WO2011069223A1 - Water reaction tank - Google Patents

Water reaction tank Download PDF

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Publication number
WO2011069223A1
WO2011069223A1 PCT/CA2009/001773 CA2009001773W WO2011069223A1 WO 2011069223 A1 WO2011069223 A1 WO 2011069223A1 CA 2009001773 W CA2009001773 W CA 2009001773W WO 2011069223 A1 WO2011069223 A1 WO 2011069223A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
flocculant
section
housing
reaction
Prior art date
Application number
PCT/CA2009/001773
Other languages
French (fr)
Inventor
Jerry Hanna
Original Assignee
Jerry Hanna
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jerry Hanna filed Critical Jerry Hanna
Priority to PCT/CA2009/001773 priority Critical patent/WO2011069223A1/en
Publication of WO2011069223A1 publication Critical patent/WO2011069223A1/en

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Classifications

    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/52Treatment of water, waste water, or sewage by flocculation or precipitation of suspended impurities
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F25/00Flow mixers; Mixers for falling materials, e.g. solid particles
    • B01F25/40Static mixers
    • B01F25/42Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions
    • B01F25/421Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F25/00Flow mixers; Mixers for falling materials, e.g. solid particles
    • B01F25/40Static mixers
    • B01F25/42Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions
    • B01F25/421Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path
    • B01F25/423Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path by means of elements placed in the receptacle for moving or guiding the components
    • B01F25/4231Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path by means of elements placed in the receptacle for moving or guiding the components using baffles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F25/00Flow mixers; Mixers for falling materials, e.g. solid particles
    • B01F25/40Static mixers
    • B01F25/42Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions
    • B01F25/421Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path
    • B01F25/423Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path by means of elements placed in the receptacle for moving or guiding the components
    • B01F25/4232Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions by moving the components in a convoluted or labyrinthine path by means of elements placed in the receptacle for moving or guiding the components using dams
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D21/00Separation of suspended solid particles from liquids by sedimentation
    • B01D21/01Separation of suspended solid particles from liquids by sedimentation using flocculating agents

