Method for mixing a plurality of solutions
11511243 · 2022-11-29
Inventors
Cpc classification
B01F33/824
PERFORMING OPERATIONS; TRANSPORTING
B01F25/102
PERFORMING OPERATIONS; TRANSPORTING
B01F33/811
PERFORMING OPERATIONS; TRANSPORTING
B01F25/31242
PERFORMING OPERATIONS; TRANSPORTING
B01F35/831
PERFORMING OPERATIONS; TRANSPORTING
B01F23/483
PERFORMING OPERATIONS; TRANSPORTING
B01F23/49
PERFORMING OPERATIONS; TRANSPORTING
B01F33/813
PERFORMING OPERATIONS; TRANSPORTING
B01F25/3121
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01F23/00
PERFORMING OPERATIONS; TRANSPORTING
B01F25/312
PERFORMING OPERATIONS; TRANSPORTING
B01F33/81
PERFORMING OPERATIONS; TRANSPORTING
B01F33/82
PERFORMING OPERATIONS; TRANSPORTING
B01F23/40
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A first solution is mixed and diluted with diluting liquid to make a first dilute solution, a second solution is mixed and diluted with diluting liquid to make a second dilute solution, and the first dilute solution and second dilute solution, both diluted with diluting liquid, are mixed in a sealed tank.
Claims
1. An apparatus for mixing a plurality of solutions that mixes and dilutes the plurality of solutions with diluting liquid, the apparatus comprising: a first diluter for mixing a first solution with diluting liquid to prepare a first dilute solution; a second diluter for mixing a second solution with diluting liquid to prepare a second dilute solution; and a sealed tank for mixing the first dilute solution discharged from the first diluter with the second dilute solution discharged from the second diluter, wherein the sealed tank is connected with a first dilute solution inlet duct and a second dilute solution inlet duct in tangential directions so that the first dilute solution from the first dilute solution duct and the second dilute solution from the second dilute solution duct flow in the same circular stream direction in the sealed tank, wherein the sealed tank is a cyclone mixing tank, and wherein the cyclone mixing tank is a circular cylinder extending in a vertical direction, with a mixed solution discharge duct disposed at a center of the circular cylinder, and wherein an inlet of the mixed solution discharge duct is disposed at a location distanced from a top of the cyclone mixing tank so that flow of the mixed solution is discharged upwardly therethrough.
2. The apparatus for mixing a plurality of solutions as cited in claim 1 wherein an air vent valve is connected at the upper region of the cyclone mixing tank, which is the sealed tank.
3. The apparatus for mixing a plurality of solutions as cited in claim 1 wherein the first diluter is a cyclone mixing tank.
4. The apparatus for mixing a plurality of solutions as cited in claim 1 wherein the second diluter is a cyclone mixing tank.
5. The apparatus for mixing a plurality of solutions as cited in claim 1 wherein the first diluter is an ejector pump.
6. The apparatus for mixing a plurality of solutions as cited in claim 1 wherein the second diluter is an ejector pump.
7. A method for mixing a plurality of solutions that mixes and dilutes the plurality of solutions with diluting liquid, the method comprising: mixing a first solution with diluting liquid in a first diluter to prepare a first dilute solution while mixing a second solution with diluting liquid in a second diluter to prepare a second dilute solution; and introducing the first dilute solution and the second dilute solution into a sealed tank to mix the first solution and second solution, the sealed tank being connected with a first dilute solution inlet duct and a second dilute solution inlet duct in tangential directions so that the first dilute solution from the first dilute solution duct and the second dilute solution from the second dilute solution duct flow in the same circular stream direction in the sealed tank, wherein the sealed tank is a cyclone mixing tank, and wherein the cyclone mixing tank is a circular cylinder extending in a vertical direction, with a mixed solution discharge duct disposed at a center of the circular cylinder, and wherein an inlet of the mixed solution discharge duct is disposed at a location distanced from a top of the cyclone mixing tank so that the flow of the mixed solution is discharged upwardly therethrough.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
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DESCRIPTION OF THE EMBODIMENTS
(6) The following describes embodiments of the present invention based on the figures. However, the following embodiments are merely specific examples of the mixing apparatus and method for mixing a plurality of solutions representative of the technology associated with the present invention, and the mixing apparatus and method for mixing a plurality of solutions of the present invention are not limited to the embodiments described below.
