IP Library › Granted Patent US 12,268,994
Granted Patent B2
US 12,268,994 · App. 18/755,521 · Granted Apr 8, 2025

Durable biofouling protection

Inventors: Brian McMurray (Aberdeen, NC); Cliff Sharpe (Aberdeen, NC); Mike Termini (Aberdeen, NC); Emily Ralston (Aberdeen, NC); Abraham Stephens (Aberdeen, NC); Ed Dormier (Aberdeen, NC); Lindsey Calcutt (Aberdeen, NC); Joseph Basista (Chandler, AZ)
Assignee: BIOFOULING TECHNOLOGIES, INC.
B01D69/06A01N25/10A01N25/34A01N31/02A01N59/00A01N59/16B01D65/08B01D67/0088B01D69/02B01D2315/06B01D2321/168B01D2325/48B63H5/165
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Quick Facts
Patent No.
US 12,268,994
App. No.
18/755,521
Granted
Apr 8, 2025
Kind
B2
Abstract

Disclosed are devices, methods and/or systems for use in protecting items and/or structures that are exposed to, submerged and/or partially submerged in aquatic environments from contamination and/or fouling due to the incursion and/or colonization by specific types and/or kinds of biologic organisms and/or plants, including the protection from micro- and/or macro-fouling for extended periods of time of exposure to aquatic environments.

Claims (49)

1. A device for reducing biofouling on a surface at least partially submerged in an aqueous environment, the device comprising:

a structure which is or becomes fluid permeable, said structure defining an open top adapted to receive said surface therethrough, wherein the open top defines one or more walls that remain spaced apart from the surface in a not fully sealed arrangement, wherein the structure comprises at least one of mesh, lattice, fenestration, or holes that enable fluid flow therethrough, wherein the structure is flexible and defines a first side and a second side,

wherein, when the structure at least partially surrounds the surface in the aqueous environment such that the first side of the structure faces the surface, the structure allows fluid exchange therethrough to the surface while preventing or limiting biofouling on the surface such that a first chemistry of the aqueous environment between the surface and the first side of the structure is different than a second chemistry of the aqueous environment outside the second side of the structure, wherein the first chemistry is measured in the aqueous environment proximate the surface, wherein the second chemistry is measured in the aqueous environment at a spaced apart distance from the second side of the structure facing away from the surface.

2. The device of claim 1 further comprising at least one floating boom attached to the structure, wherein the at least one floating boom is configured to float on a top surface of the aqueous environment, wherein the structure is attached to the at least one floating boom so as to hang therefrom into the aqueous environment.

3. The device of claim 1 , wherein the structure includes biocide.

4. The device of claim 1 , wherein the structure comprises a fabric layer.

5. The device of claim 1 , wherein the fabric layer is formed of a three-dimensional fabric or fibrous matrix fashioned from interwoven or intertwined strands of thread formed into a lattice, mesh, or fenestrated arrangement.

6. The device of claim 1 , wherein the structure comprises at least one of a membrane, a film, or a sheet.

7. The device of claim 1 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure provides an average water exchange of about 0.1% to 500% of a volume of water therethrough each hour.

8. The device of claim 1 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure has a permeability within a range of about 0.06-100 milliliters of water per second per square centimeter.

9. The device of claim 1 , wherein the first water chemistry is different than the second water chemistry by having at least one difference of a water chemistry characteristic, wherein the water chemistry characteristic is one of dissolved oxygen, pH, total dissolved nitrogen, ammonium, nitrates, orthophosphates, total dissolved phosphates, silica, alkalinity, salinity, or chlorophyll.

10. The device of claim 9 , wherein the at least one difference of the water chemistry characteristic is at least a 10% difference as measured after the structure is at least partially submerged in the aqueous environment for at least 2 days.

11. The device of claim 1 , wherein the spaced apart distance from the second side of the structure is 12 inches.

12. The device of claim 1 , wherein the first chemistry is measured in the aqueous environment proximate the surface at a position that is spaced apart from the first side of the structure and spaced apart from the surface.

