WO2024099208A1 - 臭氧水散布装置 - Google Patents
臭氧水散布装置 Download PDFInfo
- Publication number
- WO2024099208A1 WO2024099208A1 PCT/CN2023/129061 CN2023129061W WO2024099208A1 WO 2024099208 A1 WO2024099208 A1 WO 2024099208A1 CN 2023129061 W CN2023129061 W CN 2023129061W WO 2024099208 A1 WO2024099208 A1 WO 2024099208A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- water
- container
- ozone
- storage container
- cooling
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B05—SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
- B05B—SPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
- B05B11/00—Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
- B05B11/01—Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
- B05B11/10—Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
-
- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F1/00—Treatment of water, waste water, or sewage
- C02F1/46—Treatment of water, waste water, or sewage by electrochemical methods
- C02F1/461—Treatment of water, waste water, or sewage by electrochemical methods by electrolysis
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25B—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
- C25B1/00—Electrolytic production of inorganic compounds or non-metals
- C25B1/01—Products
- C25B1/13—Ozone
-
- C—CHEMISTRY; METALLURGY
- C25—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
- C25B—ELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
- C25B15/00—Operating or servicing cells
- C25B15/02—Process control or regulation
- C25B15/021—Process control or regulation of heating or cooling
Definitions
- the invention relates to an ozone water dispersing device for dispersing ozone water.
- Patent Document 1 describes an ozone water sprayer that generates ozone by electrolyzing water stored in a container and sprays ozone water containing the generated ozone.
- the ozone water sprayer of Patent Document 1 comprises a container for containing raw water, a head mounted on the container, a first tube and a second tube connecting the head and the container, and an electrolysis unit mounted on the second tube.
- the head is provided with a nozzle, a trigger, and a piston/cylinder mechanism.
- the electrolysis unit is arranged at the bottom of the container, and generates ozone by electrolyzing the raw water.
- the trigger is operated, ozone water is generated by electrolysis of the electrolysis unit, and the generated ozone water is sent to the nozzle by the piston/cylinder mechanism and sprayed out from the nozzle.
- the ozone concentration of the ozone water generated by the electrolysis unit may be affected by the temperature of the water stored in the container. That is, the lower the water temperature, the easier it is for ozone to be generated in the electrolysis unit, and the easier it is for the ozone concentration to increase. Therefore, it is ideal that the water in the container is kept at a water temperature as low as possible. For example, it is ideal that the water supplied to the container is not easily heated by the surrounding air having a higher temperature than the water, or that the water temperature decreases when water with a higher temperature is supplied to the container in summer or the like.
- Patent Document 1 Japanese Patent No. 6249200
- the present invention is completed in view of this problem, and its purpose is to provide a The water used to generate ozone by electrolysis is kept at a low water temperature in an ozone water dispersing device.
- the ozone water dispersing device of the main embodiment of the present invention comprises: a water storage container for storing water; an electrolysis unit for generating ozone from the water in the water storage container by electrolysis; a dispersing unit for dispersing ozone water in which the water in the water storage container contains the ozone generated by the electrolysis unit; and a cooling unit for cooling the water in the water storage container.
- the ozone water dispersing device of this embodiment since the water stored in the water storage container is cooled by the cooling unit, the temperature of the water can be lowered or not easily increased. Therefore, since the water with a relatively low temperature can be electrolyzed by the electrolysis unit, ozone is easily generated, and the ozone concentration of the generated ozone water is easily increased.
- the following structure may be adopted, that is, it is further provided with: a water supply device that sucks water from the bottom of the water storage container through a water suction pipe and sends it to the dispersing part.
- the electrolysis part electrolyzes the water sucked by the water supply device through the electrolysis part.
- the cooling part is arranged below the water storage container to cool the bottom part of the water storage container.
- the water at the bottom of the water storage container is concentratedly cooled, and the cooled water is sucked by the water delivery device and delivered to the electrolysis unit. Therefore, it is not necessary to use a high cooling unit that cools the entire water storage container, which can suppress the increase in cost.
- the cooling unit may include a cooling container for removably accommodating a cold storage body that stores cold energy by being cooled.
- the cooling unit includes: a container body having an inlet for the cold-retaining body to be put in and accommodating the cold-retaining body; and a blocking member to block the inlet.
- a water sealing member may be provided between the container body and the blocking member, and the water sealing member prevents water condensed by the cold-retaining body from leaking from the inlet.
- the cooling part includes In summary: A cooling device having a Peltier element.
- the cooling unit may be arranged below the water storage container to cool the bottom portion of the water storage container.
- the water stored in the water storage container is most likely to come into contact with the bottom portion regardless of the amount of water, and thus the water can be cooled well by cooling the bottom portion.
- an ozone water dispersing device capable of maintaining water stored in a water storage container for generating ozone by electrolysis at a low water temperature.
- FIG. 1 is a perspective view of an ozone water sprayer according to an embodiment.
- FIG. 2 (a) and (b) are respectively a front perspective view and a rear perspective view of the ozone water sprayer showing a state where the casing is removed according to the embodiment.
- (a) is a perspective view showing the ozone water dispersing mechanism of the water storage container in section according to the embodiment, and (b) is a rear cross-sectional view of the lower part of the ozone water sprayer in the state where the casing is removed according to the embodiment.
- FIG. 4 (a) and (b) are perspective views of a container body constituting a cooling container according to the embodiment.
- FIG. 5 (a) to (c) are perspective views of a tray constituting a cooling container according to the embodiment.
- FIG. 6 (a) and (b) are perspective views of the ozone water sprayer according to the first modification.
- FIG. 7 (a) and (b) are perspective views of a cooling container according to the first modification.
- FIG8 (a) and (b) are perspective views of the ozone water sprayer according to the second modification.
- FIG. 9 (a) is a perspective view of a cooling container according to a second modification, (b) is a perspective view of a cooling container and a cold-retaining body according to the second modification, and (c) is a perspective view of a closing member constituting the cooling container according to the second modification.
- FIG. 10 (a) is a partially sectional perspective view of the ozone water sprayer of the third modification, and (b) is a front view showing a state in which a cooling device is arranged below the water storage container of the third modification.
- FIG. 11 is a diagram showing another modified example in which a cooling medium is contained in a cooling container.
- Ozone water sprayer ozone water dispersing device
- 20 Cooling container (cooling unit); 20A: Cooling container (cooling part); 20B: cooling container (cooling part); 30: cold-keeping body; 30A: cold-keeping body; 30B: cold-keeping agent (cold-keeping body); 80: cooling device (cooling part); 84: Peltier element; 110: water storage container; 110a: bottom portion; 120: electrolysis part; 130: spreading nozzle (spreading part); 140: pump (water supply device); 150: water suction pipe; 210: container body; 220: tray (closure member); 222: gasket (water sealing member); 310: container body; 320: closure member; 321: gasket (water sealing member); 322: gasket (water sealing member); 323: gasket (water sealing member); 410: container body; 420: closure member; 423: gasket (water sealing member); 434: gasket (water sealing member).
- FIG. 1 (a) and (b) are perspective views of the ozone water sprayer 1.
- Fig. 1 (a) shows a state where the cooling container 20 is closed
- Fig. 1 (b) shows a state where the cooling container 20 is opened and the cold storage body 30 is taken out.
- the ozone water sprayer 1 includes a housing 10.
- the housing 10 is composed of a body 10a, a neck 10b, and a head 10c, and has an open bottom.
- the trunk 10a has a generally cylindrical shape, the upper portion of which contracts inwardly as it approaches the neck 10b.
- a square cover 11 and an elongated display window 12 are provided on the front side of the trunk 10a. The cover 11 can be opened upward.
- the display window 12 is embedded with a transparent window member 12a.
- a touch-type power switch 13 and two display units 14 are provided on the rear side of the trunk 10a. The power switch 13 is used for power on/off operation. The two display units 14 light up to notify that the ozone water is in an operating state such as a standby state for dispersing.
