IP Library Granted Patent US 11,466,413
Granted Patent B2
US 11,466,413 · App. 16/207,610 · Granted Oct 11, 2022

Silt fence configured for capturing pollutants

Inventors: Michael A. Zock (Saxonburg, PA); Roy G. McClinton (Waxhaw, NC)
Assignees: MKB COMPANY; HUESKER, INC.
E01F7/02B32B3/08B32B5/022B32B5/024B32B5/06B32B5/26B32B7/023C02F1/004E02B3/023E02D17/20E02D17/202E02D29/02E02D31/06E04H17/20B32B2250/03B32B2250/20B32B2262/0253B32B2262/06B32B2307/718
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Quick Facts
Patent No.
US 11,466,413
App. No.
16/207,610
Granted
Oct 11, 2022
Kind
B2
Abstract

A composite silt fence configured for capturing pollutants in one embodiment comprises a silt fence fabric including i) a polymeric geotextile fabric particulate filtering layer defining the hydraulic flow capacity for the silt fence, ii) a pollutant capturing layer coupled to the polymeric geotextile fabric particulate filtering layer and configured to capture some select pollutants in water from flow that has passed through the polymeric geotextile fabric particulate filtering layer, and iii) a backing layer coupled to the pollutant capturing layer; and a plurality of stakes secured to the silt fence fabric at spaced locations. The silt fence fabric yields higher hydraulic flow than existing fence constructions with greater sediment retention and pollutant containment features.

Claims (18)

1. A composite silt fence ( 10 ) comprising a plurality of spaced stakes ( 28 ) and a composite silt fence fabric ( 20 ) coupled to the stakes ( 28 ) and configured for capturing pollutants within storm water passing through the composite silt fence, wherein the composite silt fence fabric ( 20 ) includes i) a polymeric geotextile fabric particulate filtering layer ( 22 ) extending the entire width and length of the composite silt fence fabric ( 10 ) and defining a hydraulic flow capacity for the silt fence ( 10 ), ii) a pollutant capturing layer ( 24 ) coupled to the polymeric geotextile fabric particulate filtering layer ( 22 ) extending the entire width and length of the composite silt fence fabric ( 10 ) so as to entirely overlay the polymeric geotextile fabric particulate filtering layer ( 22 ) and configured to capture some select pollutants in water from flow ( 5 ) that has passed through the polymeric geotextile fabric particulate filtering layer ( 22 ), wherein the pollutant capturing layer ( 24 ) is formed including a kenaf material, and iii) a backing layer ( 26 ) coupled to the pollutant capturing layer ( 24 ) extending the entire width and length of the composite silt fence fabric ( 10 ) so as to entirely overlay the pollutant capturing layer ( 24 ).

2. The composite silt fence ( 10 ) according to claim 1 wherein performing standard ASTM testing on the silt fence with 1645 LBS water with 105 LBS soil and 250 mg/L Oil for a 75 minutes test run yields a soil retention after the test run of greater than 85%.

3. The composite silt fence ( 10 ) according to claim 2 wherein the test run yields a soil retention after the test run of greater than greater than 90%.

4. The composite silt fence ( 10 ) according to claim 1 wherein performing standard ASTM testing on the silt fence ( 10 ) with 1645 LBS water with 105 LBS soil and 250 mg/L Oil for a 75 minutes test run yields a seepage rate after the test run of greater than 60%.

5. The composite silt fence ( 10 ) according to claim 4 wherein the test run yields a seepage rate after the test run of greater than 65%.

6. The composite silt fence ( 10 ) according to claim 1 wherein performing standard ASTM testing on the silt fence ( 10 ) with 1645 LBS water with 105 LBS soil and 250 mg/L Oil for a 75 minutes test run yields a yields an oil retention rate after the test run of greater than 90%.

7. The composite silt fence ( 10 ) according to claim 6 wherein the test run yields an oil retention rate after the test run of greater than 95%.

8. The composite silt fence ( 10 ) according to claim 1 wherein the polymeric geotextile fabric particulate filtering layer ( 22 ) is a non-woven polypropylene particulate filtering layer having a 2-6 ounce rating.

