IP Library Granted Patent US 9,364,877
Granted Patent B2
US 9,364,877 · App. 14/264,019 · Granted Jun 14, 2016

Soil box for evaporative desorption process

Inventor: Patrick Richard Brady (Sisters, OR)
Assignee: RETERRO INC.
B09C1/06
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Quick Facts
Patent No.
US 9,364,877
App. No.
14/264,019
Granted
Jun 14, 2016
Kind
B2
Abstract

Simple flow path with minimum turns for the vapor extraction flow paths can provide maximum air flow with minimal head loss, leading to higher efficiency in a thermal desorption process. Hot air vapor extraction arrangement can include large diameter vertical or horizontal trunk line or curved plate with continuous wire wrap well screens. The vapor extraction trunk can draw all vapors to the center of the soil box, which can reduce the treatment time by substantially removing condensation zone. The interior of the vapor extraction well screen and trunk can include porous material, which can reduce dust within the vapor stream, eliminate potential short circuiting in the event of a screen rupture and reduce potential explosion hazards.

Claims (135)

1. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a material,

wherein the container comprises an opening inlet,

wherein the opening inlet is configured to accept a treatment gas to the container,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust the treatment gas from the container;

a screen element coupled to the opening outlet,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the material on the path from the opening inlet to the opening outlet, and

wherein the container comprises one or more holes on the one or more walls.

2. A soil box as in claim 1

wherein the substantially uniform flow comprises a parallel flow from a top side of the container to a bottom side of the container.

3. A soil box as in claim 1

wherein the substantially uniform flow comprises parallel flow from a top side of the container to a bottom side of the container together with a radial flow from the one or more walls.

4. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the container comprises one or more holes on the one or more walls,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen,

wherein the screen is disposed along and space apart from a bottom side of the container,

wherein the screen is configured to support the soil material,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the opening outlet.

5. A soil box as in claim 4

wherein the screen comprises a curve plate.

6. A soil box as in claim 4

wherein the screen comprises a hole density, wherein the hole density is configured so that a flow conductance of the treatment gas through the screen is substantially similar to a flow conductance of the treatment gas through the soil material.

7. A soil box as in claim 4

wherein the soil box is configured to be placed in a cradle in a treatment chamber, wherein the cradle comprises an inlet for accepting a hot gas input, wherein the cradle comprises an outlet for delivering a hot gas output toward a side of the soil box.

8. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen element coupled to a bottom side of the container,

wherein the screen element comprises one or more screen tubes,

wherein the screen tubes are disposed substantially parallel to the bottom side,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the screen element to the opening outlet,

wherein the container comprises one or more holes on the one or more walls.

9. A soil box as in claim 8

wherein the screen element comprises a cylindrical tube.

10. A soil box as in claim 8

wherein the soil box is configured to be placed in a cradle in a treatment chamber, wherein the cradle comprises an inlet for accepting a hot gas input, wherein the cradle comprises an outlet for delivering a hot gas output toward a side of the soil box, wherein the cradle is configured to constrain the soil box so that the opening outlet is mated with an outlet conduit of a treatment chamber when the soil box is placed in the cradle.

11. A soil box as in claim 8 further comprising

an element disposed in the inner volume, wherein the element comprises an inlet for accepting a hot gas input, wherein the element comprises an outlet for delivering a hot gas output toward the inner volume, wherein the hot gas output is configured to minimize a condensation front from the treatment gas.

12. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen,

wherein the screen is disposed along and space apart from a bottom side of the container,

wherein the screen is configured to support the soil material,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the opening outlet,

a pedestal coupled to the bottom side, wherein the pedestal surrounds the opening outlet, wherein the pedestal is operable to form a seal with an outlet conduit of a treatment chamber by the weight of the soil box.

13. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen,

wherein the screen is disposed along and space apart from a bottom side of the container,

wherein the screen is configured to support the soil material,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the opening outlet,

a plate disposed in the inner volume, wherein the plate is substantially perpendicular to the bottom side, wherein the plate comprises an inlet for accepting a hot gas input, wherein the plate comprises an outlet for delivering a hot gas output toward the inner volume, wherein the plate is operable to minimize a condensation front from the treatment gas.

14. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen,

wherein the screen is disposed along and space apart from a bottom side of the container,

wherein the screen is configured to support the soil material,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the opening outlet,

a porous material disposed near the screen element at an opposite side of the soil material.

15. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen,

wherein the screen is disposed along and space apart from a bottom side of the container,

wherein the screen is configured to support the soil material,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the opening outlet,

a porous material disposed near the screen element at an opposite side of the soil material, wherein the porous material forms gradient material with larger materials nearer the screen element.

16. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen element coupled to a bottom side of the container,

wherein the screen element comprises one or more screen tubes,

wherein the screen tubes are disposed substantially parallel to the bottom side,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the screen element to the opening outlet,

a pedestal coupled to the bottom side, wherein the pedestal surrounds the opening outlet, wherein the pedestal is operable to form a seal with an outlet conduit of a treatment chamber by the weight of the soil box.

17. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen element coupled to a bottom side of the container,

wherein the screen element comprises one or more screen tubes,

wherein the screen tubes are disposed substantially parallel to the bottom side,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the screen element to the opening outlet,

a porous material disposed near the screen element at an opposite side of the soil material.

18. A soil box for a thermal desorption process, the soil box comprising

a container,

wherein the container comprises one or more walls,

wherein the container comprises an inner volume for containing a soil material,

wherein the container comprises an opening top side,

wherein the container comprises an opening outlet,

wherein the opening outlet is configured to exhaust a treatment gas from the opening top side;

a screen element coupled to a bottom side of the container,

wherein the screen element comprises one or more screen tubes,

wherein the screen tubes are disposed substantially parallel to the bottom side,

wherein the screen element is configured so that the treatment gas forms a substantially uniform flow through the soil material on the path from the opening top side to the screen element to the opening outlet,

a porous material disposed near the screen element at an opposite side of the soil material, wherein the porous material forms gradient material with larger materials nearer the screen element.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2020
From: RETERRO, INC.
To: ACADIA WOODS PARTNERS LLC
Reel/Frame 054622/0646 →
LIEN Recorded Feb 14, 2020
From: RETERRO, INC.
To: ACADIA WOODS PARTNERS, LLC
Reel/Frame 051934/0752 →
RELEASE OF SECURITY INTEREST Recorded Nov 8, 2019
From: RETERRO, INC.
To: ACADIA WOODS PARTNERS, LLC
Reel/Frame 050968/0630 →
SECURITY INTEREST Recorded Jan 18, 2019
From: RETERRO, INC.
To: ACADIA WOODS PARTNERS, LLC
Reel/Frame 048098/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2014
From: BRADY, PATRICK RICHARD
To: RETERRO, INC
Reel/Frame 033216/0412 →
Continuity (4)
Provisional Application 61817304 · Apr 29, 2013
Provisional Application 61840474 · Jun 28, 2013
Provisional Application 61878610 · Sep 17, 2013
Related Publication 20140321917A1 · Oct 30, 2014