IP Library Granted Patent US 8,173,006
Granted Patent B2
US 8,173,006 · App. 12/895,568 · Granted May 8, 2012

Apparatus and method for producing electrolyzed water

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Quick Facts
Patent No.
US 8,173,006
App. No.
12/895,568
Granted
May 8, 2012
Kind
B2
Abstract

An electrolyzed water production apparatus and method safely and simply produce electrolyzed water having a sterilizing action, having a physiologically neutral pH value, and, in addition, simultaneously with strong acidic electrolyzed water and strong alkaline electrolyzed water depending upon the structure. The electrolyzed water production apparatus has an electrolyzer tank with an end that receives or stores raw water, and a power supply. The interior portion of the electrolyzer tank is partitioned by a plurality of diaphragms into a plurality of regions. An anode and a cathode (constituting an electrode pair) are positioned on either side of the diaphragm. In a certain region of the electrolyzer tank, an anode and a cathode are arranged so as to face each other without a diaphragm sandwiched between them. When raw water for electrolysis is electrolyzed, electrolyzed water having a desired pH of a neutral range is produced during electrolysis.

Claims (44)

1. An electrolyzed water production apparatus comprising

an electrolyzer tank for receiving or storing raw water for electrolysis, and

a power supply,

wherein two electrode pairs are provided in the electrolyzer tank and connected to the power supply, and each has an anode and an cathode arranged with a diaphragm sandwiched therebetween,

the electrolyzer tank is partitioned into three regions by diaphragms of the two electrode pairs,

in one region of the three regions, an anode of one electrode pair of the two electrode pairs and a cathode of another electrode pair of the two electrode pairs are arranged so as to face each other,

the two electrode pairs are provided such that a distance between the anode and the cathode of each of the electrode pairs can be controlled, and

electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm and capable of being taken out is produced by controlling the distance between the anode and the cathode of each of the electrode pairs in one region of the three regions of the electrolyzer tank.

2. An electrolyzed water production apparatus comprising:

an electrolyzer tank for receiving or storing raw water for electrolysis, wherein the electrolyzer tank includes a plurality of regions, and

at least one power supply,

wherein a plurality of electrode pairs are provided in the electrolyzer tank and connected to the at least one power supply, and each has an anode and a cathode arranged with a diaphragm sandwiched therebetween,

in one region of the plurality of regions, an anode of one electrode pair of the plurality of electrode pairs and a cathode of another electrode pair of the plurality of electrode pairs are arranged so as to face each other without a diaphragm therebetween,

the plurality of electrode pairs are provided such that a distance between the anode and the cathode of each of the electrode pairs can be controlled, and

electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm and capable of being taken out is produced by controlling the distance between the anode and the cathode in each of the electrode pairs in the electrolyzer tank.

3. The electrolyzed water production apparatus according to claim 2 , wherein the electrolyzer tank is partitioned into at least three regions by diaphragms of the plurality of electrode pairs,

in at least one region of the at least three regions, an anode of one electrode pair of the plurality of electrode pairs and a cathode of another electrode pair of the plurality of electrode pairs are arranged so as to face each other,

in at least one region of the at least three regions of the electrolyzer tank, electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm and capable of being taken out is produced by controlling the distance between the anode and the cathode of each of the electrode pairs.

4. The electrolyzed water production apparatus according to claim 3 , wherein, in the at least one region having an anode of one electrode pair of the plurality of electrode pairs and a cathode of another electrode pair of the plurality of electrode pairs arranged therein so as to face each other, a reaction at an anode side of the one electrode pair and a reaction at an cathode side of the another electrode pair are controlled so as to produce electrolyzed water having a desired pH.

5. The electrolyzed water production apparatus according to claim 3 , wherein the plurality of electrode pairs are two electrode pairs and the electrolyzer tank is partitioned into three.

6. The electrolyzed water production apparatus according to claim 3 , wherein the electrolyzer tank has a cylindrical shape and the electrolyzer tank is partitioned at least three regions having a flat fan shape by diaphragms of the plurality of electrode pairs.

7. The electrolyzed water production apparatus according to claim 2 , wherein as the electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm, electrolyzed water having a sterilizing action is produced.