13. A material for reducing biofouling on a surface at least partially submerged in an aqueous environment, the material comprising:

a structure which is or becomes fluid permeable, said structure defining an open top adapted to receive said surface therethrough, wherein the open top defines one or more walls that remain spaced apart from the surface in a not fully sealed arrangement, wherein the structure comprises at least one of mesh, lattice, fenestration, or holes that enable fluid flow therethrough, wherein the structure is flexible and defines a first side and a second side,

wherein, when the structure at least partially surrounds the surface in the aqueous environment such that the first side of the structure faces the surface, the structure allows fluid exchange therethrough to the surface while preventing or limiting biofouling on the surface such that a first chemistry of the aqueous environment between the surface and the first side of the structure is different than a second chemistry of the aqueous environment outside the second side of the structure, wherein the first chemistry is measured in the aqueous environment proximate the surface, wherein the second chemistry is measured in the aqueous environment at a spaced apart distance from the second side of the structure facing away from the surface.

14. The material of claim 13 , wherein the structure comprises a fabric layer.

15. The material of claim 14 , wherein the fabric layer is formed of a three-dimensional fabric or fibrous matrix fashioned from interwoven or intertwined strands of thread formed into a lattice, mesh, or fenestrated arrangement.

16. The material of claim 13 , wherein the structure comprises at least one of a membrane, a film, or a sheet.

17. The material of claim 13 , wherein the structure includes biocide.

18. The material of claim 13 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure provides an average water exchange of about 0.1% to 200% of a volume of water therethrough each hour.

19. The material of claim 13 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure provides an average water exchange of about 0.1% to 500% of a volume of water therethrough each hour.

20. The material of claim 13 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure has a permeability within a range of about 0.06-46.71 milliliters of water per second per square centimeter.

21. The material of claim 13 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure has a permeability within a range of about 0.90-14.72 milliliters of water per second per square centimeter.

22. The material of claim 13 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure has a permeability of about 100 milliliters of water per second per square centimeter or less.

23. The material of claim 13 , wherein the first water chemistry is different than the second water chemistry by having at least one difference of a water chemistry characteristic, wherein the water chemistry characteristic is one of dissolved oxygen, pH, total dissolved nitrogen, ammonium, nitrates, orthophosphates, total dissolved phosphates, silica, alkalinity, salinity, or chlorophyll.

24. The material of claim 23 , wherein the at least one difference of the water chemistry characteristic is at least a 10% difference as measured after the structure is at least partially submerged in the aqueous environment for at least 2 days.

25. The material of claim 13 , wherein the spaced apart distance from the second side of the structure is 12 inches.

26. The material of claim 13 , wherein the first chemistry is measured in the aqueous environment proximate the surface at a position that is spaced apart from the first side of the structure and spaced apart from the surface.

27. A roll or sheet of material that is deployable for reducing biofouling on a surface at least partially submerged in an aqueous environment, the material comprising:

a structure which is or becomes fluid permeable, said structure defining an open top adapted to receive said surface therethrough, wherein the open top defines one or more walls that remain spaced apart from the surface in a not fully sealed arrangement, wherein the structure comprises at least one of mesh, lattice, fenestration, or holes that enable fluid flow therethrough, wherein the structure is flexible and defines a first side and a second side,

wherein, when the structure at least partially surrounds the surface in the aqueous environment such that the first side of the structure faces the surface, the structure allows fluid exchange therethrough to the surface while preventing or limiting biofouling on the surface such that a first chemistry of the aqueous environment between the surface and the first side of the structure is different than a second chemistry of the aqueous environment outside the second side of the structure, wherein the first chemistry is measured in the aqueous environment proximate the surface, wherein the second chemistry is measured in the aqueous environment at a spaced apart distance from the second side of the structure facing away from the surface.