Definitions

  • a water reaction tank for reading water containing suspended solids with a flocculant.
  • the water reaction tank comprises a housing having an input, an output, and a water flow path between the input and the output
  • the flow path has a mixing section and a reaction section.
  • Scalable flocculant ports are provided for inserting a flocculant into the mixing section of the housing.
  • Each of the rnixing section and the reaction section contains baffles.
  • the mixing section baffles encourage turbulent flow to increase contact with the flocculant, and the reaction section baffles encourage turbulent flow and increase the length of the water flow path,
  • a reaction tank comprising a housing having an input, an output, and a water flow path between the input and the output, the flow path having a mixing section and a reaction section, sealable flocculant ports for inserting a flocculant into the mixing section of the housing, where each of the mixing section and the reaction section contauiing baffles, the mixing section baffles encouraging turbulent flow to increase contact with the flocculant, the reaction section baffles encouraging turbulent flow and increasing the length of the water flow path. Flocculant is inserted into the rnixing section through the sealable flocculant ports.
  • FIG. 1 is a perspective view of a water reaction tank.
  • FIG. 2 is a top plan view of an upper level of the water reaction tank.
  • FIG. 3 is a top plan view of an intermediate level of the water reaction tank.
  • FIG. 4 is a top plan view of a lower level of the water reaction tank.
  • FIG. 5 is a top plan view of a top plate of the water reaction tank.
  • FIG. 6 is a perspective view of the intermediate level of the water reaction tank.
  • FIG. 7 is a perspective view of the lower level of the water reaction tank.
  • FIG.8 is a schematic view of a water clarifying system.
  • FIG. 9 is a schematic view of an alternate water clarifying system .
  • a water reaction tank generally identified by reference numeral 10 will now be described with reference to FIG. 1 through 7.
  • Water reaction rank 10 is used to clarify water containing suspended solids by reacting the suspended solids with a flocculant.
  • water reaction tank 10 includes a housing 12 having an input 14, an output 16, and a water flow path between input 14 and output 16.
  • the flow path has a mixing section 18 and a reaction section 20.
  • the different sections are made up of levels in tank 10.
  • Mixing section 18 is made up of upper level 22
  • reaction section 20 is made up of intermediate level 24 and lower level 26 within bousing 12.
  • Each level may have a sloped floor to cause the water to flow from the input to the output. These different levels are shown in FIG. 2, 3 and 4. Referring to FIG.
  • flocculant cither as a solid block, or in a porous container
  • An attachment (not shown) is provided to ensure the flocculant remains in the desired location.
  • Baffles 28 direct the water toward the flocculant and encourage tuburlent flow to increase contact between water and flocculant. and to distribute the flocculant throughout the water.
  • mixing section 18 flocculant and water are mixed, and is disposed above the reaction section within housing 12.
  • the input to this section is input 14 of housing 12, and the output 30 is a flow port, or hole, in the bottom of level 22 that causes the water to fall into intermediate level 24, Intermediate level 24 is shown in FIG.
  • housing 12 includes baffles 28 that increase the length of the water flow path, and encourage turbulent flow as water flows toward output 32 of intermediate level 24, and into bottom level 26.
  • Bottom level 26 also has baffles 28 that increase the flow path and encourage turbulent flow.
  • Bottom level 26 also has a channel 33 for directing the water toward output 16 of housing 12.
  • the length of the flow path through housing 12 is designed to allow tbc flocculant to have sufficient turbulence and time to react with the suspended solids, but is short enough that the water is output before a significant amount of solids settle out from the water.
  • housing 12 is intended to be a scaled unit with a top plate 34 shown in FIG. S.
  • Top plate 34 has flocculant ports 36 for inserting a flocculant into the mixing section, or upper level 22, of housing 12.
  • flocculant ports 36 for inserting a flocculant into the mixing section, or upper level 22, of housing 12.
  • housing 12 also includes sealable flushing ports 38 for permitting cleaning fluids to be flushed through housing 12 when opened to remove any debris or solids in the housing.
  • Each level has a set of flushing ports 38. Flushing ports are positioned on the side of each level 22, 24, 26 such that cleaning fluid flows perpendicular to the flow path direction, such that the cleaning fluids are not significantly impeded by baffles 28.
  • water reaction tank 10 is provided as described above. Water reaction tank 10 is prepared for use by positioning body 12 in a desired location, and levelling the housing 12. Flocculant is inserted into upper level 22 of housing 12 through flocculant ports 36, shown in FIG. 5. These ports are then sealed. Referring to FIG. 1, once tank 10 is properly set up, water with suspended solids is pumped into water reaction tank 10 through input 14. This is preferably done at a controlled rate m order to allow sufficient time within tank 10 to allow the fjocoilant to react with the suspended solids, but short enough that not much of the solids fall out. Referring to FIG.
  • baffles 28 As the water is pumped into upper level 22, water is diverted by baffles 28 to contact the flocculant, and to create a turbulent flow. The water then flows through output 30 and into intermediate level 24 shown in FIG. 3 where baffles 28 create turbulent flow, and increase the flow path of the water. The water then flows through output 32 and into lower level 26 shown in FIG. 4 where baffles 28 continue to create turbulent flow and increase the flow path of the water. The water then travels along channel 33 and exits at output 16.
  • Water reaction tank 10 is intended to be part of a system for cleaning water.
  • a preferred system is shown in FIG. 8, where pump 40 pumps water into tank 10, and water that exits tank 10 is carried into a filter tank 42 with porous baffles 44, such as burlap, that encourage the flocculated solids to fall out of the water. The water is then carried into a settling tank 46. Clarified water may then be pumped off the top and disposed of. In situations where there is limited space, the various tanks and components may be stacked in various configurations to reduce the overall footprint.
  • a resuspension tank 48 may be included to further dean the water, such as to reduce the total dissolved solid content in the water.
  • Resuspension tank 48 mixes the water with, for example, clay, to increase the turbidity of the water. The water may then be recirculated through water reaction tank 10 as shown, or through a second water reaction tank, not shown. The clay particles are then flocculated out in an attempt to access more of the dissolved solids in the water. While resuspension tank 48 is depicted as being located between filter tank 42 and settling tank 46, it will be understood that it could be located anywhere in the process after water reaction tank 10, depending on the preferences of the user.
  • water reaction tank 10 is cleaned by opening flushing ports 38, and flushing housing 12 with fluid, either water, or a cleaning solution if necessary.