- the neck 10b has a substantially cylindrical shape and extends in the vertical direction.
- the operation button 51 protrudes forward from the front side of the neck 10b.
- the head 10c has a predetermined shape and extends in the front-back direction.
- a circular discharge port 15 is formed on the front surface of the head 10c.
- a cooling container 20 having a substantially flat cylindrical shape is mounted on the lower surface of the housing 10 to cool water stored in a water storage container described later.
- the cooling container 20 constitutes the bottom of the ozone water sprayer 1.
- a cold storage body 30 capable of storing cold by cooling is removably accommodated in the cooling container 20.
- FIG2 (a) and (b) are respectively a front perspective view and a rear perspective view of the ozone water sprayer 1 showing a state where the housing 10 is removed.
- FIG3 (a) is a perspective view showing the ozone water dispersing mechanism 10 of the water storage container 110 in section.
- FIG3 (b) is a rear cross-sectional view of the lower part of the ozone water sprayer 1 in a state where the housing 10 is removed.
- the ozone water sprayer 1 is cut at the rear end of the water storage container 110 slightly forward of the center thereof.
- the ozone water diffusion mechanism 40 , the operation unit 50 , and the electric unit 60 are arranged in the housing 10 .
- the ozone water diffusion mechanism 40 , the operation unit 50 , and the electric unit 60 are fixed by a holding member 70 arranged in the housing 10 .
- the holding member 70 is configured to block the bottom surface of the housing 10, and is composed of a first member 71 having a substantially circular plate shape, a second member 72 having a shape corresponding to the front shape of the housing 10 and rising from the first member 71, and a third member 73 extending forward from the upper end of the second member 72.
- the first member 71 is formed of a material with high thermal conductivity and electrical conductivity, for example, a metal material such as aluminum, or a resin material containing a filler that improves thermal conductivity and electrical conductivity.
- the ozone water spreading mechanism 40 generates ozone water by electrolyzing the water stored in the water storage container 110 and spreads the generated ozone water.
- the ozone water dispersing mechanism 40 comprises: a water storage container 110 for storing pure water, tap water or the like; an electrolysis unit 120 for generating ozone from the water in the water storage container 110 by electrolysis; a dispersing nozzle 130 for dispersing ozone water containing ozone generated by the electrolysis unit 120 in the water in the water storage container 110; and a pump 140. Water is sucked from the bottom of the water storage container 110 and sent to the spreading nozzle 130. The electrolysis unit 120 allows the water sucked by the pump 140 to pass through the electrolysis unit 120 to electrolyze the passing water.
- the water storage container 110 is disposed on the first member 71 and in front of the second member 72 in the body portion 10a of the housing 10.
- five bosses 111 provided on the bottom surface portion 110a thereof are in contact with the first member 71, and some of the bosses 111 are fixed to the first member 71.
- two mounting tabs 112 provided on the upper end of the rear portion thereof are fixed to the second member 72.
- a water supply port 113 for injecting water into the water storage container 110 is provided on the front surface portion 110b of the water storage container 110.
- the water supply port 113 is blocked by a cover 114.
- the cover 114 is threaded and is opened and closed by turning. When the cover 11 of the housing 10 is opened, the cover 114 is exposed to the outside.
- the user lays the ozone water sprayer 1 flat with the water supply port 113 facing upward, removes the cover 114, and supplies water from the water supply port 113 into the water storage container 110.
- the pump 140 is fixed to the rear side of the second member 72 in the neck portion 10b of the housing 10.
- the pump 140 is, for example, a diaphragm-driven small pump.
- the pump 140 corresponds to the water supply device of the present invention.
- a water suction pipe 150 is connected to the suction port of the pump 140.
- One end of a discharge pipe 160 is connected to the discharge port of the pump 140.
- the water suction pipe 150 and the discharge pipe 160 are inserted into the water storage container 110 through the opening 72a of the second member 72 and the rubber packing 115 provided on the upper part of the water storage container 110.
- the water suction pipe 150 extends to the bottom of the water storage container 110, and the water suction port 151 at the other end thereof is close to the bottom surface portion 110a of the water storage container 110.
- the electrolysis section 120 has an anode chamber and a cathode chamber separated by an ion exchange membrane.
- the anode chamber and the cathode chamber are respectively provided with an anode and a cathode.
- the cathode chamber is connected to the water storage container 110 through a connecting hole.
- An inlet 121 and an outlet 122 connected to the anode chamber are provided at the upper end of the electrolysis section 120.
- the inlet 121 is connected to the other end of the discharge pipe 160.
- the outlet 122 is connected to one end of the water supply pipe 170.
- the water supply pipe 170 passes through the gasket 115 and extends upward.
- the spreading nozzle 130 is installed at the front end of the third member 73 in the head 10c of the housing 10.
- the spreading nozzle 130 is a spray nozzle, and has a spray port 131 on its front end surface which is smaller than the discharge port 15 of the head 10c, and the spray port 131 faces the outside through the discharge port 15.
- the other end of the water supply pipe 170 is connected to the inlet 132 of the spreading nozzle 130.
- the spreading nozzle 130 atomizes the ozone water sent from the water supply pipe 170 and discharges it from the spray port 131, thereby spraying the ozone water, that is, spreading the ozone water in a mist.
- the spreading nozzle 130 is equivalent to In the spreading part of the present invention.
- the ozone water dispersing mechanism 40 is provided with a vent pipe 180 for letting air in and out of the water storage container 110.
- the vent pipe 180 extends upward from the water storage container 110 through the gasket 115, changes direction in the head 10c, and extends forward.
- One end of the vent pipe 180 is located at the upper end of the water storage container 110, and the other end of the vent pipe 180 is located below the dispersing nozzle 130.
- the operation part 50 is fixed to the front side of the second member 72 in the neck 10b of the housing 10.
- the operation part 50 is operated.
- the operation part 50 includes an operation button 51.
- the operation button 51 is pressed, the internal contact opening and closing switch is turned on, and the operation signal is output to the electric unit 60.
- the electric unit 60 is disposed on the first member 71 and behind the second member 72 in the body 10a of the housing 10.
- the electric unit 60 includes a first housing 61 at the front and a second housing 62 at the rear.
- the first housing 61 is fixed to the second member 72, and the second housing 62 is fixed to the first housing 61.
- a battery 63 and a main substrate are provided in the first housing 61, and a sub-substrate (not shown) is provided in the second housing 62.
- the main substrate is equipped with a charging circuit for charging the battery 63, a control circuit including a microcomputer and the like for controlling a load such as a pump 140, etc.
- the sub-substrate is equipped with an input circuit for receiving an operation of the power switch 13 and the like, and a display circuit including an LED for lighting each display unit 14.
- the charging terminal is provided on the rear side of the body 10a of the housing 10 and is covered by the terminal cover 16. The terminal cover 16 is removed during charging.
- FIG. 4 (a) and (b) are perspective views of a container body 210 constituting a cooling container 20.
- (a) to (c) are perspective views of a tray 220 constituting a cooling container 20.
- the cooling container 20 and the cold-retaining body 30 will be described in detail with reference to FIG. 3( b ), FIG. 4( a ) and ( b ), and FIG. 5( a ) to ( c ).
- the cooling container 20 includes a container body 210 and a tray 220.
- the container body 210 and the tray 220 are formed of, for example, a resin material.
- the cooling container 20 corresponds to the cooling unit of the present invention.
- the container body 210 has a flat hollow cylindrical shape and is composed of a bottomed cylindrical lower member 211 and a disc-shaped upper member 212 covering the upper opening of the lower member 211 , and includes a top surface 210 a , a bottom surface 210 b , and a peripheral surface 210 c .
- the peripheral surface 210c is provided with an inlet 213 having a length extending approximately half the circumference.
- a pair of shaft holes 214 are formed near one end of the inlet 213 on the top surface 210a and the bottom surface 210b.