(7) Further, in this application, alphanumeric labels (reference signs) are assigned to components of the embodiments to make the patent claims more easily understood, and those labels are appended to components described in the “Claims” and “Means for Solving the Problem and Effects of the Invention” sections. However, components described in the patent claims are in no way limited to the components of the embodiments.
(8) The mixing apparatus shown in
(9) Since the mixing apparatus shown in the figures is equipped with pumps to supply the solutions and diluting liquid, flow rates of the solution pumps 6 and diluting liquid pump 7 are controlled to adjust the flow (rates) of the solutions and diluting liquid. However, in a mixing apparatus where the solutions and diluting liquid are supplied under pressure from external equipment, the solution pumps and diluting liquid pump are superfluous, and flow (rates) of the solutions and diluting liquid are adjusted by regulating valves.
(10) In the mixing apparatus shown in
(11) Each cyclone mixing tank diluter 1 shown in
(12) The cyclone mixing tank of the first diluter 1A introduces first solution and diluting liquid through the pair of inlet ducts 3, mixes and dilutes the first solution with diluting liquid inside the circular cylindrical tank, and supplies that mixture as first dilute solution to the sealed tank 2 via the discharge duct 4. Similarly, the second diluter 1B introduces second solution and diluting liquid through the pair of inlet ducts 3, mixes and dilutes the second solution with diluting liquid inside the circular cylindrical tank, and supplies that mixture as second dilute solution to the sealed tank 2 via the discharge duct 4.
(13) The sealed tank 2 for mixing the first dilute solution and the second dilute solution is also a cyclone (vortex) mixing tank, and as shown in
(14) The mixing apparatus in
(15) The mixing apparatus mixes the first solution and second solution according to a specified mixing ratio, and mixes each solution and diluting liquid in a specified ratio to dilute the solutions in specified ratios. The first solution and second solution mixing ratio is determined by the ratio of the amount of first solution flowing into the first diluter 1A to the amount of second solution flowing into the second diluter 1B. Since the two solution pumps 6 supply solution to the first diluter 1A and the second diluter 1B in the mixing apparatus of
(16) In addition, a first flow rate regulating valve 10A connected in line with an inlet duct 3 of the first diluter 1A regulates the flow of diluting liquid supplied to the first diluter 1A, and a second flow rate regulating valve 10B connected in line with an inlet duct 3 of the second diluter 1B regulates the flow of diluting liquid supplied to the second diluter 1B. This sets the ratio for diluting first solution with diluting liquid and the ratio for diluting second solution with diluting liquid. The first flow rate regulating valve 10A is controlled by the controller 8 to regulate the flow rate of diluting liquid corresponding to the flow rate of first solution into the first diluter 1A and thereby dilute the first solution in a specified ratio. Similarly, the second flow rate regulating valve 10B is controlled by the controller 8 to regulate the flow rate of diluting liquid corresponding to the flow rate of second solution into the second diluter 1B and thereby dilute the second solution in a specified ratio.
(17) Further, the diluting liquid flow rate regulating valves 10 also set the ratio of diluting liquid to the first solution added to the second solution. Specifically, the flow rate regulating valves 10 set the ratio for diluting the entire amount of solution. The controller 8 controls diluting liquid flow rates with the first flow rate regulating valve 10A and the second flow rate regulating valve 10B to set (to specific values) the dilution ratio of the first solution with diluting liquid, the dilution ratio of the second solution with diluting liquid, and cumulative dilution ratio of all solutions with diluting liquid.
(18) Turning to
(19) First solution is sucked into the ejector pump of the first diluter 1A, mixed and diluted with the diluting liquid, and supplied to the sealed tank 2. Similarly, second solution is sucked into the ejector pump of the second diluter 1B, mixed and diluted with the diluting liquid, and also supplied to the sealed tank 2.
(20) In the mixing apparatus shown in
(21) The mixing apparatus of the present invention can be used effectively as an apparatus to mix solutions, which produce adverse effects when mixed in high concentration, under ideal conditions.
(22) It should be apparent to those with an ordinary skill in the art that while various preferred embodiments of the invention have been shown and described, it is contemplated that the invention is not limited to the particular embodiments disclosed, which are deemed to be merely illustrative of the inventive concepts and should not be interpreted as limiting the scope of the invention, and which are suitable for all modifications and changes falling within the scope of the invention as defined in the appended claims.