Claims
- 1. A mobile marine system performing at least one of extraction, in-situ treatment, and in-situ conditioning of contaminated sediments from the sediment bottom surface of a water body comprising:
at least one floating marine vessel, said at least one floating marine vessel having suspendable therefrom at least one continuous mobile/submersible vertical barrier wall defining at least one predetermined confined control zone, said confined control zone containing liquid and suspended particles dispersed during at least one of sediment excavation, an in-situ treatment and an in-situ conditioning process from a predetermined bottom sediment surface area below said at least one floating marine vessel.
- 2. The mobile marine system as in claim 1 wherein said at least one floating marine vessel is a plurality of vessels.
- 3. The mobile marine system as in claim 1 wherein said at least one control zone is a plurality of control zones.
- 4. The mobile marine system as in claim 1 further comprising a dredging operation removing contaminated sediments from said at least one control zone.
- 5. The mobile marine system as in claim 1 wherein said dredging operation is a mechanical dredging operation removing contaminated sediments from said at least one control zone.
- 6. The mobile marine system as in claim 1 wherein said dredging operation is a hydraulic operation removing contaminated sediments from said at least one control zone.
- 7. The mobile marine system as in claim 1 wherein said dredging operation is aboard said at least one floating marine vessel.
- 8. The mobile marine system as in claim 1 wherein said dredging operation is aboard a further floating marine vessel adjacent to said at least one floating marine vessel.
- 9. The mobile marine system as in claim 1 wherein said at least one mobile/submersible vertical barrier wall defining at least one predetermined confined control zone comprises at least one predetermined collection perimeter of a plurality of adjacent aligned sheet piles attached to an inner hull of said at least one floating marine vessel, said sheet piles being lowerable and driven into the area of bottom sediments, said at least one collection of said sheet piles defining a perimeter area encompassing a predetermined volume of said at least one control zone.
- 10. The mobile marine system as in claim 9 wherein at least one gantry and a plurality of gantry rails direct the movement of a vibratory driver alternately deploying and removing said sheet piles during deployment of said at least one vertical barrier wall and subsequent removal of the contaminated sediments from beneath said at least one control zone.
- 11. The mobile marine system as in claim 9 wherein said sheet piles of said at least one continuous vertical barrier wall are joined together by sheet pile joint interlocks to said inner hull of said at least one floating marine vessel.
- 12. The mobile marine system as in claim 11 wherein each said interlock is joined to adjacent sheet piles by a falsework of clips and an H-beam connected to each said sheet pile, locking said sheet piles to said inner hull of said at least one floating marine vessel.
- 13. The mobile marine system as in claim 11 wherein each said interlock includes an interlocking socket.
- 14. The mobile marine system as in claim 13 wherein each said interlocking socket is U-shaped.
- 15. The mobile marine system as in claim 9 further comprising at least one vertically extending hydropneumatic sealing system on an exterior side of said at least one collection of sheet piles.
- 16. The mobile marine system as in claim 15 wherein said at least one hydropneumatic sealing system includes at least one sealing tube and at least one flexible impermeable shroud which are deployed to and below the bottom sediment area surface.
- 17. The mobile marine system as in claim 16 wherein said at least one flexible impermeable shroud is deployed by placing a plurality of fasteners axially aligned to said at least one flexible impermeable shroud, said fasteners attached to said at least one flexible impermeable shroud, over respective guides, said guides being attached to said sheet piles, and said at least one sealing tube is deployed by inserting said tube into said at least one flexible impermeable shroud.
- 18. The mobile marine system as in claim 17 wherein said fasteners are hollow rods and said guides are circular rods insertable into said hollow rods, said circular rods being attached to a respective plate joined to each said respective sheet pile.
- 19. The mobile marine system as in claim 16 further wherein said at least one hydropneumatic seal presses up to and seals respective joints between said adjacent sheet piles by pressurizing the sealing tube, thereby reducing flow of water through each joint.
- 20. The mobile marine system as in claim 16 wherein compressed fluid is introduced into said sealing tube to adjust the tube pressure to a predetermined pressure causing tightening of said seal.
- 21. The mobile marine system as in claim 20 wherein said fluid is water.
- 22. The mobile marine system as in claim 20 wherein said fluid is air.
- 23. The mobile marine system as in claim 16 wherein said sealing tube includes a rigid support at a bottom thereof, said rigid support penetrating the bottom sediment surface being remediated, said rigid support stabilizing said sealing tube during deployment thereof.
- 24. The mobile marine system as in claim 20 wherein said sealing tube includes a cap having an water fill fitting receiving said water therein said water filling said sealing tube to assist in the submersion of said sealing tube to the sediment bottom and pressurizing said sealing tube.
- 25. The mobile marine system as in claim 20 wherein said sealing tube cap further includes an air fill fitting receiving compressed air therein, said compressed air alternately pressurizes said sealing tube having said water therein and forces water to evacuate said sealing tube during removal of said sealing tube from said sediment bottom.
