IP Library › Granted Patent US 10,722,846
Granted Patent B2
US 10,722,846 · App. 16/422,325 · Granted Jul 28, 2020

Method and system for cleaning membrane filters

Inventors: Donald Floyd Bersell (Denver, CO); Charles Lonnie Meurer (Golden, CO)
Assignee: Meurer Research, Inc.
B01D65/04B01D61/20B01D63/082B01D65/02C02F1/44B01D2313/20B01D2315/06B01D2321/2091C02F2303/16
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Quick Facts
Patent No.
US 10,722,846
App. No.
16/422,325
Granted
Jul 28, 2020
Kind
B2
Abstract

The disclosure relates to a system and method for cleaning filters, such as membrane filters. More particularly, a method and system are disclosed for retaining a plurality of small particulates, preferably in the shape of beads, which contact sludge or other despots on the membrane filters to remove unwanted debris that would otherwise form on the cleaning filters. In various embodiments, the plurality of small particulates are retained in a permeable enclosure formed of wedgewire.

Claims (31)

1. A method for cleaning filtration membrane modules, comprising:

providing at least two removable housing structures having one or more filtration membranes inside, said one or more filtration membranes each having four sides, a top and a bottom, with each of said at least two removable housing structures having a screen that entirely surrounds one or more filtration membranes on all of said four sides and on said top and on said bottom, said at least two removable housing structures comprising at least four vertically extending panels on each side of said one or more filtration membranes and a horizontally extending top and a horizontally extending bottom, said removable housing structure, adapted to be positioned within a basin for containing wastewater;

positioning said at least two removable housing structures in said basin;

flushing the one or more filtration membranes with a liquid containing biologically inert particles;

cleaning the filtration membrane modules by circulating the biologically inert particles through the liquid and in a manner to achieve contact between the biologically inert particles and the one or more filtration membranes, said biologically inert particles impacting both sides of said one or more filtration membranes simultaneously during said circulating step;

wherein deposits situated on one or more surfaces of the one or more filtration membranes are mechanically abraded by the biologically inert particles, and wherein the biologically inert particles are of a size able to be retained within the at least two removable housing structures;

wherein during said circulating step, said biologically inert particles impact each of the four sides and top and bottom of the at least two removable housing structures, and wherein said screen has openings that permit fluid to flow therethrough, said at least two removable housing structures being devoid of any opening through which said biologically inert particles can escape during said circulating step; and

wherein said at least two removable housing structures operate as a containment module that prevents said plurality of biologically inert particles from being lost to the environment outside to said at least two removable housing structures.

2. The method as set forth in claim 1 , further comprising providing a feed device for gas to move said plurality of biologically inert particles upward along an outer surface of the one or more filtration membranes.

3. The method as set forth in claim 1 , wherein said screen is a wedgewire screen.

4. The method as set forth in claim 1 , wherein the biologically inert particles are non-porous and have a density between 1.0 g/ml and 1.10 g/ml.

5. The method as set forth in claim 1 , wherein said plurality of biologically inert particles are ellipsoid in shape and are approximately 2 mm to 4 mm in diameter.

6. A method for cleaning filtration membrane modules, comprising:

providing at least two removable housing structures having one or more filtration membranes inside, said one or more filtration membranes each having four sides, a top and a bottom, with each of said at least two removable housing structures having a screen that entirely surrounds one or more filtration membranes on all of said four sides and on said top and on said bottom, said at least two removable housing structures comprising at least four vertically extending panels on each side of said one or more filtration membranes and a horizontally extending top and a horizontally extending bottom, said removable housing structure, adapted to be positioned within a basin for containing wastewater;

positioning said at least two removable housing structures in said basin;

flushing the one or more filtration membranes with a liquid containing biologically inert particles;

cleaning the filtration membrane modules by circulating the biologically inert particles through the liquid and in a manner to achieve contact between the biologically inert particles and the one or more filtration membranes, said biologically inert particles impacting both sides of said one or more filtration membranes simultaneously during said circulating step;

wherein deposits situated on one or more surfaces of the one or more filtration membranes are mechanically abraded by the biologically inert particles, and wherein the biologically inert particles are of a size able to be retained within the at least two removable housing structures;

wherein during said circulating step, said biologically inert particles impact each of the four sides and top and bottom of the at least two removable housing structures, and wherein said screen has openings that permit fluid to flow therethrough, said at least two removable housing structures being devoid of any opening through which said biologically inert particles can escape during said circulating step; and

wherein said at least two removable housing structures comprise a forklift attachment utilized to engage and manipulate said at least two removable housing structures without damage to the one or more filtration membranes housed therein.

7. The method as set forth in claim 6 , wherein said screen is a wedgewire screen.

8. The method as set forth in claim 6 , wherein the biologically inert particles are non-porous and have a density between 1.0 g/ml and 1.10 g/ml.

9. The method as set forth in claim 6 , further comprising providing a feed device for gas to move said plurality of biologically inert particles upward along an outer surface of the one or more filtration membranes.

10. The method as set forth in claim 6 , wherein said at least two removable housing structures comprise handles and further comprising removing said at least two removable housing structures using said handles.

11. The method as set forth in claim 6 , wherein said plurality of biologically inert particles are ellipsoid in shape and are approximately 2 mm to 4 mm in diameter.

12. A system for cleaning a filtration membrane module, comprising at least two removable housing structures that each include a filtration membrane, each of said at least two removable housing structures completely surrounding said filtration membrane, each of said at least two removable housing structures having a screen on each of four sides, top and bottom of said at least two removable housing structures, said at least two removable housing structures containing a plurality of biologically inert particles that when set in circulation adjacent the at least two filtration membranes, cleaning the filtration membrane modules by mechanically abrading deposits situated on outer surfaces of the at least two filtration membranes, wherein said plurality of biologically inert particles are of a size larger than regularly spaced orifices of the at least two screens so as to restrain the biologically inert particles within the at least two removable housing structures; and

wherein the at least two removable housing structures are devoid of any opening through which said plurality of biologically inert particles can escape; and

wherein said plurality of biologically inert particles are non-porous, are approximately 2 mm to 4 mm in diameter, and have a density between 1.0 g/ml and 1.10 g/ml.

13. The system as set forth in claim 12 , wherein said at least two removable housing structures comprise handles to permit the removal of said at least two removable housing structures.

14. The system as set forth in claim 12 , wherein said one or more filtration membranes are reversibly removable from said at least two removable housing structures.

15. The system as set forth in claim 12 , wherein said screen is a wedgewire screen.

Assignments (2)
MERGER Recorded Jun 9, 2025
From: MEURER RESEARCH, INC.
To: PARKSON CORPORATION
Reel/Frame 071359/0338 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2019
From: BERSELL, DONALD FLOYD; MEURER, CHARLES LONNIE
To: MEURER RESEARCH, INC.
Reel/Frame 049279/0987 →
Continuity (5)
Continuation 16131168 · Sep 14, 2018
Continuation 15817798 · Nov 20, 2017
Continuation 13717494 · Dec 17, 2012
Provisional Application 61576662 · Dec 16, 2011
Related Publication 20190275467A1 · Sep 12, 2019