- a receiving portion 215 for receiving the lower end of the cover 11 is formed on the top surface 210a.
- four legs 216 are formed on the bottom surface 210b.
- the tray 220 has a flat bottomed cylindrical shape and includes a bottom portion 220a and a peripheral portion 220b.
- the size of the tray 220 is substantially the same as the internal space of the container body 210.
- a portion 221 (hereinafter referred to as a protruding portion 221) of the peripheral portion 220b corresponding to the inlet 213 of the container body 210 is slightly thicker than other portions and slightly protrudes outward.
- an annular gasket 222 formed of an elastic material is provided on the upper end surface of the peripheral surface 220b.
- the gasket 222 is equivalent to the water seal member of the present invention.
- a rotating shaft 223 protruding up and down is formed at one end of the protruding portion 221.
- a rib 224 slightly protruding from the outer surface of the peripheral surface 220b is formed near the outer side of the other end of the protruding portion 221 of the peripheral surface 220b.
- a recessed portion 225 capable of hooking a finger is formed at the other end of the protruding portion 221.
- the tray 220 is mounted on the container body 210 such that the rotation shaft 223 is inserted into the pair of shaft holes 214.
- the user can store the tray 220 in the container body 210 and pull it out of the container body 210 by rotating the tray 220 around the rotation shaft 223.
- the cold-keeping body 30 has a structure in which a liquid or gel-like cold-keeping agent 32 is sealed in a flat hollow cylindrical casing 31 (refer to (b) of FIG. 1 and (b) of FIG. 3 ).
- the casing 31 can be formed of a resin material or a metal material.
- the cold-keeping agent 32 solidifies when it is cooled to a temperature below a specified temperature, for example, below 0° C. by a refrigerator or the like.
- the cold-keeping agent 32 is cooled and solidified, thereby storing cold in the cold-keeping body 30.
- the cold-keeping body 30 can have a size equal to or smaller than the internal space of the tray 220.
- the cold-keeping body 30 after cold storage is placed (contained) on the tray 220, and the tray 220 is contained in the container body 210.
- the cold-keeping body 30 is contained in the cooling container 20 (refer to (a) and (b) of Figure 1).
- the tray 220 is contained in the container body 210, the ribs 224 of the peripheral surface 220b of the tray 220 are in a state of being pressed against the peripheral surface 210c of the container body 210.
- the tray 220 is not easy to rotate in a direction that will be pulled out from the container body 210.
- the inlet 213 of the container body 210 is blocked by the protrusion 221 of the tray 220. Since the outer surface of the protrusion 221 is coplanar with the outer surface of the peripheral surface 210c of the container body 210, it is beautiful.
- the tray 220 has a function of closing the input port 213 of the container body 210. Therefore, the tray 220 corresponds to the closing member of the present invention.
- each boss 111 of the bottom portion 110a contacts the first member 71 of the holding member 70.
- the first member 71 is provided with a substantially square protrusion 74 protruding downward by a plurality of ribs arranged in a grid shape.
- the protrusion 74 contacts the upper member 212 as the top portion 210a of the container body 210.
- the top surface portion 210a (upper member 212) of the container body 210 is cooled (heat is absorbed) by the cold retaining body 30.
- the bottom surface portion 110a of the water storage container 110 is in contact with the top surface portion 210a via the first member 71, and the bottom surface portion 110a of the water storage container 110 is cooled via the first member 71 by the top surface portion 210a of the container body 210.
- the water stored in the water storage container 110 especially the water at the bottom of the water storage container 110, is cooled, and the temperature of the water is lowered or is less likely to rise.
- the upper member 212 can be formed of a material with relatively high thermal conductivity and electrical conductivity
- the lower member 211 can be formed of a material with relatively low thermal conductivity and electrical conductivity.
- external heat is not easily transferred to the container body 210, the cold-retaining body 30 is not easily warmed, and the water storage container 110 is easily cooled by the cold-retaining body 30 through the upper member 212 and the first member 71.
- the first member 71 may not be interposed between the bottom surface 110 a of the water storage container 110 and the top surface 210 a of the container body 210 , and the bottom surface 110 a of the water storage container 110 may directly contact the top surface 210 a of the container body 210 .
- the gasket 222 of the tray 220 contacts the top surface 210a of the container body 210.
- the tray 220 and the container body 210 are water-sealed by the gasket 222. Therefore, even if condensed water is generated in the tray 220 due to contact between the air in the tray 220 and the cold storage body 30 at a low temperature, the condensed water is unlikely to leak out of the tray 220 and leak out of the container body 210 from the inlet 213.
- the cold-keeping body 30 When the cold-keeping body 30 warms up and the cooling effect disappears, the cold-keeping body 30 is removed from the cooling container 20. At this time, the user hooks a finger on the recessed portion 225 and rotates the tray 220 to pull the tray 220 out of the container body 210. Thereafter, the cold-keeping body 30 is removed from the tray 220. In addition, if condensed water exists in the tray 220, the condensed water is discarded.
- the pump 140 and the electrolysis unit 120 operate for a predetermined time (for example, three seconds).
- the electrolysis unit 120 the anode and the cathode are energized.
- water at the bottom of the water storage container 110 (water near the bottom surface 110 a ) is sucked from the water suction port 151 , and is sent to the electrolysis unit 120 through the water suction pipe 150 , the pump 140 , and the discharge pipe 160 .
- the ozone water flows out of the electrolysis unit 120 through the outlet 122, flows through the water supply pipe 170 to the spreading nozzle 130, and is sprayed in the form of mist from the spreading nozzle 130.
- the ozone water is sprayed from the outlet 15 of the ozone water sprayer 1.
- the sprayed ozone water is sprinkled on the object, and the object is sterilized.
- the ozone water sprayer 1 includes: a water storage container 110 storing water; an electrolysis unit 120 generating ozone from the water in the water storage container 110 by electrolysis; and a spreading nozzle 130 spreading ozone water in which the water in the water storage container 110 contains ozone generated by the electrolysis unit 120. Furthermore, as a cooling unit for cooling the water in the water storage container 110, the ozone water sprayer 1 includes a cooling container 20 that removably accommodates a cold storage body 30 that stores cold energy by cooling.
- the temperature of the water can be lowered or not easily increased. Therefore, since the water with a relatively low temperature can be electrolyzed by the electrolysis unit 120, ozone is easily generated, and the ozone concentration of the generated ozone water is easily increased. Therefore, it is easy to obtain a high sterilization effect by the dispersed ozone water.
- cooling body 30 since the cooling body 30 is used, electric power for cooling the water in the water storage container 110 is not required, and it is possible to prevent the battery 63 from being depleted quickly.
- the ozone water sprayer 1 includes a pump 140 that sucks water from the bottom of the water storage container 110 through the water suction pipe 150 and sends it to the spray nozzle 130.
- the electrolysis unit 120 electrolyzes the water sucked by the pump 140 by passing the water through the electrolysis unit 120, and the cooling container 20 is arranged below the water storage container 110 to cool the bottom portion 110a of the water storage container 110.
- the water at the bottom of the water storage container 110 is intensively cooled, and the cooled water is sucked by the pump 140 and sent to the electrolysis unit 120. Therefore, it is not necessary to use a high cooling unit for cooling the entire water storage container 110, and the increase in cost can be suppressed.
- the cooling container 20 includes: a container body 210 having an inlet 213 for inserting the cold-keeping body 30 and accommodating the cold-keeping body 30; and a tray 220 accommodating the cold-keeping body 30 and blocking the inlet 213.
- a gasket 222 is provided between the container body 210 and the tray 220 to prevent water condensed by the cold-keeping body 30 from leaking from the inlet 213.
- FIG. 6 (a) and (b) are stereoscopic views of the ozone water sprayer 1 of the first modification example.
- FIG. 7 (a) and (b) are stereoscopic views of the cooling container 20A of the first modification example.