8. The electrolyzed water production apparatus according to claim 2 , wherein the at least one power supply is configured to apply a same electric power or voltage or a different electric power or voltage to each of the plurality of electrode pairs.

9. A method for producing electrolyzed water, comprising

preparing an electrolyzer tank for receiving or storing raw water for electrolysis,

supplying or storing the raw water in the electrolyzer tank,

arranging two electrode pairs each composed of an anode and a cathode in the electrolyzer tank such that the anode and the cathode are arranged with a diaphragm sandwiched therebetween, the electrolyzer tank being partitioned into three regions by the diaphragms, and an anode of one electrode pair of the two electrode pairs and a cathode of another electrode pair of the two electrode pairs being arranged to face each other in one region of the three regions,

controlling a distance between the anode and the cathode in each electrode pair of the two electrode pairs,

electrolyzing the raw water for electrolysis by supplying power to the two electrode pairs while the two electrode pairs are allowed to be in contact with the raw water, and

producing electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm and capable of being taken out by controlling the distance between the anode and the cathode of each of the electrode pairs in one region of the three regions of the electrolyzer tank.

10. A method for producing electrolyzed water, comprising:

preparing an electrolyzer tank to include a plurality of regions for receiving or storing raw water for electrolysis,

supplying or storing the raw water in the electrolyzer tank,

arranging a plurality of electrode pairs each composed of an anode and a cathode in the electrolyzer tank such that the anode and the cathode are arranged with a diaphragm sandwiched therebetween, in one region of the plurality of regions, an anode of one electrode pair of the plurality of electrode pairs and a cathode of another electrode pair of the plurality of electrode pairs are arranged so as to face each other without a diaphragm therebetween,

controlling a distance between an anode and a cathode in each of the plurality of electrode pairs,

electrolyzing raw water for electrolysis by supplying power to the plurality of electrode pairs while the plurality of electrode pairs are allowed to be in contact with the raw water, and

producing electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm and capable of being taken out by controlling the distance between the anode and the cathode of each of the plurality of electrode pairs in the electrolyzer tank.

11. The method for producing electrolyzed water according to claim 10 , wherein the electrolyzer tank is partitioned into at least three regions by diaphragms of the plurality of electrode pairs, and

in at least one region of the at least three regions, the plurality of electrode pairs are arranged such that an anode of one electrode pair of the plurality of electrode pairs and a cathode of another electrode pair of the plurality of electrode pairs face each other, and

in at least one region of the at least three regions of the electrolyzer tank, electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm and capable of being taken out is produced by controlling the distance between the anode and the cathode of each of the electrode pairs in at least one region of the at least three regions of the electrolyzer tank.

12. The method for producing electrolyzed water according to claim 11 , wherein, in the at least one region having an anode of one electrode pair of the plurality of electrode pairs and a cathode of another electrode pair of the plurality of electrode pairs are arranged so as to face each other, a reaction at an anode side of the one electrode pair and a reaction at an cathode side of the another electrode pair are controlled so as to produce electrolyzed water having a desired pH.

13. The method for producing electrolyzed water according to claim 11 , wherein the electrolyzer tank has a cylindrical shape and the electrolyzer tank is partitioned into at least three regions having a flat fan shape by diaphragms of the plurality of electrode pairs.

14. The method for producing electrolyzed water according to claim 10 , wherein as the electrolyzed water having a pH of 2.7 to 7.5 and an available chlorine concentration of 10 to 60 ppm, electrolyzed water having a sterilizing action is produced.

15. The method for producing electrolyzed water according to claim 10 , wherein a same electric power or voltage or a different electric power or voltage is applied to each of the plurality of electrode pairs.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jul 31, 2019
From: CRESTLINE DIRECT FINANCE, L.P.
To: EMPIRE TECHNOLOGY DEVELOPMENT LLC
Reel/Frame 049924/0794 →
SECURITY INTEREST Recorded Jan 29, 2019
From: EMPIRE TECHNOLOGY DEVELOPMENT LLC
To: CRESTLINE DIRECT FINANCE, L.P.
Reel/Frame 048373/0217 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2010
From: UMIMOTO, KOICHI; NAGATA, SHUNJI
To: OSAKA ELECTRO-COMMUNICATION UNIVERSITY
Reel/Frame 025340/0045 →