IP Library Patent Application 15897750
Patent Application
App. No. 15/897,750

METHOD FOR PROCESSING WASTE WATER

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Patent No.
US None
App. No.
15/897,750
Abstract

An apparatus and method for treatment of waste water, comprising a tank for receiving a waste water influent via an influent pump and discharging a treated waste water effluent via an effluent pump; a screen decanter disposed in the tank, the screen having a pore size of about 50 micrometers; and a timer operationally connected to the floating decanter and the effluent pump. Solids are settled from the waste water and drawn off through the tank bottom after a supernatant fluid is drawn off through the floating screen decanter. The supernatant fluid may be passed through a filtration and membrane water purification apparatus to generate purified water.

Claims (26)

1 . A method for treating an effluent stream of waste water, comprising the steps of:

a) providing a tank for receiving and treating said effluent stream, said tank having a side wall;

b) pumping said influent stream into said tank such that said influent stream entering said tank flows in a direction substantially parallel to said tank wall to cause circumfrential circulation of influent within the tank;

c) receiving a volume of said waste water in said tank;

d) stopping said receiving and allowing said received volume of waste water to stand in said tank without agitation for a predetermined period of time to allow gravitational settling and separation of suspended solids in said waste water into a settled solids fraction and a supernatant fraction;

e) drawing off said supernatant fraction after said predetermined period of time through a decanter selected from the group consisting of screen decanter and non-screen decanter, wherein said decanter is disposed within said tank and is operable to follow dynamically in a vertical direction changes in the level of said waste water as said drawing off of said supernatant fraction is carried out, and

f) drawing off said settled solids fraction from a lower surface of said settled solids fraction; and

g) passing said supernatant fraction through a filtration and membrane water purification apparatus to generate purified water.

2 . A method in accordance with claim 1 comprising the further step of supplying said purified water to a source of said effluent stream.

3 . A method in accordance with claim 1 wherein a screen in said decanter has a pore size of between about 25 micrometers and about 75 micrometers.

4 . A method in accordance with claim 3 wherein said screen pore size is about 50 micrometers.

5 . A method in accordance with claim 1 wherein said screen decanter is provided with standpipe drain apparatus perforated in an aperture pattern contrary to any hydrostatic head imposed on said standpipe.

6 . A method in accordance with claim 1 wherein said decanter is disposed within said tank and is operable to follow dynamically in a vertical direction changes in the level of said waste water as said receiving of waste water is carried out.

7 . A method in accordance with claim 1 further comprising the steps of dosing said waste water in said tank.

8 . A method for treating an effluent stream of waste water, comprising the steps of:

a) providing a tank for receiving and treating said effluent stream;

b) receiving a volume of said waste water in said tank;

c) stopping said receiving and allowing said received volume of waste water to stand in said tank without agitation for a predetermined period of time to allow gravitational settling and separation of suspended solids in said waste water into a settled solids fraction and a supernatant fraction;

d) drawing off said supernatant fraction after said predetermined period of time through a screen decanter, wherein said screen decanter is disposed within said tank and is operable to follow dynamically in a vertical direction changes in the level of said waste water as said drawing off of said supernatant fraction is carried out, and wherein said decanter is provided with standpipe drain apparatus perforated in an aperture pattern contrary to any hydrostatic head imposed on said standpipe;

e) drawing off said settled solids fraction from a lower surface of said settled solids fraction; and

f) passing said supernatant fraction through a filtration and membrane water purification apparatus to generate purified water.

9 . A method in accordance with claim 8 comprising the further step of supplying said purified water to a source of said effluent stream.

10 . A method in accordance with claim 8 wherein a screen in said screen decanter has a pore size of between about 25 micrometers and about 75 micrometers.

11 . A method in accordance with claim 10 wherein said screen pore size is about 50 micrometers.

12 . A method in accordance with claim 8 wherein said screen decanter is disposed within said tank and is operable to follow dynamically in a vertical direction changes in the level of said waste water as said receiving of waste water is carried out.

13 . A method in accordance with claim 8 further comprising the steps of dosing the waste water in said tank.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE ADD OMITTED ASSIGNEE PREVIOUSLY RECORDED AT REEL: 050854 FRAME: 0852. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 31, 2019
From: CLEARCOVE SYSTEMS, INC.
To: WESTBROOK, GREG; SNYDER, STEVE; TERRY, DAVID; RIT VENTURE FUND I, LLC
Reel/Frame 050911/0615 →
SECURITY INTEREST Recorded Oct 29, 2019
From: CLEARCOVE SYSTEMS, INC.
To: WESTBROOK, GREG; SNYDER, STEVE; TERRY, DAVID
Reel/Frame 050854/0852 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2018
From: WRIGHT, TERRY; PARKER, LEONARD A.; KARZ, ROBERT S.; FOX, JASON E.
To: CLEARCOVE SYSTEMS, INC.
Reel/Frame 044974/0098 →