9. The composite silt fence ( 10 ) according to claim 1 wherein the backing layer is a 200-300 g/m 2 polyethylene layer.

10. The composite silt fence ( 10 ) according to claim 1 , wherein the pollutant capturing layer ( 24 ) is at least one of 1-25 mm in thickness or 60-80 gram/sq. ft.

11. The composite silt fence ( 10 ) according to claim 1 wherein the layers ( 22 , 24 and 26 ) of the silt fence fabric ( 20 ) are needle punched together.

12. The composite silt fence ( 10 ) according to claim 1 wherein the silt fence fabric ( 20 ) has a width of 20″-48″ and is rollable.

13. A composite silt fence ( 10 ) comprising a plurality of spaced stakes ( 28 ) and a composite silt fence fabric ( 20 ) coupled to the stakes ( 28 ) and configured for capturing pollutants within storm water, wherein the composite silt fence fabric includes i) a woven polymeric geotextile fabric particulate filtering layer ( 22 ) exhibiting the minimum mesh size of the silt fence and extending the entire width and length of the composite silt fence fabric ( 10 ) and defining a hydraulic flow capacity for the silt fence ( 10 ); and ii) a pollutant capturing layer ( 24 ) thermally bonded to the woven polymeric geotextile fabric filtering layer and configured to capture through absorption or adsorption some select pollutants in water flow ( 5 ) that has passed through the woven polymeric geotextile fabric layer ( 22 ) extending the entire width and length of the composite silt fence fabric ( 10 ) so as to entirely overlay the polymeric geotextile fabric particulate filtering layer ( 22 ), wherein the pollutant capturing layer ( 24 ) is formed including a kenaf material.

14. A composite silt fence ( 10 ) comprising a plurality of spaced stakes ( 28 ) and a composite silt fence fabric ( 20 ) coupled to the stakes ( 28 ) and configured for capturing pollutants within storm water, wherein the composite silt fence fabric ( 20 ) includes i) a polymeric geotextile fabric particulate filtering layer ( 22 ) defining a hydraulic flow capacity for the silt fence ( 10 ) and extending the entire width and length of the composite silt fence fabric, ii) a pollutant capturing layer ( 24 ) coupled to the polymeric geotextile fabric particulate filtering layer ( 22 ) and configured to capture some select pollutants in water from flow ( 5 ) that has passed through the polymeric geotextile fabric particulate filtering layer ( 22 ) and extending the entire width and length of the composite silt fence fabric ( 10 ) so as to entirely overlay the polymeric geotextile fabric particulate filtering layer ( 22 ), wherein the pollutant capturing layer ( 24 ) is formed including a kenaf material.

15. The composite silt fence ( 10 ) according to claim 14 wherein the layers ( 22 , 24 ) of the composite silt fence fabric ( 20 ) are needle punched together.

16. The composite silt fence ( 10 ) according to claim 14 wherein the pollutant capturing layer ( 24 ) is at least one of 1-25 mm in thickness or 60-80 gram/sq. ft.

17. The composite silt fence ( 10 ) according to claim 16 wherein performing standard ASTM testing on the silt fence ( 10 ) with 1645 LBS water with 105 LBS soil and 250 mg/L Oil for a 75 minutes test run yields a yields an oil retention rate after the test run of greater than 90%.

18. The composite silt fence ( 10 ) according to claim 17 wherein the test run yields an oil retention rate after the test run of greater than 95%.

Assignments (4)
SECURITY INTEREST Recorded Nov 26, 2025
From: MAZCON, A KURTZ BROS. COMPANY, LLC
To: BMO BANK N.A., AS AGENT
Reel/Frame 073045/0507 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED ON REEL 48230 FRAME 818. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT.. Recorded Apr 21, 2025
From: ZOCK, MICHAEL A.
To: MAZCON, A KURTZ BROS. COMPANY, LLC
Reel/Frame 070893/0959 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2019
From: MCCLINTON, ROY G.
To: HUESKER, INC.
Reel/Frame 048230/0594 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2019
From: ZOCK, MICHAEL A.
To: MKB COMPANY
Reel/Frame 048230/0818 →
Continuity (3)
Continuation PCTUS2017037563 · Jun 14, 2017
Provisional Application 62349890 · Jun 14, 2016
Related Publication 20190145068A1 · May 16, 2019
Cited By (1)
US 12,378,736