Landscapes

  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Separation Of Suspended Particles By Flocculating Agents (AREA)

Abstract

A water reaction tank for reacting water containing suspended solids with a flocculant includes a housing having an input, an output, and a water flow path between the input and the output The flow path has a mixing section and a reaction section. Sealable flocculant ports are provided for inserting a flocculant into the mixing section of the housing. Each of the mixing section and the reaction section contains baffles. The mixing section baffles encourage turbulent flow to increase contact with the flocculant, and the reaction section baffles encourage turbulent flow and increase the length of the water Qow path.

Description

TITLE
[0001 ] Water reaction tank FIELD
[0002] A tank used to react water with a flocculant to clarify the water. BACKGROUND
[0003] Regulations require that water from construction or other sites must be cleaned to a certain degree before being returned to the environment. Flocculants may be used to cause suspended fine particles to settle out of the water.
SUMMARY
[0004] There is provided a water reaction tank for reading water containing suspended solids with a flocculant. The water reaction tank comprises a housing having an input, an output, and a water flow path between the input and the output The flow path has a mixing section and a reaction section. Scalable flocculant ports are provided for inserting a flocculant into the mixing section of the housing. Each of the rnixing section and the reaction section contains baffles. The mixing section baffles encourage turbulent flow to increase contact with the flocculant, and the reaction section baffles encourage turbulent flow and increase the length of the water flow path,
[0005] According to another aspect, there is provided a method of reacting water having suspended solids with a flocculant. A reaction tank is provided, comprising a housing having an input, an output, and a water flow path between the input and the output, the flow path having a mixing section and a reaction section, sealable flocculant ports for inserting a flocculant into the mixing section of the housing, where each of the mixing section and the reaction section contauiing baffles, the mixing section baffles encouraging turbulent flow to increase contact with the flocculant, the reaction section baffles encouraging turbulent flow and increasing the length of the water flow path. Flocculant is inserted into the rnixing section through the sealable flocculant ports. Water is pumped into the reaction tank at a rate such that the turbulent flow caused by the baffles allows the flocculant to react with the suspended solids in the reaction section, and such that the water exits the output of the housing prior to the flocculated solids substantially settling from the water. BRIEF DESCRIPTION OF THE DRAWINGS
[0006] These and other features will become more apparent from the following description in which reference is made to the appended drawings, the drawings are for the purpose of illustration only and arc not intended to be in any way limiting, wherein:
FIG. 1 is a perspective view of a water reaction tank.
FIG. 2 is a top plan view of an upper level of the water reaction tank. FIG. 3 is a top plan view of an intermediate level of the water reaction tank. FIG. 4 is a top plan view of a lower level of the water reaction tank.
FIG. 5 is a top plan view of a top plate of the water reaction tank.
FIG. 6 is a perspective view of the intermediate level of the water reaction tank. FIG. 7 is a perspective view of the lower level of the water reaction tank.
FIG.8 is a schematic view of a water clarifying system.
FIG. 9 is a schematic view of an alternate water clarifying system .
DETAILED DESCRIPTION
[0007] A water reaction tank generally identified by reference numeral 10 will now be described with reference to FIG. 1 through 7.
Structure and Relationship of Parts:
[0008] Water reaction rank 10 is used to clarify water containing suspended solids by reacting the suspended solids with a flocculant. Referring to FIG. 1, water reaction tank 10 includes a housing 12 having an input 14, an output 16, and a water flow path between input 14 and output 16. The flow path has a mixing section 18 and a reaction section 20. As shown in FIG. 1, the different sections are made up of levels in tank 10. Mixing section 18 is made up of upper level 22 and reaction section 20 is made up of intermediate level 24 and lower level 26 within bousing 12. Each level may have a sloped floor to cause the water to flow from the input to the output. These different levels are shown in FIG. 2, 3 and 4. Referring to FIG. 2, flocculant, cither as a solid block, or in a porous container, is positioned strategically among the baffles 28 in upper level 22. An attachment (not shown) is provided to ensure the flocculant remains in the desired location. Baffles 28 direct the water toward the flocculant and encourage tuburlent flow to increase contact between water and flocculant. and to distribute the flocculant throughout the water. In mixing section 18, flocculant and water are mixed, and is disposed above the reaction section within housing 12. The input to this section is input 14 of housing 12, and the output 30 is a flow port, or hole, in the bottom of level 22 that causes the water to fall into intermediate level 24, Intermediate level 24 is shown in FIG. 