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US20010040134A1 - System and method for oxygenation of waste water - Google Patents

System and method for oxygenation of waste water
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Publication number
US20010040134A1
US20010040134A1US09/915,487US91548701AUS2001040134A1US 20010040134 A1US20010040134 A1US 20010040134A1US 91548701 AUS91548701 AUS 91548701AUS 2001040134 A1US2001040134 A1US 2001040134A1
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US
United States
Prior art keywords
oxygen
discharge pipe
waste water
water
collection basin
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Granted
Application number
US09/915,487
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US6413418B2 (en
Inventor
Sudhir Brahmbhatt
J. Forde
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
MG Industries Inc
American Air Liquide Inc
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MG Industries Inc
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Publication of US6413418B2publicationCriticalpatent/US6413418B2/en
Assigned to MESSER GRIESHEIM INDUSTRIES LLCreassignmentMESSER GRIESHEIM INDUSTRIES LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: MESSER GRIESHEIM INDUSTRIES, INC.
Assigned to AMERICAN AIR LIQUIDE, INC.reassignmentAMERICAN AIR LIQUIDE, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: ALIG LLC
Assigned to ALIG LLCreassignmentALIG LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: MESSER GRIESHEIM INDUSTRIES LLC
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Abstract

Oxygen is mixed with waste water at an early stage in a water treatment facility, to reduce odor caused by anaerobic reactions of sulfur. Waste water is withdrawn from a collection basin, by a pump connected to a suction pipe, and is mixed with oxygen from an external source. The mixture, having been saturated with oxygen, is then returned to the collection basin through a discharge pipe. The end of the discharge pipe is positioned at a higher vertical level than the end of the suction pipe, to prevent gas from entering the pump which would cause cavitation. Also, the end of the discharge pipe has a blind flange, such that the oxygen-enriched water exiting the discharge pipe flows in a direction which is non-parallel to the axis of the pipe. This arrangement provides better mixing of the oxygen with the water in the basin, and prevents the oxygen-enriched water from flowing too soon to the suction pipe. The invention substantially improves the efficiency and efficacy of waste water treatment, because it provides an economical way to oxygenate the waste water at an early stage in the treatment process.

Description

Claims (20)

