate matter.

Claims (46)

1 . An adsorption filter for removing particulate matter from a fluid, the adsorption filter comprising:

an outer housing including an upper end, a lower end, and an inner cavity;

a filter assembly disposed in the inner cavity of the outer housing, wherein the filter assembly comprises:

a supply conduit having an inlet end, an outlet end disposed in the inner cavity, and a linear section extending vertically from the outlet end, wherein the supply conduit is configured to flow the fluid into the inner cavity;

a first pair of filter discs mounted to the linear section of the supply conduit, wherein the first pair of filter discs includes an upper filter disc and a lower filter disc positioned below the upper filter disc;

wherein each filter disc includes a base and a plurality of parallel flow diverters extending from the base, wherein an outer periphery of each base slidingly engages an inner surface of the outer housing that defines the inner cavity, and each flow diverter slidingly engages the inner surface of the outer housing;

wherein each base includes a flow orifice extending vertically therethrough;

wherein the plurality of parallel flow diverters of the upper filter disc extend downward from the base of the upper filter disc and the plurality of parallel flow diverters of the lower filter disc extend upward from the base of the lower filter disc, and wherein the plurality of parallel flow diverters of the upper filter disc intermesh with the plurality of parallel flow diverters of the lower filter disc such that one of the plurality of parallel flow diverters of the upper filter disc extends between each pair of laterally adjacent flow diverters of the plurality of parallel flow diverters of the lower filter disc;

wherein an outer surface of each base and an outer surface of each flow diverter is coated in an adhesive configured to capture the particulate matter.

2 . The adsorption filter of claim 1 , further comprising a diffuser positioned in the inner cavity below the outlet end of the supply conduit, wherein the diffuser is configured to change a direction of flow of the fluid exiting the outlet end of the supply conduit.

3 . The adsorption filter of claim 2 , wherein the diffuser has an upper end proximal the outlet end of the supply conduit, a lower end distal the outlet end of the supply conduit, and a width that increases moving vertically from the upper end of the diffuser to the lower end of the diffuser.

4 . The adsorption filter of claim 3 , wherein the diffuser has an outer surface coated in the adhesive.

5 . The adsorption filter of claim 1 , wherein the inner surface of the outer housing is coated in the adhesive.

6 . The adsorption filter of claim 1 , further comprising:

a plurality of pairs of filter discs mounted to the linear section of the supply conduit, wherein the plurality of pairs of filter discs are vertically spaced apart;

wherein each pair of filter discs includes an upper filter disc and a lower filter disc positioned below the upper filter disc;

wherein each filter disc includes a base and a plurality of parallel flow diverters extending from the base, wherein each base and each flow diverter slidingly engages an inner surface of the outer housing;

wherein each base includes a flow orifice extending vertically therethrough;

wherein the plurality of parallel flow diverters of each upper filter disc extend downward from the base of the upper filter disc and the plurality of parallel flow diverters of each lower filter disc extend upward from the base of the lower filter disc, and wherein the plurality of parallel flow diverters of the upper filter disc of each pair of filter discs intermesh with the plurality of parallel flow diverters of the lower filter disc of the pair of filter discs;

wherein an outer surface of each base and an outer surface of each flow diverter is coated in the adhesive.

7 . The adsorption filter of claim 6 , wherein each filter disc has a central axis, and wherein the central axes of the filter discs of the plurality of pairs of filter discs are coaxially aligned.

8 . The adsorption filter of claim 7 , wherein the flow orifice of the base of each upper filter disc is angularly spaced from the flow orifice of the base of the corresponding lower filter disc by 180° as measured about the central axes of the filter discs of the plurality of pairs of filter discs.

9 . The adsorption filter of claim 8 , further comprising a top hat mounted to the linear section of the supply conduit above the plurality of pairs of filter discs, wherein the top hat includes a flow orifice extending vertically therethrough.

10 . The adsorption filter of claim 1 , further comprising:

a bypass conduit extending through the outer housing, wherein the bypass conduit has an inlet end disposed in the inner cavity of the outer housing and an outlet end external the outer housing, wherein the outlet end of the supply conduit is disposed in the inlet end of the bypass conduit;

a flowmeter disposed along the bypass conduit and configured to choke a flow of the fluid through the bypass conduit.