- Fig. 6 (a) and Fig. 7 (a) show the closed state of the cooling container 20A
- Fig. 6 (b) and Fig. 7 (b) show the opened state of the cooling container 20A.
- Fig. 7 (a) the container body 310 is shown in a decomposed state
- Fig. 7 (b) the upper member 312 constituting the container body 310 is omitted.
- the ozone water spray device 1 includes a cooling container 20A instead of the cooling container 20 .
- the cooling container 20A includes a container body 310 and a closing member 320.
- the container body 310 and the closing member 320 are formed of, for example, a resin material.
- the cooling container 20A corresponds to the cooling unit of the present invention.
- the container body 310 has a flat hollow cylindrical shape and is composed of a bottomed cylindrical lower member 311 and a disc-shaped upper member 312 covering the upper surface opening of the lower member 311, and includes a top surface 310a, a bottom surface 310b, and a peripheral surface 310c.
- the lower side portion of about half of the peripheral surface 310c of the container body 310 and about half of the bottom surface 310b are opened as an inlet 313.
- a storage portion 314 for storing the lower end of the cover 11 is formed on the top surface 310a.
- the blocking member 320 is rotatably mounted on the container body 310 via a hinge portion 330 , and blocks the inlet 313 of the container body 310 .
- the hinge portion 330 includes a pair of cylindrical support portions 331, a cylindrical rotating portion 332 sandwiched between the two support portions 331, and a shaft 333 that passes through the two support portions 331 and the rotating portion 332.
- the rotating portion 332 is rotatable relative to the pair of support portions 331.
- the pair of support portions 331 is formed integrally with the container body 310, and the rotating portion 332 is formed integrally with the closing member 320.
- the blocking member 320 includes a substantially semicircular bottom surface 320a and a substantially semi-cylindrical peripheral surface 320b.
- a rotating portion 332 of the hinge portion 330 is formed near the left end surface of the peripheral surface 320b.
- Pads 321, 322, 323 formed of elastic members are respectively provided on the rear end surface of the bottom surface 320a and the left and right end surfaces and the upper end surface of the peripheral surface 320b.
- the pads 321, 322, 323 are equivalent to the water sealing member of the present invention.
- a hook portion 324 is formed on the right end surface of the peripheral surface portion 320b of the closing member 320.
- an engaging portion 315 with which the hook portion 324 engages is provided near the inlet 313.
- the blocking member 320 is closed and the input port 313 is blocked by the blocking member 320.
- the cold storage body 30 is accommodated in the cooling container 20A (refer to (a) and (b) of Figure 6).
- the hook portion 324 is engaged with the engaging portion 315, and the blocking member 320 is not easy to open.
- the closing member 320 When the closing member 320 is closed, the space between the closing member 320 and the container body 310 is sealed by the gaskets 321, 322, 323. Thus, even if condensed water is generated in the cooling container 20A, the condensed water is unlikely to leak from the inlet 313 to the outside of the cooling container 20A.
- the protrusion 74 of the first member 71 of the retaining member 70 contacts the top surface 310a (upper member 312) of the cooling container 20A.
- the water stored in the water storage container 110 especially the water at the bottom of the water storage container 110, is cooled by the cooling container 20A containing the cold storage body 30, thereby reducing the temperature of the water or making it difficult to rise.
- the cold-keeping body 30 When the cold-keeping body 30 warms up and the cooling effect disappears, the cold-keeping body 30 is removed from the cooling container 20A.
- the front end of the hook 324 engaged with the engaging portion 315 is exposed to the outside.
- the user uses a finger to release the engagement between the hook 324 and the engaging portion 315, opens the closing member 320, and opens the inlet 313 of the container body 310.
- the inlet 313 is open, about half of the cold-keeping body 30 is exposed to the outside.
- the user can easily remove the cold-keeping body 30 from the container body 310, i.e., the cooling container 20A.
- the condensed water can be discarded by tilting the ozone water sprayer 1 in such a way that the inlet 313 faces downward. Water accumulation.
- Figure 8 (a) and (b) are stereoscopic views of the ozone water sprayer 1 of the second modification example.
- Figure 9 (a) is a stereoscopic view of the cooling container 20B of the second modification example.
- Figure 9 (b) is a stereoscopic view of the cooling container 20B and the cold-keeping body 30A of the second modification example.
- Figure 9 (c) is a stereoscopic view of the closing member 420 constituting the cooling container 20B of the second modification example.
- Figure 8 (a) and Figure 9 (a) show the closed state of the cooling container 20B
- Figure 8 (b) and Figure 9 (b) show the open state of the cooling container 20B.
- the container body 410 is shown in a decomposed state, and the upper member 412 constituting the container body 410 is omitted in Figure 9 (b).
- the ozone water spray device 1 includes a cooling container 20B instead of the cooling container 20 .
- the cooling container 20B includes a container body 410 and a closing member 420.
- the container body 410 and the closing member 420 are formed of, for example, a resin material.
- the cooling container 20B corresponds to the cooling unit of the present invention.
- the container body 410 has a flat hollow cylindrical shape, and is composed of a bottom cylindrical lower member 411 and a disc-shaped upper member 412 covering the upper surface opening of the lower member 411, and includes a top surface 410a, a bottom surface 410b, and a peripheral surface 410c.
- An inlet 413 having a length extending about half a circumference is formed on the peripheral surface 410c.
- a cylindrical support portion 414 is formed near the right end of the inlet 413 on the bottom surface 410b.
- a storage portion 415 for storing the lower end of the cover 11 is formed on the top surface 410a.
- the blocking member 420 has a substantially semi-cylindrical shape in a manner corresponding to the shape of the inlet 413 of the container body 410.
- a U-shaped arm 421 is provided at the left end of the blocking member 420.
- a rotation shaft 422 is formed at the front end of the arm 421.
- pads 423 and 424 formed of elastic members are provided on the left and right end surfaces and the upper and lower end surfaces of the blocking member 420, respectively.
- a hook portion 425 is formed on the right end surface of the peripheral surface portion 420b of the closing member 420.
- an engaging portion 416 with which the hook portion 425 engages is provided near the inlet 413.
- the closing member 420 is attached to the container body 410 so that the rotation shaft 422 is inserted into the support portion 414.
- the closing member 420 is opened and closed by rotating about the rotation shaft 422.
- the box body 31 is partially recessed so that the cold-retaining body 30A does not interfere with the support portion 414 and the arm 421 existing inside the container body 410.
- the other structures are the same as those of the cold-retaining body 30 of the above embodiment.
- the closing member 420 is closed and the inlet 413 is blocked by the closing member 420.
- the cold storage body 30A is accommodated in the cooling container 20B (refer to (a) and (b) of Figure 8).
- the hook portion 425 is engaged with the engaging portion 416, and the closing member 420 is not easy to open.
- the closing member 420 When the closing member 420 is closed, the space between the closing member 420 and the container body 410 is sealed by the gaskets 423 and 424. Thus, even if condensed water is generated in the cooling container 20B, the condensed water is unlikely to leak out of the cooling container 20B from the inlet 413.
- the protrusion 74 of the first member 71 of the retaining member 70 contacts the top surface 410a (upper member 412) of the cooling container 20B.
- the water stored in the water storage container 110 especially the water at the bottom of the water storage container 110, is cooled by the cooling container 20B containing the cold storage body 30A, thereby lowering the temperature of the water or making it difficult to rise.
- the cold-keeping body 30 When the cold-keeping body 30A warms up and the cooling effect disappears, the cold-keeping body 30 is removed from the cooling container 20B.
- the user releases the engagement between the hook 425 and the engagement portion 416 with a finger, opens the blocking member 420, and opens the inlet 413 of the container body 410. If condensed water exists in the container body 410, the condensed water is discarded after the cold-keeping body 30A is removed.