What is claimed is:
1. A system for dissolving oxygen in a waste water collection basin, comprising:
a) a source of oxygen, the oxygen source being connected to a discharge pipe having an end located in the collection basin,
b) a suction pipe having an end located in the collection basin, and
c) a pump connected to the suction pipe and to a mixing unit which is connected to the oxygen source,
wherein the end of the discharge pipe is positioned above a level of the end of the suction pipe.
2. The system of
claim 1
, wherein the discharge pipe has a side wall, wherein the discharge pipe has a plurality of holes disposed in the side wall, and wherein the discharge pipe includes a blind flange connected to the end of the discharge pipe.
3. A system for dissolving oxygen in a waste water collection basin, comprising:
a) a source of oxygen, the oxygen source being connected to a discharge pipe having an end located in the collection basin,
b) a suction pipe having an end located in the collection basin, and
c) a pump connected to the suction pipe and to a mixing unit which is connected to the oxygen source,
wherein the discharge pipe has a side wall, wherein the discharge pipe has a plurality of holes disposed in the side wall, and wherein the discharge pipe includes a blind flange connected to the end of the discharge pipe.
4. The system of
claim 3
, wherein the end of the discharge pipe is positioned, within the collection basin, above a level of the end of the suction pipe.
5. The system of
claim 4
, wherein the end of the discharge pipe is positioned at least two feet above the level of the end of the suction pipe.
6. A system for oxygenation of waste water in a collection basin, comprising:
a) means for providing pressurized oxygen,
b) means for withdrawing waste water from the collection basin,
c) means for mixing oxygen from the oxygen providing means with waste water from the withdrawing means to produce oxygen-enriched water, and
d) means for conveying said oxygen-enriched water to the collection basin and for discharging said oxygen-enriched water into the collection basin,
wherein the discharging means is positioned at a vertical level which is different from a vertical level of the withdrawing means.
7. The system of
claim 6
, wherein the discharging means includes a conduit having a longitudinal axis, and wherein the conduit includes means for directing fluid flow out of the conduit in a direction which is non-parallel to said longitudinal axis.
8. A system for oxygenation of waste water in a collection basin, comprising:
a) means for providing pressurized oxygen,
b) means for withdrawing waste water from the collection basin,
c) means for mixing oxygen from the oxygen providing means with waste water from the withdrawing means to produce oxygen-enriched water, and
d) means for conveying said oxygen-enriched water to the collection basin and for discharging said oxygen-enriched water into the collection basin,
wherein the discharging means includes a conduit having a longitudinal axis, and wherein the conduit includes means for directing fluid flow out of the conduit in a direction which is non-parallel to said longitudinal axis.
9. A method of oxygenating waste water in a collection basin, the method comprising:
a) withdrawing waste water from the collection basin,
b) mixing the waste water withdrawn in step (a) with oxygen to form oxygen-enriched water, and
c) injecting said oxygen-enriched water into the collection basin,
wherein the injecting step and the withdrawing step are performed simultaneously at different vertical levels within the collection basin.
10. The method of
claim 9
, wherein the injecting step is performed at a higher vertical level than the withdrawing step.
11. The method of
claim 9
, wherein the injecting step comprises delivering the oxygen-enriched water to the collection basin through a conduit having a longitudinal axis, and directing the oxygen-enriched water out of the conduit in a direction which is non-parallel to said longitudinal axis.
12. The method of
claim 10
, wherein the injecting step comprises delivering the oxygen-enriched water to the collection basin through a conduit having a longitudinal axis, and directing the oxygen-enriched water out of the conduit in a direction which is non-parallel to said longitudinal axis.
13. A method of oxygenating waste water in a collection basin, the method comprising:
a) withdrawing waste water from the collection basin,
b) mixing the waste water withdrawn in step (a) with oxygen to form oxygen-enriched water, and
c) injecting said oxygen-enriched water into the collection basin,
wherein the injecting step comprises delivering the oxygen-enriched water to the collection basin through a conduit having a longitudinal axis, and directing the oxygen-enriched water out of the conduit in a direction which is non-parallel to said longitudinal axis.
14. In a waste water treatment system, the system having a plurality of water treatment stages, the water treatment stages being preceded by at least one collection stage,
the improvement comprising a source of oxygen connected to said collection stage, wherein oxygen is mixed with waste water in the collection stage before being treated in the system.
15. The improvement of
claim 14
, further comprising a suction pipe having an end located in the collection stage, and a pump connected to the suction pipe and to a mixing unit which is connected to the oxygen source,
wherein the end of the discharge pipe is positioned above a level of the end of the suction pipe.
16. The improvement of
claim 14
, wherein the source of oxygen enters the collection stage through a discharge pipe, and wherein the discharge pipe has a side wall, wherein the discharge pipe has a plurality of holes disposed in the side wall, and wherein the discharge pipe includes a blind flange connected to the end of the discharge pipe.
17. The improvement of
claim 15
, wherein the source of oxygen enters the collection stage through a discharge pipe, and wherein the discharge pipe has a side wall, wherein the discharge pipe has a plurality of holes disposed in the side wall, and wherein the discharge pipe includes a blind flange connected to the end of the discharge pipe.
18. In a method for treating waste water, the method including treating the water in a plurality of water treatment steps, the water treatment steps being preceded by at least one waste water collection step,
the improvement comprising mixing oxygen with the waste water, during the collection step, before treating the waste water.
19. The improvement of
claim 18
, wherein the mixing step comprises withdrawing waste water from a collection basin, mixing the withdrawn waste water with oxygen to form oxygen-enriched water, and injecting the oxygen-enriched water into the collection basin, wherein the withdrawing and injecting steps are performed at different vertical levels within the collection basin.
20. The improvement of
claim 19
, wherein the injecting step is performed by passing the oxygen-enriched water through a discharge pipe having a longitudinal axis, and directing the oxygen-enriched water out of the discharge pipe in a direction which is non-parallel to said longitudinal axis.
US09/915,4872000-01-202001-07-25System and method for oxygenation of waste waterExpired - LifetimeUS6413418B2 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US09/915,487US6413418B2 (en)2000-01-202001-07-25System and method for oxygenation of waste water

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
US09/488,105US6290857B1 (en)2000-01-202000-01-20Method for oxygenation of waste water
US09/915,487US6413418B2 (en)2000-01-202001-07-25System and method for oxygenation of waste water

Related Parent Applications (1)

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US09/488,105DivisionUS6290857B1 (en)2000-01-202000-01-20Method for oxygenation of waste water

Publications (2)

Publication NumberPublication Date
US20010040134A1true US20010040134A1 (en)2001-11-15
US6413418B2 US6413418B2 (en)2002-07-02

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US09/488,105Expired - LifetimeUS6290857B1 (en)2000-01-202000-01-20Method for oxygenation of waste water
US09/915,487Expired - LifetimeUS6413418B2 (en)2000-01-202001-07-25System and method for oxygenation of waste water

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Cited By (15)