3, and includes baffles 28 that increase the length of the water flow path, and encourage turbulent flow as water flows toward output 32 of intermediate level 24, and into bottom level 26. Bottom level 26 also has baffles 28 that increase the flow path and encourage turbulent flow. Bottom level 26 also has a channel 33 for directing the water toward output 16 of housing 12. The length of the flow path through housing 12 is designed to allow tbc flocculant to have sufficient turbulence and time to react with the suspended solids, but is short enough that the water is output before a significant amount of solids settle out from the water. [0009] While not shown in FIG. 1, housing 12 is intended to be a scaled unit with a top plate 34 shown in FIG. S. Top plate 34 has flocculant ports 36 for inserting a flocculant into the mixing section, or upper level 22, of housing 12. By comparing FIG. 2 with FIG. 5, it can be seen that, preferably, the flocculant is inserted in the spaces between baffles 28. Flocculant ports 36 arc sealable, such that, once the flocculant has been inserted, housing 12 may be properly sealed to prevent any leakage.
[0010] Referring to FIG. 1, 6 and 7, housing 12 also includes sealable flushing ports 38 for permitting cleaning fluids to be flushed through housing 12 when opened to remove any debris or solids in the housing. Each level has a set of flushing ports 38. Flushing ports are positioned on the side of each level 22, 24, 26 such that cleaning fluid flows perpendicular to the flow path direction, such that the cleaning fluids are not significantly impeded by baffles 28.
Operation:
[001 1 ] Referring to FIG. 1 through 7, water reaction tank 10 is provided as described above. Water reaction tank 10 is prepared for use by positioning body 12 in a desired location, and levelling the housing 12. Flocculant is inserted into upper level 22 of housing 12 through flocculant ports 36, shown in FIG. 5. These ports are then sealed. Referring to FIG. 1, once tank 10 is properly set up, water with suspended solids is pumped into water reaction tank 10 through input 14. This is preferably done at a controlled rate m order to allow sufficient time within tank 10 to allow the fjocoilant to react with the suspended solids, but short enough that not much of the solids fall out. Referring to FIG. 2, as the water is pumped into upper level 22, water is diverted by baffles 28 to contact the flocculant, and to create a turbulent flow. The water then flows through output 30 and into intermediate level 24 shown in FIG. 3 where baffles 28 create turbulent flow, and increase the flow path of the water. The water then flows through output 32 and into lower level 26 shown in FIG. 4 where baffles 28 continue to create turbulent flow and increase the flow path of the water. The water then travels along channel 33 and exits at output 16.
[0012] Water reaction tank 10 is intended to be part of a system for cleaning water. A preferred system is shown in FIG. 8, where pump 40 pumps water into tank 10, and water that exits tank 10 is carried into a filter tank 42 with porous baffles 44, such as burlap, that encourage the flocculated solids to fall out of the water. The water is then carried into a settling tank 46. Clarified water may then be pumped off the top and disposed of. In situations where there is limited space, the various tanks and components may be stacked in various configurations to reduce the overall footprint.
[0013] Alternatively, referring to FIG. 9, a resuspension tank 48 may be included to further dean the water, such as to reduce the total dissolved solid content in the water. Resuspension tank 48 mixes the water with, for example, clay, to increase the turbidity of the water. The water may then be recirculated through water reaction tank 10 as shown, or through a second water reaction tank, not shown. The clay particles are then flocculated out in an attempt to access more of the dissolved solids in the water. While resuspension tank 48 is depicted as being located between filter tank 42 and settling tank 46, it will be understood that it could be located anywhere in the process after water reaction tank 10, depending on the preferences of the user.
[0014] Referring again to FIG. I, once operations have ceased, water reaction tank 10 is cleaned by opening flushing ports 38, and flushing housing 12 with fluid, either water, or a cleaning solution if necessary.
[0015] In this patent document, the word "comprising" is used in its non-limiting sense to mean that items following the word are included but items not specifically mentioned are not excluded. A reference to an element by the indefinite article "a" does not exclude the possibility that more than one of the element is present, unless the context clearly requires that there be one and only one of the elements.
[0016] The following claims are to be understood to include what is specifically illustrated and described above, what is conceptually equivalent, and what can be obviously substituted. Those skilled in the art will appreciate that various adaptations and modifications of the described embodiments can be configured without departing from the scope of the claims. The illustrated embodiments have been set forth only as examples and should not be taken as limiting the invention. It is to be understood that within the scope of the following claims, the invention may be practiced other than as specifically illustrated and described.