- the support portion 414 and the rotation shaft 422 are present inside the container body 410 and do not protrude to the outside. Therefore, the support portion 414 and the rotation shaft 422 are unlikely to hit anything and be damaged.
- Fig. 10(a) is a partially cutaway perspective view of the ozone water sprayer 1 according to Modification 3.
- Fig. 10(b) is a front view showing a state in which a cooling device 80 is arranged below a water storage container 110 according to Modification 3.
- the ozone water spray device 1 includes a cooling device 80 having a Peltier element 84 in order to cool the water in the water storage container 110.
- the cooling device 80 corresponds to the cooling unit of the present invention.
- a housing 90 having a substantially flat hollow cylindrical shape and accommodating the cooling device 80 is attached to the lower surface of the casing 10.
- the housing 90 constitutes the bottom of the ozone water sprayer 1.
- a plurality of vent holes 91 are formed on a peripheral surface 90a of the housing 90 over the entire circumference.
- the cooling device 80 is composed of a Peltier module 81, a cooling fan 82, and a heat absorbing block 83.
- the module 81 includes a Peltier element 84 and a heat dissipation fin 85 connected to the heat dissipation surface of the Peltier element 84.
- the cooling fan 82 sends air to the heat dissipation fin 85 to cool the heat dissipation fin 85.
- the lower surface of the heat absorbing block 83 is connected to the heat absorbing surface of the Peltier element 84.
- the heat absorbing block 83 passes through the top surface portion 90b of the housing 90 and the first member 71 of the holding member 70, and the upper surface thereof is in contact with the bottom surface portion 110a of the water storage container 110.
- the cooling device 80 is supplied with power from the battery 63.
- the Peltier element 84 of the cooling device 80 When the Peltier element 84 of the cooling device 80 is energized, heat is absorbed from the bottom portion 110a of the water storage container 110 via the heat absorbing block 83, and the bottom portion 110a is cooled. As a result, the water stored in the water storage container 110, especially the water at the bottom of the water storage container 110, is cooled, and the temperature of the water is lowered or is less likely to rise.
- the cooling device 80 is used instead of the cooling container 20 , the operation of storing cold in the cold-retaining body 30 and the operation of taking out and putting in the cold-retaining body 30 in the cooling container 20 are unnecessary, and the user's work is less likely to be laborious.
- the cold-keeping body 30 made to match the size of the cooling container 20, i.e., the container body 210, is contained in the cooling container 20.
- a commercially available cold-keeping agent 30B (for example, a structure having a gel-like medicine sealed in a bag) having a size that can be contained in the cooling container 20 may be contained in the cooling container 20.
- the cooling container 20A of the above-mentioned modification example 1 and the cooling container 20B of the above-mentioned modification example 2 may also contain the commercially available cold-keeping agent 30B.
- the cold-keeping agent 30B is equivalent to the cold-keeping body of the present invention.
- a cold storage body 30 having a structure in which a liquid or gel-like cold storage agent 32 is enclosed in a flat hollow cylindrical box 31 is used.
- a cold storage body having a flat solid cylindrical shape formed of a material with a high heat capacity such as stone or pottery may also be used.
- the gasket 222 for water sealing between the container body 210 and the tray 220 in the cooling container 20 is provided on the tray 220 side.
- the gasket 222 may be provided on the container body 210 side instead of the tray 220 side. That is, the gasket 222 may be provided on the portion of the lower surface of the top surface portion 210a of the container body 210 that contacts the upper end surface of the peripheral surface portion 220b of the tray 220.
- the gaskets 321, 322, 323 for water sealing between the container body 310 and the closing member 320 may not be provided on the closing member 320 side.
- the gaskets 423 and 424 for water sealing between the container body 410 and the closing member 420 may be provided on the container body 410 side instead of the closing member 420 side.
- the electrolysis unit 120 is provided downstream of the pump 140, and the water sucked from the water storage container 110 and discharged from the pump 140 is sent to the electrolysis unit 120.
- the electrolysis unit 120 may be provided upstream of the pump 140, and the water sucked from the water storage container 110 and before being sucked into the pump 140 may pass through the electrolysis unit 120.
- the inlet 121 of the electrolysis unit 120 is located at the bottom of the water storage container 110, and the water suction pipe 150 is connected to the outlet 122 of the electrolysis unit 120.
- the water supply pipe 170 is connected to the discharge port of the pump 140.
- the pump 40 also sucks the water at the bottom of the water storage container 110 through the water suction pipe 150.
- the electrolysis unit 120 is disposed in the water storage container 110 .
- the electrolysis unit 120 may be disposed outside the water storage container 110 .
- the structure of the electrolysis unit 120 is not limited to that of the above-described embodiment, and may be any structure as long as it can generate ozone by electrolysis from the water in the water storage container 110.
- the electrolysis unit 120 may have a structure in which a rod-shaped anode, a linear cathode spirally wound around the outer circumference of the anode, and an ion exchange membrane interposed between the anode and the cathode are provided in a box serving as a water flow path.
- the ozone water sprayer 1 includes the ozone water dispersing mechanism 40 of a structure in which water pumped from the water storage container 110 by the pump 140 is electrolyzed by the electrolysis unit 120 to generate ozone water.
- the ozone water sprayer 1 may include the ozone water dispersing mechanism of a structure in which the water stored in the water storage container is electrolyzed by the electrolysis unit to generate ozone water and the generated ozone water is pumped by the pump.
- the ozone water spray device 1 includes the spreading nozzle 130 configured to spray ozone water as a spreading unit.
- the ozone water spray device 1 may include a spreading nozzle configured to release ozone water in a rain-like manner as a spreading unit.
- the ozone water sprayer 1 is provided with the electric pump 140 as the water supply device.
- the ozone water sprayer 1 may also be provided with a piston/cylinder mechanism as the water supply device. In this case, when the trigger is operated, the piston/cylinder mechanism operates in conjunction with the operation, and the water sucked from the water storage container 110 is delivered to the spreading nozzle 130.