28. The roll or sheet of material of claim 27 , wherein the structure includes biocide.

29. The roll or sheet of material of claim 27 , wherein the structure comprises a fabric layer.

30. The roll or sheet of material of claim 27 , wherein the fabric layer is formed of a three-dimensional fabric or fibrous matrix fashioned from interwoven or intertwined strands of thread formed into a lattice, mesh, or fenestrated arrangement.

31. The roll or sheet of material of claim 27 , wherein the structure comprises at least one of a membrane or a film.

32. The roll or sheet of material of claim 27 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure provides an average water exchange of about 0.1% to 500% of a volume of water therethrough each hour.

33. The roll or sheet of material of claim 27 , wherein, when the structure at least partially surrounds the surface in the aqueous environment, the structure has a permeability within a range of about 0.06-46.71 milliliters of water per second per square centimeter.

34. The roll or sheet of material of claim 27 , wherein the first water chemistry is different than the second water chemistry by having at least one difference of a water chemistry characteristic, wherein the water chemistry characteristic is one of dissolved oxygen, pH, total dissolved nitrogen, ammonium, nitrates, orthophosphates, total dissolved phosphates, silica, alkalinity, salinity, or chlorophyll.

35. The roll or sheet of material of claim 34 , wherein the at least one difference of the water chemistry characteristic is at least a 10% difference as measured after the structure is at least partially submerged in the aqueous environment for at least 2 days.

36. The roll or sheet of material of claim 27 , wherein the second chemistry is measured in the aqueous environment at 12 inches away from the second side of the structure.

37. The roll or sheet of material of claim 27 , wherein the first chemistry is measured in the aqueous environment proximate the surface at a position that is spaced apart from the first side of the structure and spaced apart from the surface.

38. A device for reducing biofouling on a substrate at least partially submerged in an aqueous environment, the device comprising:

a structure which is or becomes fluid permeable, said structure defining an open top adapted to receive said substrate therethrough, wherein the open top defines one or more walls that remain spaced apart from a surface of the substrate in a not fully sealed arrangement, wherein the structure comprises at least one of mesh, lattice, fenestration, or holes that enable fluid flow therethrough,

wherein, when the structure at least partially surrounds the substrate in the aqueous environment in a not fully sealed arrangement, the structure separates the aqueous environment into a local aqueous environment and an open aqueous environment relative to the substrate and provides for fluid flow therethrough while reducing biofouling within the local aqueous environment relative to the open aqueous environment.

39. The device of claim 38 , wherein, when the structure at least partially surrounds the substrate in the aqueous environment, the structure provides an average water exchange of about 0.1% to 500% of a volume of water therethrough each hour.

40. The device of claim 38 , wherein, when the structure at least partially surrounds the substrate in the aqueous environment, the structure has a permeability of about 100 milliliters of water per second per square centimeter or less.

41. The device of claim 38 , wherein, when the structure at least partially surrounds the substrate in the aqueous environment, the structure allows fluid exchange therethrough to the substrate while preventing or limiting biofouling on the surface such that a first chemistry of the local aqueous environment is different than a second chemistry of the open aqueous environment.