- 26. The mobile marine system as in claim 1 further comprising at least one pumping system located in said at least one control zone, wherein said at least one pumping system withdraws water from said at least one control zone, thereby establishing a negative pressure gradient directed toward said inside of said at least one control zone from the ambient water environment, said negative pressure gradient between the ambient water environment and said control zone water controlling flow of water through said at least one vertical barrier wall into said at least one control zone, thereby preventing release of any of at least one of contaminated liquid and particulate matter contained within said predetermined confines of said at least one control zone into the ambient water environment.
- 27. The mobile marine system as in claim 26 wherein said at least one vertical barrier wall, including said sheet piles and said at least one flexible impermeable shroud seal and sealing tube, comprising at least one sealed vertical barrier wall, defines a predetermined surface area and volume of said at least one control zone, said at least one sealed vertical barrier wall reducing permeability through said joints between said sheet piles, said sealed vertical barrier wall and said at least one pumping system establishing a predetermined rate of flow of water controlling said negative pressurization of said at least one control zone and forming a negative pressure gradient therein.
- 28. The mobile marine system as in claim 26 further comprising a water level monitoring system to maintain said negative pressure gradient between said control zone and the ambient water environment.
- 29. The mobile marine system as in claim 1 further comprising at least one water treatment system collecting and treating particulate matter and soluble contaminants distributed and/or resuspended during at least one of excavation, and in-situ treatment and an insitu conditioning process.
- 30. The mobile marine system as in claim 29 wherein said at least one water treatment system comprises at least one membrane filtration system capable of removing particulate matter and soluble contaminants, obtained within said at least one control zone.
- 31. The mobile marine system as in claim 30 wherein said at least one membrane filtration system is aboard said at least one floating marine vessel having said at least one control zone.
- 32. The mobile marine system as in claim 30 wherein said at least one membrane filtration system is aboard at least one further separate floating vessel spaced apart from said at least one floating marine vessel.
- 33. The mobile marine system as in claim 30 wherein said particulate matter is in the range of 0.01 to 10 microns.
- 34. The mobile marine system as in claim 30 wherein said at least one membrane treatment filtration system is a plurality of filtration systems.
- 35. The mobile marine system as in claim 30 wherein said at least one filtration system is a microfiltration system.
- 36. The mobile marine system as in claim 30 wherein said at least one filtration system is an ultrafiltration system.
- 37. The mobile marine system as in claim 30 wherein said at least one filtration system passes liquids through a membrane under positive pressure.
- 38. The mobile marine system as in claim 30 wherein said at least one filtration system passes liquids through a membrane under negative pressure.
- 39. The mobile marine system as in claim 30 wherein said at least one membrane filtration system comprises hollow fiber membrane filtration means.
- 40. The mobile marine system as in claim 30 wherein said at least one vessel includes at least one treatment system comprising a series of stages for treatment of collected contaminated water prior to disposal, including a first stage having a flow equalization and a presettling for removing particles with high specific gravity, and a second stage having said at least one membrane filtration system, said at least one membrane filtration system removing very fine colloidal-sized particles remaining in the water after said first stage treatment and a soluble contaminant removal stage to provide optional tertiary treatment.
- 41. The mobile marine system as in claim 40 wherein said at least one treatment system comprises a solids handling system further comprising a solids thickening tank thickening settled solids collected from said membrane treatment system and a further solids stabilization tank mixing said solids with a cementitious stabilization reagent.
- 42. The mobile marine system as in claim 1 further comprising a marine-based solids handling system stabilizing said excavated sediments into a solid disposable member transferable to an on-shore handling facility.
- 43. The mobile marine system as in claim 42 further comprising a screening means to segregate oversize material dredged from undersize material dredged, to facilitate stabilization of said undersize material dredged.
- 44. The mobile marine system as in claim 42 further comprising at least one further floating vessel having at least one holding container isolating the storage and containment of material dredged from said pre-determined control zone.
- 45. The mobile marine system as in claim 42 further comprising a means for transporting and mixing cementitious stabilizing reagent(s) with said excavated sediments, a means for storing said cementitious reagent(s), and a means for distributing stabilized sediments into containers for transport.
- 46. The mobile marine system as in claim 45 further comprising a conveyor arrangement and distribution hopper system for mixing, transporting and distributing said excavated sediments into containers for transport and a silo for storing said stabilizing reagent(s).
- 47. The mobile marine system as in claim 45 further comprising a blade mixer and a telescoping crane with a further pump injecting and mixing said cementitious stabilizing reagent with said contaminated dredge in storage containers and a silo storing said stabilizing reagent.
- 48. The mobile marine system as in claim 1 further comprising a navigation system directing movement of said at least one mobile marine vessel to a new further control zone.
- 49. The mobile marine system as in claim 1 further comprising a delivery system dispensing one mixing reagent capable of treating the contaminated sediment directly to the sediment bottom surface.
- 50. The mobile marine system as in claim 49 wherein said delivery system includes a hollow conduit dispensing said reagent to the sediment bottom surface.