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Abstract
一种能将贮存于贮水容器内的用于通过电解来产生臭氧的水保持在低水温的臭氧水散布装置。臭氧水喷雾器(1)具备:贮水容器(110),贮存水;电解部(120),通过电解而由贮水容器(110)内的水生成臭氧;散布喷嘴(130),散布使贮水容器(110)内的水中含有由电解部(120)生成的臭氧而成的臭氧水;泵(140),从贮水容器(110)内的底部经由吸水管(150)来抽吸水并将其送向散布喷嘴(130);以及冷却容器(20),用于冷却贮水容器(110)内的水。电解部(120)使由泵(140)抽吸的水经过该电解部(120)来对该经过的水进行电解。冷却容器(20)容纳能蓄冷的保冷体(30),配置于贮水容器(110)的下方来对贮水容器(110)的底面部(110a)进行冷却。
Description
本发明涉及一种散布臭氧水的臭氧水散布装置。
例如专利文献1中记载了一种臭氧水喷雾器(spray),其通过将贮存于容器中的水电解而生成臭氧,并喷雾出水中含有生成的臭氧而成的臭氧水。
专利文献1的臭氧水喷雾器具备容纳原料水的容器、安装于容器的头部、连通头部与容器的第一管和第二管以及安装于第二管的电解单元。头部设置有喷嘴、扳机(trigger)以及活塞/气缸机构。电解单元配置于容器内的底部,通过将原料水电解来生成臭氧。当操作扳机时,通过电解单元的电解而生成臭氧水,生成的臭氧水由活塞/气缸机构送到喷嘴并从喷嘴喷雾出臭氧水。
在上述臭氧水喷雾器中,由电解单元产生的臭氧水的臭氧浓度可能会受到蓄于容器中的水的温度的影响。即,水温越低,电解单元中越容易产生臭氧,臭氧浓度越容易升高。因此,理想的是,容器内的水保持在尽可能低的水温。例如,理想的是,供给到容器内的水不易被温度比该水高的周围的空气加热,或者在夏季等时温度较高的水供给到容器内时水温会降低。
现有技术文献
专利文献
专利文献1:日本专利第6249200号公报
发明内容
发明所要解决的问题
本发明是鉴于该问题而完成的,其目的在于提供一种能将贮存于贮水容器
内的用于通过电解来产生臭氧的水保持在低水温的臭氧水散布装置。
用于解决问题的方案
本发明的主要方案的臭氧水散布装置具备:贮水容器,贮存水;电解部,通过电解而由所述贮水容器内的水生成臭氧;散布部,散布使所述贮水容器内的水中含有由所述电解部生成的臭氧而成的臭氧水;以及冷却部,用于冷却所述贮水容器内的水。
根据本方案的臭氧水散布装置,由于贮存于贮水容器中的水会被冷却部冷却,因此能使该水的温度降低或不易上升。由此,由于能通过电解部来电解较低温度的水,因此容易产生臭氧,生成的臭氧水的臭氧浓度容易升高。
在本方案的臭氧水散布装置中,可以采用如下结构,即,还具备:送水装置,从所述贮水容器内的底部经由吸水管来抽吸水并将其送向所述散布部。在该情况下,可以采用如下结构:所述电解部使由所述送水装置抽吸的水经过所述电解部来对该经过的水进行电解。并且,可以采用如下结构:所述冷却部配置于所述贮水容器的下方,对所述贮水容器的底面部进行冷却。
根据上述的结构,贮水容器内的底部的水被集中冷却,冷却后的水被送水装置抽吸并送向电解部。因此,无需使用对贮水容器整体进行冷却那样的冷却能力高的冷却部,能抑制成本等的增加。
在本方案的臭氧水散布装置中,可以采用如下结构,即,所述冷却部包括:冷却容器,供能通过被冷却来进行蓄冷的保冷体以能取出的方式容纳。
根据上述的结构,不需要用于冷却贮水容器内的水的电力,能防止臭氧水散布装置的耗电变快。
在采用上述结构的情况下,还可以采用如下结构,即,所述冷却部包括:容器主体,具有供所述保冷体投入的投入口并容纳所述保冷体;以及闭塞构件,封堵所述投入口。在该情况下,可以在所述容器主体与所述闭塞构件之间设置水封构件,所述水封构件防止由所述保冷体凝结的水从所述投入口漏出。
当采用这样的结构时,能防止从冷却容器漏出的水弄湿周围的物体。
在本方案的臭氧水散布装置中,可以采用如下结构,即,所述冷却部包
括:冷却装置,具有珀耳帖元件。
根据上述的结构,不需要进行使保冷体蓄冷等作业,因此不易花费用户的工夫。
在本方案的臭氧水散布装置中,可以采用如下结构:所述冷却部配置于所述贮水容器的下方,对所述贮水容器的底面部进行冷却。
根据上述的结构,蓄于贮水容器中的水无论水量多少都最容易与底部接触,因此能通过使底面部冷却来良好地冷却水。
发明效果
根据本发明,能提供一种能将贮存于贮水容器内的用于通过电解来产生臭氧的水保持在低水温的臭氧水散布装置。
本发明效果乃至意义通过以下所示的实施方式的说明而进一步明确。不过,以下的实施方式只是实施本发明时的一个例示,本发明不受以下的实施方式所记载的内容的任何限制。
图1是实施方式的臭氧水喷雾器的立体图。
图2中,(a)和(b)分别是表示实施方式的拆下了壳体的状态的臭氧水喷雾器的前方立体图和后方立体图。
图3中,(a)是实施方式的用剖面示出贮水容器的臭氧水散布机构的立体图,(b)是实施方式的拆下了壳体的状态的臭氧水喷雾器的下侧部分的背面剖视图。
图4中,(a)和(b)是实施方式的构成冷却容器的容器主体的立体图。
图5中,(a)至(c)是实施方式的构成冷却容器的托盘的立体图。
图6中,(a)和(b)是变更例一的臭氧水喷雾器的立体图。
图7中,(a)和(b)是变更例一的冷却容器的立体图。
图8中,(a)和(b)是变更例二的臭氧水喷雾器的立体图。
图9中,(a)是变更例二的冷却容器的立体图,(b)是变更例二的冷却容器和保冷体的立体图,(c)是变更例二的构成冷却容器的闭塞构件的立体图。
图10中,(a)是变更例三的臭氧水喷雾器的局部剖面立体图,(b)是表示变更例三的在贮水容器的下方配置有冷却装置的状态的主视图。
图11是表示其他变更例的在冷却容器中容纳有保冷剂的情形的图。
附图标记说明
1:臭氧水喷雾器(臭氧水散布装置);20:冷却容器(冷却部);20A:
冷却容器(冷却部);20B:冷却容器(冷却部);30:保冷体;30A:保冷体;30B:保冷剂(保冷体);80:冷却装置(冷却部);84:珀耳帖元件;110:贮水容器;110a:底面部;120:电解部;130:散布喷嘴(散布部);140:泵(送水装置);150:吸水管;210:容器主体;220:托盘(闭塞构件);222:衬垫(水封构件);310:容器主体;320:闭塞构件;321:衬垫(水封构件);322:衬垫(水封构件);323:衬垫(水封构件);410:容器主体;420:闭塞构件;423:衬垫(水封构件);434:衬垫(水封构件)。
1:臭氧水喷雾器(臭氧水散布装置);20:冷却容器(冷却部);20A:
冷却容器(冷却部);20B:冷却容器(冷却部);30:保冷体;30A:保冷体;30B:保冷剂(保冷体);80:冷却装置(冷却部);84:珀耳帖元件;110:贮水容器;110a:底面部;120:电解部;130:散布喷嘴(散布部);140:泵(送水装置);150:吸水管;210:容器主体;220:托盘(闭塞构件);222:衬垫(水封构件);310:容器主体;320:闭塞构件;321:衬垫(水封构件);322:衬垫(水封构件);323:衬垫(水封构件);410:容器主体;420:闭塞构件;423:衬垫(水封构件);434:衬垫(水封构件)。
以下,参照附图对作为本发明的臭氧水散布装置的一个实施方式的臭氧水喷雾器进行说明。
图1中,(a)和(b)是臭氧水喷雾器1的立体图。图1的(a)表示冷却容器20关闭的状态,图1的(b)表示冷却容器20打开而保冷体30被取出的状态。
臭氧水喷雾器1具备壳体10。壳体10由躯干部10a、颈部10b以及头部10c构成,底面开口。
躯干部10a具有其上部随着趋向颈部10b而向内侧收缩的大致圆筒状。在躯干部10a,在前侧设置有方形的盖罩11和细长的显示窗12。盖罩11能向上
方滑动并向前方打开。显示窗12中嵌入有透明的窗构件12a。在躯干部10a的后侧设置有触摸式电源开关13和两个显示部14。电源开关13用于电源的接通/断开操作。两个显示部14会为了通知臭氧水处于能散布的待用状态等运转状态而点亮。