Continuity (5)
Continuation 17246159 · Apr 30, 2021
Continuation PCTUS2019059546 · Nov 1, 2019
Provisional Application 62817873 · Mar 13, 2019
Provisional Application 62754574 · Nov 1, 2018
Related Publication 20240350980A1 · Oct 24, 2024
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Jul. 22, 2024, Office Action in Chinese Patent Application No. 202080075712.3, Chinese Patent Office, China. [cited by applicant]
Aug. 15, 2024, Office Action in Costa Rican Patent Application No. 2021-0283, Costa Rican Patent Office, Costa Rica. [cited by applicant]
Aug. 21, 2024, Office Action in Dominican Republic Patent Application No. P2022-0092, Dominican Republic Patent Office, Dominican Republic. [cited by applicant]
Aug. 15, 2024, Office Action in U.S. Appl. No. 18/131,081, United States Patent Office, United States. [cited by applicant]
Apr. 11, 2024, Exam and Search Report Issued in Chilean Patent Application No. 202101102, Chilean Patent Office, Chile. [cited by applicant]
May 13, 2024, Exam Report Issued in Indian Patent Application No. 202117016856, Indian Patent Office, India. [cited by applicant]
Aug. 30, 2024, Office Action in U.S. Appl. No. 17/732,333, United States Patent Office, United States. [cited by applicant]
Jun. 21, 2024, Office Action in U.S. Appl. No. 17/472,456, United States Patent Office, United States. [cited by applicant]
Jun. 20, 2024, Office Action in Canadian Patent Application No. 3158459, Canadian Patent Office, Canada. [cited by applicant]
Sep. 3, 2024, Office Action in Saudi Arabian Patent Application No. 521430338, Saudi Arabian Patent Office, Saudi Arabia. [cited by applicant]
Jul. 9, 2024, Examination Report in Columbian Patent Application No. NC2021/0006306, Colombian Patent Office, Colombia. [cited by applicant]
Sep. 17, 2024, Examination Report in Columbian Patent Application No. NC2021/0000080, Colombian Patent Office, Colombia. [cited by applicant]
Oct. 2, 2024, International Search Report and Written Opinion in PCT/2024/030101, United States Patent Office, United States. [cited by applicant]
Oct. 18, 2024, , Office Action in Chinese Patent Application No. 202080075712.3, Chinese Patent Office, China. [cited by applicant]
Oct. 18, 2024, , Office Action in Chinese Patent Application No. 202080075712.3, Chinese Patent Office, China (hereinafter “IDS4-NP1”). [cited by applicant]
Sep. 20, 2024, Office Action in Dominican Republic Patent Application No. P2022-0092, Dominican Republic Patent Office, Dominican Republic (hereinafter “IDS4-NP2”). [cited by applicant]
Aug. 6, 2024, Decision of Rejection in Japanese Patent Application No. JP2021555094, Japanese Patent Office, Japan (hereinafter “IDS4-NP3”). [cited by applicant]
Jul. 24, 2024, Office Action in Israeli Patent Application No. 286269, Israeli Patent Office, Israel (hereinafter “IDS4-NP4”). [cited by applicant]
Oct. 28, 2024, Communication in European Patent Application No. 20769294.8, European Patent Office, Netherlands (hereinafter “IDS4-NP5”). [cited by applicant]
Sep. 11, 2022, Article Entitled “Different Types of Corrosion on Ships,” ShipInsight, https://shipinsight.com/guide/ different-types-of-corrosion-on-ships, 5 pages (hereinafter “IDS4-NP6”). [cited by applicant]
Oct. 29, 2024, , Office Action in Kuwaiti Patent Application No. KW/P/2021/150, Kuwaiti Patent Office, Kuwait (hereinafter “IDS4-NP7”). [cited by applicant]
Aug. 1, 2024, Office Action in Israeli Patent Application No. 292589, Israeli Patent Office, Israel (hereinafter “IDS4-NP8”). [cited by applicant]
Nov. 13, 2024, Office Action and Search Report in United Arab Emirates Patent Application No. P6001613/2021 Uae Patent Office, Uae (hereinafter “IDS4-NP9”). [cited by applicant]
Oct. 30, 2024, Office Action in Korean Patent Application No. 10-2021-7031938, Korean Patent Office, Korea (hereinafter “IDS4-NP10”). [cited by applicant]
Oct. 30, 2024, Exam and Search Report Issued in Chilean Patent Application No. 202101102, Chilean Patent Office, Chile (hereinafter “IDS4-NP11”). [cited by applicant]
Dec. 5, 2024, Search Report in European Patent Application No. 24210831.4, European Patent Office, Netherlands (hereinafter “IDS4-NP12”). [cited by applicant]
Dec. 10, 2024, Office Action and Search Report in United Arab Emirates Patent Application No. P6000741/2022, Uae Patent Office, Uae (hereinafter “IDS4-NP13”). [cited by applicant]