11 . The adsorption filter of claim 1 , wherein the outer housing has a vertically oriented central axis;

a plurality of axially spaced pairs of filter discs mounted to the linear section of the supply conduit, wherein each pair of filter discs includes an upper filter disc and a lower filter disc positioned below the upper filter disc;

wherein each filter disc includes a base and a plurality of parallel flow diverters extending from the base, wherein an outer periphery of each base is defined by a radially outer cylindrical surface that slidingly engages a radially inner cylindrical surface of the outer housing, wherein each base of the plurality of axially spaced pairs of filter discs includes a flow orifice extending vertically therethrough;

wherein the flow orifice of each upper filter disc is angularly spaced from the flow orifice of the corresponding lower filter disc relative to the central axis;

wherein each flow diverter has a first end and a second end opposite the first end, wherein the first end of each flow diverter is contiguous with the radially outer cylindrical surface of the corresponding base and slidingly engages the radially inner cylindrical surface of the outer housing and the second end of each flow diverter is contiguous with the radially outer cylindrical surface of the corresponding base and slidingly engages the radially inner cylindrical surface of the outer housing;

wherein the plurality of parallel flow diverters of each upper filter disc extend axially from a lower surface of the corresponding base and the plurality of parallel flow diverters of each lower filter disc extend upward from an upper surface of the corresponding base;

wherein the upper surface and the lower surface of each base is coated with the adhesive.

12 . The adsorption filter of claim 11 , further comprising a top hat mounted to the linear section of the supply conduit axially above the plurality of axially spaced pairs of filter discs, wherein the top hat has an upper planar surface, a lower planar surface oriented parallel to the upper planar surface, a radially outer cylindrical surface that slidingly engages the radially inner cylindrical surface of the outer housing, and a flow orifice extending axially from the upper planar surface to the lower planar surface.

13 . The adsorption filter of claim 12 , wherein the flow orifice of the top hat is angularly spaced from the flow orifice of the upper filter disc of an axially adjacent pair of filter discs relative to the central axis.

14 . The adsorption filter of claim 13 , further comprising a diffuser positioned in the inner cavity below the outlet end of the supply conduit, wherein the diffuser is configured to direct a flow of the fluid exiting the outlet end of the supply conduit radially outward toward the radially inner cylindrical surface of the outer housing.

15 . The adsorption filter of claim 14 , wherein an outer surface of the diffuser and the radially inner cylindrical surface of the outer housing are coated in the adhesive.

16 . The adsorption filter of claim 12 , wherein each filter disc has a central axis and the top hat has a central axis, and wherein the central axes of the filter discs of the plurality of axially spaced pairs of filter discs and the central axis of the top hat are coaxially aligned with the central axis of the outer housing.

17 . The adsorption filter of claim 11 , wherein the filter assembly includes a plurality of axially spaced spacers mounted to the linear section of the supply conduit, wherein one spacer is axially positioned between each pair of axially adjacent filter discs, and one spacer is axially positioned between the top hat and an axially adjacent pair of filter discs.

18 . The adsorption filter of claim 11 , wherein the outer housing includes a first port extending radially therethrough proximal the upper end of the outer housing and a second port extending radially therethrough proximal the upper end of the outer housing;

wherein the supply conduit extends radially through the first port;

wherein the second port is configured to output the fluid from the adsorption filter.

19 . The adsorption filter of claim 11 , further comprising:

a bypass conduit extending through the lower end of the outer housing, wherein the bypass conduit has an inlet end disposed in the inner cavity of the outer housing and an outlet end external the outer housing, wherein the outlet end of the supply conduit is disposed in the inlet end of the bypass conduit, and wherein an annulus is positioned between the inlet end of the bypass conduit and the outlet end of the supply conduit;

a flowmeter disposed along the bypass conduit and configured to adjust a flow of the fluid through the bypass conduit.

20 . The adsorption filter of claim 1 , wherein each flow diverter has a first end and a second end opposite the first end, wherein the first end of each flow diverter slidingly engages the inner surface of the outer housing and the second end of each flow diverter slidingly engages the inner surface of the outer housing.