颈部10b具有大致圆筒状,沿上下方向延伸。操作按钮51从颈部10b的前侧向前方突出。头部10c具有规定的形状,沿前后方向延伸。在头部10c的前表面形成有圆形的放出口15。
在壳体10的下表面安装有具有大致扁平的圆柱状的冷却容器20,以便冷却贮存于后述的贮水容器中的水。冷却容器20构成臭氧水喷雾器1的底部。在冷却容器20中能取出地容纳有能通过冷却来进行蓄冷的保冷体30。
图2中,(a)和(b)分别是表示拆下了壳体10的状态的臭氧水喷雾器1的前方立体图和后方立体图。图3的(a)是用剖面示出贮水容器110的臭氧水散布机构10的立体图。图3的(b)是拆下了壳体10的状态的臭氧水喷雾器1的下侧部分的背面剖视图。在图3的(b)中,臭氧水喷雾器1在比其中央稍靠前方的贮水容器110的后端部的位置被剖切。
在壳体10内配置有臭氧水散布机构40、操作部50以及电气单元60。臭氧水散布机构40、操作部50以及电气单元60由配置于壳体10内的保持构件70固定。
保持构件70以封堵壳体10的底面的方式配置,由具有大致圆板状的第一构件71、具有与壳体10的正面形状对应的形状并从第一构件71立起的第二构件72以及从第二构件72的上端向前方延伸的第三构件73构成。在保持构件70中,至少第一构件71由导热导电性高的材料形成,例如由铝等金属材料、含有提高导热导电性的填料的树脂材料形成。
臭氧水散布机构40将贮存于贮水容器110中的水电解而生成臭氧水并散布所生成的臭氧水。
臭氧水散布机构40具备:贮水容器110,贮存纯水、自来水等水;电解部120,通过电解而由贮水容器110内的水生成臭氧;散布喷嘴130,散布使贮水容器110内的水中含有由电解部120生成的臭氧而成的臭氧水;以及泵140,
从贮水容器110内的底部抽吸水并送至散布喷嘴130。电解部120使由泵140抽吸的水经过该电解部120来对经过的该水进行电解。
贮水容器110在壳体10的躯干部10a内配置于第一构件71上且第二构件72的前方。在贮水容器110中,设置在其底面部110a的五个凸台111与第一构件71接触,其中几个凸台111固定于第一构件71。此外,在贮水容器110中,设置在其后部上端的两个安装翼片(tab)112固定于第二构件72。
在贮水容器110的前表面部110b设置有用于向贮水容器110内投入水的供水口113。供水口113被盖114封堵。盖114为螺纹式,通过转动而开闭。当壳体10的盖罩11被打开时,盖114暴露于外部。用户以使供水口113朝上的方式将臭氧水喷雾器1放平,拆下盖114,从供水口113向贮水容器110内供给水。
泵140在壳体10的颈部10b内固定于第二构件72的后侧。泵140例如是隔膜驱动式的小型泵。泵140相当于本发明的送水装置。
泵140的吸入口连接有吸水管150的一端。泵140的吐出口连接有吐出管160的一端。吸水管150和吐出管160穿过第二构件72的开口部72a并将设置于贮水容器110的上部的橡胶制的衬垫115贯通而插入贮水容器110内。吸水管150向贮水容器110的底部延伸,其另一端的吸水口151接近贮水容器110的底面部110a。
电解部120在其内部具有由离子交换膜分隔出的阳极室和阴极室。阳极室和阴极室分别配置有阳极和阴极。阴极室通过连通孔与贮水容器110内连通。在电解部120的上端部设置有与阳极室相连的流入口121和流出口122。流入口121连接有吐出管160的另一端。流出口122连接有送水管170的一端。送水管170贯通衬垫115而向上方延伸。
散布喷嘴130在壳体10的头部10c内安装于第三构件73的前端部。散布喷嘴130是喷雾喷嘴,在其前端面具有比头部10c的放出口15小的喷雾口131,该喷雾口131经放出口15面向外部。送水管170的另一端连接于散布喷嘴130的流入口132。散布喷嘴130将从送水管170送来的臭氧水雾化并从喷雾口131放出,由此喷雾出臭氧水,即呈雾状散布臭氧水。散布喷嘴130相当
于本发明的散布部。
在臭氧水散布机构40设置有供空气出入贮水容器110内的通气管180。通气管180从贮水容器110内贯通衬垫115而向上方延伸,在头部10c内改变方向而向前方延伸。通气管180的一端部位于贮水容器110内的上端部,通气管180的另一端部位于散布喷嘴130的下方。
操作部50在壳体10的颈部10b内固定于第二构件72的前侧。在通过臭氧水喷雾器1散布臭氧水时,操作部50被操作。操作部50包括操作按钮51,当按下操作按钮51时,内部的触点开闭式开关接通,操作信号被输出至电气单元60。
电气单元60在壳体10的躯干部10a内配置于第一构件71上且第二构件72的后方。电气单元60包括前侧的第一外壳(housing)61和后侧的第二外壳62。第一外壳61固定于第二构件72,第二外壳62固定于第一外壳61。
在第一外壳61内具备电池63和主基板(未图示),在第二外壳62内具备副基板(未图示)。主基板搭载有用于对电池63进行充电的充电电路、包括微型计算机等在内的控制泵140等负载的控制电路等。副基板搭载有接收电源开关13等的操作的输入电路、包括使各个显示部14点亮的LED的显示电路。
当臭氧水喷雾器1载置于未图示的充电器时,从充电器向充电电路供电,由充电电路对电池63进行充电。充电用端子设置在壳体10的躯干部10a的后侧,被端子盖16覆盖。在充电时,取下端子盖16。
图4中,(a)和(b)是构成冷却容器20的容器主体210的立体图。图5中,(a)至(c)是构成冷却容器20的托盘220的立体图。
参照图3的(b)、图4的(a)和(b)、以及图5的(a)至(c),对冷却容器20和保冷体30进行详细说明。
冷却容器20包括容器主体210和托盘220。容器主体210和托盘220例如由树脂材料形成。冷却容器20相当于本发明的冷却部。
容器主体210具有扁平的中空圆柱状,由有底圆筒状的下构件211和覆盖该下构件211的上表面开口的圆板状的上构件212构成,包括顶面部210a、底面部210b以及周面部210c。
在周面部210c形成有具有绵延大约半周的长度的投入口213。此外,在顶面部210a和底面部210b,在投入口213的一端附近形成有一对轴孔214。而且,在顶面部210a形成有容纳盖罩11的下端部的容纳部215。而且,在底面部210b形成有四条腿216。
托盘220具有扁平的有底圆筒状,包括底面部220a和周面部220b。托盘220的大小与容器主体210的内部空间大致相同。周面部220b的与容器主体210的投入口213对应的部分221(以下,称为凸出部221)比其他部分稍厚,稍向外侧凸出。
在托盘220,在周面部220b的上端面设置有由弹性材料形成的环状的衬垫222。衬垫222相当于本发明的水封构件。此外,在托盘220,在凸出部221的一端部形成有上下突出的转动轴223。而且,在托盘220,在周面部220b的凸出部221的另一端的外侧附近形成有从周面部220b的外表面稍微突出的肋224。而且,在托盘220,在凸出部221的另一端部形成有能钩住手指的凹部225。
托盘220以使转动轴223插入一对轴孔214的方式安装于容器主体210。用户通过使托盘220以转动轴223为中心转动,能将托盘220容纳于容器主体210内,并且能向容器主体210外拉出。
保冷体30具有在扁平的中空圆柱状的箱体(casing)31内封入有液状或凝胶状的保冷剂32的结构(参照图1的(b)、图3的(b))。箱体31可以由树脂材料、金属材料形成。保冷剂32在通过冰箱等被冷却至规定温度以下时,例如0℃以下时凝固。保冷剂32被冷却而凝固,由此保冷体30被蓄冷。保冷体30能采用等于或小于托盘220的内部空间的尺寸。
蓄冷后的保冷体30被放置(容纳)于托盘220,托盘220容纳于容器主体210内。由此,保冷体30容纳于冷却容器20内(参照图1的(a)、(b))。当托盘220容纳于容器主体210内时,托盘220的周面部220b的肋224处于与容器主体210的周面部210c压接的状态。由此,托盘220不易向会从容器主体210拉出的方向转动。容器主体210的投入口213被托盘220的凸出部221封堵。由于凸出部221的外表面与容器主体210的周面部210c的外表面共面,因此美观。