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US7806584B2 (en)1997-10-242010-10-05Revalesio CorporationDiffuser/emulsifier
US20100303871A1 (en)*2007-10-252010-12-02Revalesio CorporationCompositions and methods for modulating cellular membrane-mediated intracellular signal transduction
US7887698B2 (en)1997-10-242011-02-15Revalesio CorporationDiffuser/emulsifier for aquaculture applications
US8962700B2 (en)2006-10-252015-02-24Revalesio CorporationElectrokinetically-altered fluids comprising charge-stabilized gas-containing nanostructures
US8980325B2 (en)2008-05-012015-03-17Revalesio CorporationCompositions and methods for treating digestive disorders
US9011922B2 (en)2009-04-272015-04-21Revalesio CorporationCompositions and methods for treating insulin resistance and diabetes mellitus
US9198929B2 (en)2010-05-072015-12-01Revalesio CorporationCompositions and methods for enhancing physiological performance and recovery time
US9402803B2 (en)2006-10-252016-08-02Revalesio CorporationMethods of wound care and treatment
US9492404B2 (en)2010-08-122016-11-15Revalesio CorporationCompositions and methods for treatment of taupathy
US9512398B2 (en)2006-10-252016-12-06Revalesio CorporationIonic aqueous solutions comprising charge-stabilized oxygen-containing nanobubbles
US9523090B2 (en)2007-10-252016-12-20Revalesio CorporationCompositions and methods for treating inflammation
US9745567B2 (en)2008-04-282017-08-29Revalesio CorporationCompositions and methods for treating multiple sclerosis
US10125359B2 (en)2007-10-252018-11-13Revalesio CorporationCompositions and methods for treating inflammation
FR3134284A1 (en)*2022-04-112023-10-13L'air Liquide, Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges Claude Process and installation for enriching dissolved oxygen in irrigation water for crops in above-ground greenhouses
WO2024086525A1 (en)*2022-10-202024-04-25Prosper Technologies, LlcMethod of gas infusion for wastewater treatment

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US7654728B2 (en)1997-10-242010-02-02Revalesio CorporationSystem and method for therapeutic application of dissolved oxygen
US7128278B2 (en)1997-10-242006-10-31Microdiffusion, Inc.System and method for irritating with aerated water
US7264734B2 (en)*2002-01-032007-09-04Agl ResourcesMethod for treating dredged material
US7566397B2 (en)*2004-02-092009-07-28Eco Oxygen Technologies, LlcSuperoxygenation of raw wastewater for odor/corrosion control
US8784898B2 (en)2006-10-252014-07-22Revalesio CorporationMethods of wound care and treatment
WO2008115290A2 (en)2006-10-252008-09-25Revalesio CorporationMethods of wound care and treatment
US8784897B2 (en)2006-10-252014-07-22Revalesio CorporationMethods of therapeutic treatment of eyes
US8609148B2 (en)2006-10-252013-12-17Revalesio CorporationMethods of therapeutic treatment of eyes
US9381446B2 (en)2012-01-182016-07-05General Electric CompanySystem for deaeration in a flash vessel

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Cited By (20)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US9034195B2 (en)1997-10-242015-05-19Revalesio CorporationDiffuser/emulsifier for aquaculture applications
US7806584B2 (en)1997-10-242010-10-05Revalesio CorporationDiffuser/emulsifier
US7887698B2 (en)1997-10-242011-02-15Revalesio CorporationDiffuser/emulsifier for aquaculture applications
US9402803B2 (en)2006-10-252016-08-02Revalesio CorporationMethods of wound care and treatment
US9512398B2 (en)2006-10-252016-12-06Revalesio CorporationIonic aqueous solutions comprising charge-stabilized oxygen-containing nanobubbles
US9004743B2 (en)2006-10-252015-04-14Revalesio CorporationMixing device for creating an output mixture by mixing a first material and a second material
US9511333B2 (en)2006-10-252016-12-06Revalesio CorporationIonic aqueous solutions comprising charge-stabilized oxygen-containing nanobubbles
US8962700B2 (en)2006-10-252015-02-24Revalesio CorporationElectrokinetically-altered fluids comprising charge-stabilized gas-containing nanostructures
US10125359B2 (en)2007-10-252018-11-13Revalesio CorporationCompositions and methods for treating inflammation
US20100303871A1 (en)*2007-10-252010-12-02Revalesio CorporationCompositions and methods for modulating cellular membrane-mediated intracellular signal transduction
US9523090B2 (en)2007-10-252016-12-20Revalesio CorporationCompositions and methods for treating inflammation
US9745567B2 (en)2008-04-282017-08-29Revalesio CorporationCompositions and methods for treating multiple sclerosis
US8980325B2 (en)2008-05-012015-03-17Revalesio CorporationCompositions and methods for treating digestive disorders
US9272000B2 (en)2009-04-272016-03-01Revalesio CorporationCompositions and methods for treating insulin resistance and diabetes mellitus
US9011922B2 (en)2009-04-272015-04-21Revalesio CorporationCompositions and methods for treating insulin resistance and diabetes mellitus
US9198929B2 (en)2010-05-072015-12-01Revalesio CorporationCompositions and methods for enhancing physiological performance and recovery time
US9492404B2 (en)2010-08-122016-11-15Revalesio CorporationCompositions and methods for treatment of taupathy
FR3134284A1 (en)*2022-04-112023-10-13L'air Liquide, Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges Claude Process and installation for enriching dissolved oxygen in irrigation water for crops in above-ground greenhouses
WO2023198345A1 (en)*2022-04-112023-10-19L'air Liquide, Societe Anonyme Pour L'etude Et L'exploitation Des Procedes Georges ClaudeMethod and equipment for dissolved oxygen enrichment of irrigation water for plant cultivation
WO2024086525A1 (en)*2022-10-202024-04-25Prosper Technologies, LlcMethod of gas infusion for wastewater treatment

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Publication numberPublication date
US6290857B1 (en)2001-09-18
WO2001053218A1 (en)2001-07-26
US6413418B2 (en)2002-07-02

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