- 51. The mobile marine system as in claim 49 wherein said delivery system includes a mixer agitating the sediment bottom surface.
- 52. The mobile marine system as in claim 51 wherein said mixer is an auger.
- 53. The mobile marine system as in claim 51 wherein said mixer is a plow.
- 54. The mobile marine system as in claim 51 wherein said mixer is a vibratory mixer.
- 55. The mobile marine system as in claim 51 wherein said mixer is a jet mixer.
- 56. The mobile marine system as in claim 51 wherein said mixer is an injector.
- 57. A method for containing and removing micron-sized and sub-micron sized contaminants from a subsurface floor and body of water during sediment removal operations comprising the steps of:
positioning a containment marine vessel over said zone; lowering and inserting a plurality of sheet piles adjacent to a inner hull of said vessel into the bottom of the body of water and driving said piles into the subsurface formation to form a continuous loop surrounding said predetermined control zone; lowering a hydropneumatic sealing system located on an external side of said continuous loop of said sheet piles to the subsurface floor of the body of water; initiating fluid flow into said at least one water treatment vessel positioned at the site to induce a negative pressure gradient into said predetermined control zone; initiating a mechanical dredging operation to remove contaminated sediments from said control zone.
- 58. The method for removing micron-sized and sub-micron sized contaminants from a subsurface floor and a body of water as in claim 42 further comprising the steps of:
providing sequential stages for treatment of the water prior to disposal, including a first flow stage for flow equalization and for presettling out particles with high specific gravity, and a second stage including at least one filtration system removing very fine colloidal-sized particles remaining in the water after said stage one treatment; providing a tertiary treatment process for removing residual soluble contaminants, if necessary; continuing to treat water in said control zone and maintaining a negative pressure gradient to reduce suspended solids in the water column to extremely low levels and permitting the solids to settle for an extended period of time until dredging of the sediments within said control zone is complete.
- 59. The method for removing micron-sized and sub-micron sized contaminants from a subsurface floor and a body of water as in claim 42 further comprising the steps of:
vacuum dredging the subsurface floor of said control zone to remove residual lightweight sediment (fluff) and directing said hydraulically dredged solids to said at least one treatment vessel; monitoring water column and sediment bottom quality; withdrawing said hydropneumatic sealing system and said sheet piles from subsurface floor; relocating said vessel to a next area to be dredged; and, transporting contaminated solids to a holding tank for stabilization storage, handling, and transport to a final disposal site.
- 60. A method for containing and removing micron-sized and sub-micron sized contaminants from a subsurface sediment floor and a body of water and containing treatment reagents during at least one of in-situ treatment and an in-situ conditioning operation comprising the steps of positioning a containment marine vessel over said zone;
lowering and inserting a plurality of sheet piles adjacent to an inner hull of said vessel into the bottom of the body of water and driving said piles into the subsurface formation to form a continuous loop surrounding said predetermined control zone; lowering a hydropneumatic sealing system located on an external side of said continuous loop of said sheet piles to the subsurface floor of the body of water; initiating fluid flow into said at least one water treatment vessel positioned at the site to induce a negative pressure gradient into said predetermined control zone; delivering and mixing at least one of a treatment and a conditioning reagent with the subsurface sediments.
- 61. The method for removing micron-sized and sub-micron sized suspended contaminants from a subsurface floor and a body of water as in claim 45 further comprising the steps of:
providing sequential stages for treatment of the water prior to disposal, including a first flow stage for flow equalization and for presettling out particles with high specific gravity, and a second stage including at least one filtration system removing very fine colloidal-sized particles remaining in the water after said stage one treatment; providing a tertiary treatment process for removing residual soluble contaminants, if necessary; continuing to treat water in said control zone and maintaining a negative pressure gradient to reduce suspended solids in the water column to extremely low levels and permitting the solids to settle for an extended period of time until at least one of treatment and conditioning of the sediments within said control zone is complete.
- 62. The method for removing micron-sized and sub-micron sized suspended contaminants from a subsurface floor below a body of water as in claim 45 further comprising the steps of:
monitoring water column and sediment bottom quality; withdrawing said hydropneumatic sealing system and said sheet piles from subsurface floor; and relocating said vessel to a next area to be at least one task of being treated and being conditioned.
Priority Claims (1)
Number |
Date |
Country |
Kind |
PCT/US01/09025 |
Mar 2001 |
US |
|
RELATED APPLICATIONS
[0001] This application is based in part upon provisional patent application No. 60/274,898, filed Mar. 9, 2001, entitled “Secure Dredging System for Contaminated Sediment Clean-up,” provisional patent application No. 60/309,731, filed Aug. 2, 2002, entitled “Hydropneumatic Sheet Pile Seal,” and the examinable application entitled “Contaminated Sediment Removal Vessel,” Ser. No. 10/094,064, filed Mar. 8, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60274898 |
Mar 2001 |
US |
|
60309731 |
Aug 2001 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10094064 |
Mar 2002 |
US |
Child |
10151762 |
May 2002 |
US |