IP Library Granted Patent US 10,125,040
Granted Patent B2
US 10,125,040 · App. 15/347,427 · Granted Nov 13, 2018

Concentrating of wastewater to reduce flow rate, cost, and footprint of treatment system

Inventors: Michael R. Riffe (Gibsonia, PA); Frank L. Sassaman (Fombell, PA); Michael W. Wismer (Lino Lakes, MN)
Assignee: Evoqua Water Technologies LLC
C02F9/00C02F1/004C02F1/38C02F1/385C02F1/441C02F1/442C02F1/52C02F1/705C02F3/1273C02F3/30C02F11/122C02F2101/103C02F2101/106C02F2101/163C02F2101/20C02F2301/043Y02A20/156Y02W10/15
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Quick Facts
Patent No.
US 10,125,040
App. No.
15/347,427
Granted
Nov 13, 2018
Kind
B2
Abstract

A system to remove contaminants from contaminated water contains a pre-concentrating subsystem, a contaminant removal subsystem or a biological subsystem configured to remove two or more contaminants, and a permeate blending subsystem. A process for removing contaminants from contaminated water includes concentrating contaminated water, treating concentrated contaminated water, and combining product water to produce environmentally acceptable product water.

Claims (40)

1. A system to remove contaminants from a contaminated water, the system comprising:

a pre-concentrating subsystem configured to receive a volume of the contaminated water and produce a concentrated contaminated water having between about 10% and about 50% of the volume of the contaminated water and a first product water having between about 50% and about 90% of the volume of the contaminated water, the contaminated water having a first concentration of contaminants, and the concentrated contaminated water having a second concentration of contaminants at least two times higher than the first concentration of contaminants;

one of a contaminant removal subsystem configured to receive the concentrated contaminated water and a biological subsystem configured to receive the concentrated contaminated water,

wherein the contaminant removal subsystem comprises zero valent iron media disposed in a reactor, and is configured to remove contaminants selected from the group consisting of selenium-containing compounds, nitrate-containing compounds, arsenic-containing compounds, and mercury-containing compounds from the concentrated contaminated water, and configured to produce a second product water,

wherein the biological subsystem is configured to remove contaminants selected from the group consisting of selenium-containing compounds, nitrate-containing compounds, arsenic-containing compounds, and mercury-containing compounds from the concentrated contaminated water, and configured to produce second product water, and

the second product water having a third concentration of contaminants at least about 90% lower than the first concentration in the contaminated water and at least about 95% lower than the second concentration in the concentrated contaminated water; and

a permeate blending subsystem configured to receive the first product water from the pre-concentrating subsystem and all of the second product water from one of the contaminant removal subsystem and the biological subsystem to produce a blended product water having a fourth concentration of contaminants at least about 90% lower than the first concentration in the contaminated water by blending the first product water and the second product water.

2. The system of claim 1 , wherein the pre-concentrating subsystem comprises two pressure driven membrane systems fluidly connected in series.

3. The system of claim 1 , wherein the pre-concentrating subsystem comprises a filter system configured to remove macroparticles from the contaminated water.

4. The system of claim 1 , wherein the contaminant removal subsystem comprises a clarifier fluidly connected downstream of the reactor.

5. The system of claim 1 , wherein the zero valent iron media is disposed in one of a fluidized bed reactor, a packed bed reactor, or a mixed bed reactor in the contaminant removal subsystem.

6. The system of claim 1 , configured to produce the blended product water comprising less than about 5 ppb selenium-containing compounds.

7. The system of claim 1 , configured to produce the blended product water comprising less than about 4.4 ppm nitrate-containing compounds.

8. The system of claim 1 , configured to produce the blended product water comprising less than about 4 ppb arsenic-containing compounds.

9. The system of claim 1 , configured to produce the blended product water comprising less than about 24 ppt mercury-containing compounds.

10. The system of claim 1 , configured to produce the blended product water comprising less than about 24 ppm total dissolved solids.

11. The system of claim 1 , configured to produce the blended product water comprising less than about 5% of a concentration of selenium-containing compounds in the contaminated water.

12. The system of claim 1 , configured to produce the blended product water comprising less than about 15% of a concentration of nitrate-containing compounds in the contaminated water.

13. The system of claim 1 , configured to produce the blended product water comprising less than about 40% of a concentration of arsenic-containing compounds in the contaminated water.

14. The system of claim 1 , configured to produce the blended product water comprising less than about 5% of a concentration of mercury-containing compounds in the contaminated water.

15. A process for removing contaminants from a contaminated water, the process comprising:

concentrating the contaminated water to produce a first product water having a lower concentration of contaminants than the contaminated water, and a concentrated contaminated water having a concentration of contaminants at least two times higher than the contaminated water;

contacting the concentrated contaminated water with a zero valent iron media to produce a second product water having a concentration of contaminants at least 95% lower than the concentrated contaminated water, the contaminants selected from the group consisting of selenium-containing compounds, nitrate-containing compounds, arsenic-containing compounds, and mercury-containing compounds;

clarifying the second product water to produce a sludge comprising solid waste particles and a clarified liquid;

dewatering the sludge to produce a dewatered sludge and a dewatering liquid;

disposing of the dewatered sludge;

collecting the dewatering liquid; and

combining the first product water and all of the clarified liquid to produce a blended product water.

16. The process of claim 15 , further comprising thickening the sludge prior to dewatering the sludge.

17. The process of claim 15 , wherein concentrating the contaminated water comprises treating the contaminated water with a pressure driven membrane system.

18. The process of claim 15 , wherein concentrating the contaminated water comprises concentrating a volume of contaminated water and producing a first product water having about 50% to about 90% of the volume of the contaminated water and a concentrated contaminated water having about 10% to about 50% of the volume of the contaminated water.

19. The process of claim 15 , further comprising pre-filtering the contaminated water with a filter system to remove macroparticles, prior to concentrating the contaminated water.

20. A process for removing contaminants from a contaminated water, the process comprising:

concentrating the contaminated water to produce a first product water having a lower concentration of contaminants than the contaminated water, and a concentrated contaminated water having a concentration of contaminants at least two times higher than the contaminated water;

contacting the concentrated contaminated water with a biological subsystem to produce a second product water having a concentration of contaminants at least 95% lower than the concentrated contaminated water, the contaminants selected from the group consisting of selenium-containing compounds, nitrate-containing compounds, arsenic-containing compounds, and mercury-containing compounds;

clarifying the second product water to produce a sludge comprising solid waste particles and a clarified liquid;

dewatering the sludge to produce a dewatered sludge and a dewatering liquid;

disposing of the dewatered sludge;

collecting the dewatering liquid; and

combining the first product water and all of the clarified liquid to produce a blended product water.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2016
From: RIFFE, MICHAEL; SASSAMAN, JR, FRANK L.; WISMER, MICHAEL W.
To: EVOQUA WATER TECHNOLOGIES LLC
Reel/Frame 040369/0739 →
Continuity (3)
Continuation In Part 13825725
Provisional Application 61386427 · Sep 24, 2010
Related Publication 20170081227A1 · Mar 23, 2017