IP Library Granted Patent US 8,142,656
Granted Patent B1
US 8,142,656 · App. 13/326,671 · Granted Mar 27, 2012

Wastewater concentrator system

Assignee: Ecolivegreen Corp.
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Quick Facts
Patent No.
US 8,142,656
App. No.
13/326,671
Granted
Mar 27, 2012
Kind
B1
Abstract

Disclosed is a system for reducing the demand of wastewater volume flowing through a wastewater collection piping system and thereby increasing the effective capacity of the system. A portion of the wastewater is diverted from a sewer main. The solids are separated from the liquid, for example, by a vortex separator. The recovered liquid can be treated and made available for reuse or can be disposed of, for example, in a body of water or pumped into the ground. The concentrated solids are reintroduced into the main sewage line in a portion that adjusts the wastewater loading in the sewer main to a predetermined amount or predetermined range. Also disclosed is a system capable of reintroducing the concentrated solids into the sewer main in a portion that adjusts the solids loading in the sewer main to a predetermined amount or predetermined range.

Claims (58)

1. A system for adjusting wastewater loading in a sewer main thereby increasing the effective system capacity of the sewer main, comprising:

piping for diverting a portion of wastewater from the sewer main;

means for determining the wastewater loading in the sewer main;

means for separating concentrated solids and separated liquid from the diverted wastewater;

means for reintroducing the concentrated solids back into the sewer main; and

means for dynamically adjusting a rate of diversion of wastewater from the sewer main and a rate of reintroducing the concentrated solids back to the sewer main in response to the means for determining the wastewater loading in the sewer main and in a proportion that adjusts the wastewater loading of the sewer main to a value within a preset range.

2. The system of claim 1 , wherein the means for separating the concentrated solids and the separated liquid from the diverted wastewater includes a vortex separator.

3. The system of claim 1 , further including:

means for determining solids loading on the sewer main; and

means for adjusting the wastewater loading so that dynamically adjusting the rate of diversion of wastewater from the sewer main and the rate of reintroducing the concentrated solids back to the sewer main does not cause the sewer main to exceed a maximum solids loading.

4. The system of claim 1 , further including means for treating the separated liquid.

5. The system of claim 4 , wherein the means for separating the concentrated solids and the separated liquid from the diverted wastewater includes a vortex separator.

6. The system of claim 4 , further including:

means for determining solids loading on the sewer main; and

means for adjusting the wastewater loading so that dynamically adjusting the rate of diversion of wastewater from the sewer main and the rate of reintroducing the concentrated solids back to the sewer main does not cause the sewer main to exceed a maximum solids loading.

7. The system of claim 4 , further including means for treating the separated liquid for disposal.

8. A system for adjusting solids loading in a sewer main thereby increasing the effective system capacity of the sewer main, comprising:

piping for diverting a portion of wastewater from the sewer main;

means for determining the solids loading in the sewer main;

means for separating concentrated solids and separated liquid from the diverted wastewater; and

means for dynamically adjusting a rate of reintroducing the concentrated solids back into the sewer main and a rate of diversion of wastewater from the sewer main in response to the means for determining the solids loading in the sewer main and in a proportion that adjusts the solids loading of the sewer main not to exceed a preset quantity.

9. The system of claim 8 , wherein the means for separating the concentrated solids and the separated liquid from the diverted wastewater includes a vortex separator.

10. The system of claim 8 , further including means for treating the separated liquid.

11. The system of claim 10 , further including means for treating the separated liquid for disposal.

12. The system of claim 10 , further including means for treating the separated liquid for reuse.

13. A system for adjusting wastewater loading in a sewer main thereby increasing the effective system capacity of the sewer main, comprising:

piping for diverting a portion of wastewater from the sewer main;

means for determining the wastewater loading in the sewer main;

means for separating concentrated solids and separated liquid from the diverted wastewater;

means for reintroducing the concentrated solids back into the sewer main; and

means for dynamically adjusting a rate of diversion of wastewater from the sewer main and a rate of reintroducing the concentrated solids back to the sewer main in response to the means for determining the wastewater loading in the sewer main and in a proportion that adjusts the wastewater loading of the sewer main not to exceed a preset quantity.