Claims

What is Claimed is:
1. A water reaction tank for reacting water with a flocculant. the water containing suspended solids, the water reaction tank comprising:
a housing having an input, an output, and a water flow path between the input and the output, the flow path having a mixing section and a reaction section;
sealable flocculant ports for inserting a flocculant into the mixing section of the housing;
each of the mixing section and the reaction section containing baffles, the mixing section baffles encouraging turbulent flow to increase contact with the, flocculant, the reaction section baffles encouraging turbulent flow and increasing the length of the water flow path.
2. The water reaction tank of claim 1 , wherein the Qocculant ports are sealable.
3. The water reaction tank of claim 1 , wherein the mixing section is disposed above the reaction section within the housing, the mixing section and the reaction section being connected by a vertical flow port.
4. The water reaction tank of claim 3, wherein the reaction section comprises more than one vertically stacked level within the housing.
5. The water reaction tank of claim 1 , further comprising sealable flushing ports for permitting cleaning fluids to be flushed through the housing when opened to remove any debris or solids in the tank.
6. The water reaction tank of claim 5, wherein the flushing ports permit cleaning fluids to be flushed through the housing perpendicular to the flow path direction such that the cleamng fluids are not significantly impeded by the baffles.
7. The water reaction tank of claim 1 , wherein the housing has an attachment for securing a solid block of flocculant or a flocculant in a porous container within the mixing section.
8. A method of reacting water having suspended solids with a flocculant, comprising the steps of:
providing a reaction tank comprising;
a housing having an input, an output, and a water, flow path between the input and the output the flow path having a mixing section and a reaction section;
scalable flocculant ports for inserting a flocculant into the mixing section of the housing;
each of the mixing section and the reaction section containing baffles, the mixing section baffles encouraging turbulent flow to increase contact with the flocculant, the reaction section baffJes encouraging turbulent flow and increasing the length of the water flow path;
inserting flocculant into the mixing section through the scalable flocculant ports; pumping water into the reaction tank at a rate such that the turbulent flow caused by the baffles allows the flocculant to react with the suspended solids in the reaction section, and such that the water exits the output of the housing pnor to the flocculated solids substantially settling from the water.
PCT/CA2009/001773 2009-12-08 2009-12-08 Water reaction tank WO2011069223A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CA2009/001773 WO2011069223A1 (en) 2009-12-08 2009-12-08 Water reaction tank

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CA2009/001773 WO2011069223A1 (en) 2009-12-08 2009-12-08 Water reaction tank

Publications (1)

Publication Number Publication Date
WO2011069223A1 true WO2011069223A1 (en) 2011-06-16

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PCT/CA2009/001773 WO2011069223A1 (en) 2009-12-08 2009-12-08 Water reaction tank

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6584688B1 (en) * 2018-04-13 2019-10-02 三菱電機株式会社 Water circulation circuit system

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2126151A (en) * 1936-08-31 1938-08-09 Monsanto Chemicals Process of flocculation
US3377274A (en) * 1965-01-05 1968-04-09 Nalco Chemical Co Method of coagulation of low turbidity water
GB1346596A (en) * 1971-05-20 1974-02-13 Allied Colloids Mfg Flocculating method
US20070175804A1 (en) * 2003-05-22 2007-08-02 Sakae Kosanda Coagulation-sedimentation apparatus
IL195609A (en) * 2008-06-09 2013-10-31 Jerry Hanna Water reaction tank

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2126151A (en) * 1936-08-31 1938-08-09 Monsanto Chemicals Process of flocculation
US3377274A (en) * 1965-01-05 1968-04-09 Nalco Chemical Co Method of coagulation of low turbidity water
GB1346596A (en) * 1971-05-20 1974-02-13 Allied Colloids Mfg Flocculating method
US20070175804A1 (en) * 2003-05-22 2007-08-02 Sakae Kosanda Coagulation-sedimentation apparatus
IL195609A (en) * 2008-06-09 2013-10-31 Jerry Hanna Water reaction tank

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6584688B1 (en) * 2018-04-13 2019-10-02 三菱電機株式会社 Water circulation circuit system

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