14. The system of claim 13 , wherein the means for separating the concentrated solids and the separated liquid from the diverted wastewater includes a vortex separator.

15. The system of claim 13 , further including means for treating the separated liquid.

16. The system of claim 15 , wherein the means for separating the concentrated solids and the separated liquid from the diverted wastewater includes a vortex separator.

17. The system of claim 15 , further including means for treating the separated liquid for disposal.

18. A system for adjusting wastewater loading in a sewer main, comprising:

a vortex separator that includes an impeller mechanism with a hollow core and a decreasing axial pitch in the direction of fluid flow;

the vortex separator including an inlet arranged and adapted to receive a portion of wastewater diverted from the sewer main, a first outlet for separated liquid, and

a second outlet for concentrated solids, the second outlet operationally connected to the sewer main;

a flow transmitter adapted and arranged to sense the wastewater loading in the sewer main; and

a control system for dynamically controlling a rate of flow of the wastewater diverted from the sewer main and for adjusting a rate of reintroducing the concentrated solids back into the sewer main in response to the wastewater loading in the sewer main sensed by the flow transmitter and in a proportion that adjusts the wastewater loading of the sewer main not to exceed a preset quantity.

19. A system of claim 18 , further configured to adjust solids loading of the sewer main, wherein:

the control system includes a solids analyzer arranged and adapted to sense the solids loading of the sewer main; and

the control system is further configured for dynamically controlling a rate of flow of the wastewater diverted from the sewer main and for adjusting a rate of reintroducing the concentrated solids back into the sewer main in response to the solids loading in the sewer main sensed by the solids analyzer and in a proportion that does not cause the solids loading of the sewer main not to exceed a preset quantity.

20. A system of claim 18 , further including a membrane filtration unit arranged and adapted to receive the separated liquid.

21. A system of claim 20 , wherein:

the membrane filtration unit includes a first outlet adapted for a product stream and a second outlet for a concentrate stream; and

the second outlet is operationally connected to the outlet for the concentrated solids.

22. A system for adjusting solids loading in a sewer main, comprising:

a vortex separator that includes an impeller mechanism with a hollow core and a decreasing axial pitch in the direction of fluid flow;

the vortex separator including an inlet arranged and adapted to receive a portion of wastewater diverted from the sewer main, a first outlet for separated liquid, and

a second outlet for concentrated solids, the second outlet operationally connected to the sewer main;

a solids analyzer arranged and adapted to sense the solids loading in the sewer main; and

a control system for dynamically controlling a rate of flow of the wastewater diverted from the sewer main and for adjusting a rate of reintroducing the concentrated solids back into the sewer main in response to the solids loading sensed by the solids analyzer and in a proportion that adjusts the solids loading of the sewer main not to exceed a preset quantity.

23. A system of claim 22 , further including a membrane filtration unit arranged and adapted to receive the separated liquid.

24. A system of claim 23 , wherein:

the membrane filtration unit has a first outlet for a product stream and a second outlet for concentrate stream; and

the second outlet is operationally connected to the outlet for the concentrated solids.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2025
From: NEW VISION CHILDREN'S FOUNDATION, INC.
To: ECO WORLD WATER CORP.
Reel/Frame 071504/0142 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2020
From: ECO WATER TECHNOLOGIES CORP
To: NEW VISION CHILDREN'S FOUNDATION, INC.
Reel/Frame 053739/0523 →
CHANGE OF NAME Recorded Mar 13, 2018
From: ECO WASTEWATER CONCENTRATOR LLC
To: ECO WASTEWATER CONCENTRATOR CORP
Reel/Frame 045583/0487 →
CHANGE OF NAME Recorded Feb 28, 2018
From: ECO WASTEWATER CONCENTRATOR CORP
To: ECO WATER TECHNOLOGIES CORP
Reel/Frame 045471/0815 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2014
From: ECOLIVEGREEN CORP.
To: ECO WASTEWATER CONCENTRATOR, LLC
Reel/Frame 032907/0938 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2011
From: CULLER, PAUL L
To: ECOLIVEGREEN CORP.
Reel/Frame 027393/0813 →
Continuity (3)
Continuation 13274350 · Oct 16, 2011
Continuation In Part 13050665 · Mar 17, 2011
Division 12954809 · Nov 26, 2010