如上所述,托盘220具有闭塞容器主体210的投入口213的功能。因此,托盘220相当于本发明的闭塞构件。
如图3的(b)所示,就贮水容器110的底面部110a而言,该底面部110a的各凸台111与保持构件70的第一构件71接触。在第一构件71设置有通过设置成栅格状的多个肋而向下方突出的大致方形的突起部74。突起部74与容器主体210的作为顶面部210a的上构件212接触。
在冷却容器20中,通过保冷体30,容器主体210的顶面部210a(上构件212)被冷却(吸热)。贮水容器110的底面部110a经由第一构件71与顶面部210a接触,通过容器主体210的顶面部210a,贮水容器110的底面部110a经由第一构件71被冷却。由此,蓄于贮水容器110内的水,特别是贮水容器110的底部的水被冷却,该水的温度降低或不易上升。
需要说明的是,在容器主体210中,上构件212能由导热导电性相对高的材料形成,下构件211能由导热导电性相对低的材料形成。在该情况下,外部的热不易传递到容器主体210内,保冷体30不易暖化,并且容易通过保冷体30来经由上构件212和第一构件71对贮水容器110进行冷却。
而且,也可以是,贮水容器110的底面部110a与容器主体210的顶面部210a之间不介有第一构件71,贮水容器110的底面部110a直接与容器主体210的顶面部210a接触。
如图3的(b)所示,在托盘220容纳于容器主体210的状态下,托盘220的衬垫222与容器主体210的顶面部210a接触。由此,托盘220与容器主体210之间被衬垫222水封。因此,即使由于托盘220内的空气与低温的保冷体30接触而在托盘220内产生凝结水,凝结水也不易从托盘220内漏出,不易从投入口213漏出到容器主体210的外部。
当保冷体30暖化而冷却效果消失时,从冷却容器20取出保冷体30。此时,用户将手指钩在凹部225并使托盘220转动,将托盘220从容器主体210拉出。之后,从托盘220取出保冷体30。此外,在托盘220内存在凝结水的情况下,丢弃凝结水。
接着,对由臭氧水喷雾器1来散布臭氧水的动作进行说明。
当在臭氧水喷雾器1接通了电源的状态(待用状态)下按下操作按钮51时,泵140和电解部120工作规定时间(例如,三秒钟)。在电解部120中,阳极和阴极被通电。
通过泵140的动作,贮水容器110的底部的水(底面部110a附近的水)从吸水口151被吸入,经过吸水管150、泵140以及吐出管160被送向电解部120。
当经流入口121流入电解部120内的水经过阳极室时,该水被电解而生成臭氧。此时,虽然也生成氢,但是氢会穿过离子交换膜向阴极室移动并经连通孔排出到贮水容器110内。生成的臭氧溶解于水而生成臭氧水。
臭氧水经流出口122从电解部120流出,流过送水管170到达散布喷嘴130,呈雾状从散布喷嘴130散布。由此,臭氧水从臭氧水喷雾器1的放出口15散布。散布的臭氧水洒在对象物上,对象物被除菌。
此时,由于贮水容器110的底部的水被冷却容器20内的保冷体30冷却而保持较低的温度,因此当该水被送至电解部120时,容易通过电解来产生臭氧。由此,生成的臭氧水的臭氧浓度容易升高。因此,容易获得由臭氧水实现的高除菌效果。
<实施方式的效果>
根据本实施方式,臭氧水喷雾器1具备:贮水容器110,贮存水;电解部120,通过电解而由贮水容器110内的水生成臭氧;以及散布喷嘴130,散布使贮水容器110内的水中含有由电解部120生成的臭氧而成的臭氧水。而且,作为用于冷却贮水容器110内的水的冷却部,臭氧水喷雾器1具备供能通过冷却来进行蓄冷的保冷体30以能取出的方式容纳的冷却容器20。
根据该结构,由于贮存于贮水容器110的水被容纳有蓄冷后的保冷体30的冷却容器20冷却,因此能使该水的温度降低或不易上升。由此,由于能通过电解部120来电解较低温度的水,因此容易产生臭氧,生成的臭氧水的臭氧浓度容易升高。因此,容易获得由散布的臭氧水实现的高除菌效果。
而且,由于使用保冷体30,因此不需要用于冷却贮水容器110内的水的电力,能防止电池63的耗电变快。
而且,根据本实施方式,臭氧水喷雾器1具备从贮水容器110内的底部经由吸水管150来抽吸水并将其送向散布喷嘴130的泵140。电解部120使由泵140抽吸的水经过该电解部120来电解该经过的水,冷却容器20配置于贮水容器110的下方,冷却贮水容器110的底面部110a。
根据该结构,贮水容器110内的底部的水被集中冷却,冷却后的水被泵140抽吸并送向电解部120。因此,可以无需使用冷却整个贮水容器110那样的冷却能力高的冷却部,能抑制成本等的增加。
而且,根据本实施方式,冷却容器20包括:容器主体210,具有供保冷体30投入的投入口213并容纳保冷体30;以及托盘220,容纳保冷体30且封堵投入口213。在容器主体210与托盘220之间设置有防止由保冷体30凝结的水从投入口213漏出的衬垫222。
根据该结构,能防止从冷却容器20漏出的凝结水弄湿周围的物体。
以上,对本发明的实施方式进行了说明,但本发明不受上述实施方式等的任何限制,此外,本发明的实施方式也能进行上述以外的各种变更。
<变更例一>
图6中,(a)和(b)是变更例一的臭氧水喷雾器1的立体图。图7中,(a)和(b)是变更例一的冷却容器20A的立体图。图6的(a)和图7的(a)表示冷却容器20A关闭的状态,图6的(b)和图7的(b)表示冷却容器20A打开的状态。图7的(a)中,容器主体310以分解的状态表示,图7的(b)中省略了构成容器主体310的上构件312。
在本变更例中,臭氧水喷雾器1代替冷却容器20而具备冷却容器20A。
冷却容器20A包括容器主体310和闭塞构件320。容器主体310和闭塞构件320例如由树脂材料形成。冷却容器20A相当于本发明的冷却部。
容器主体310具有扁平的中空圆柱状,由有底圆筒状的下构件311和覆盖该下构件311的上表面开口的圆板状的上构件312构成,包括顶面部310a、底面部310b以及周面部310c。容器主体310的周面部310c的大约半周的下侧部分和底面部310b的大约一半作为投入口313而开口。此外,在顶面部310a形成有容纳盖罩11的下端部的容纳部314。
闭塞构件320经由铰链部330能转动地安装于容器主体310,封堵容器主体310的投入口313。
铰链部330包括一对圆筒状的支承部331、夹在两个支承部331之间的圆筒状的转动部332以及贯通两个支承部331和转动部332的轴333。转动部332能相对于一对支承部331转动。一对支承部331与容器主体310一体形成,转动部332与闭塞构件320一体形成。
闭塞构件320包括大致半圆状的底面部320a和大致半圆筒状的周面部320b。在周面部320b的左端面附近形成有铰链部330的转动部332。在底面部320a的后端面以及周面部320b的左右端面和上端面分别设置有由弹性构件形成的衬垫321、322、323。衬垫321、322、323相当于本发明的水封构件。
在闭塞构件320的周面部320b的右端面形成有钩(hook)部324。在容器主体310,在投入口313附近设置有供钩部324卡合的卡合部315。
在蓄冷后的保冷体30容纳于容器主体310内之后,闭塞构件320关闭,投入口313被闭塞构件320封堵。由此,保冷体30容纳于冷却容器20A内(参照图6的(a)、(b))。钩部324与卡合部315卡合,闭塞构件320不易打开。
当闭塞构件320关闭时,闭塞构件320与容器主体310之间被衬垫321、322、323水封。由此,即使在冷却容器20A内产生凝结水,凝结水也不易从投入口313向冷却容器20A的外部漏出。
与上述实施方式相同,保持构件70的第一构件71的突起部74与冷却容器20A的顶面部310a(上构件312)接触。蓄于贮水容器110内的水,特别是贮水容器110的底部的水被容纳有保冷体30的冷却容器20A冷却,由此,该水的温度降低或不易上升。
当保冷体30暖化而冷却效果消失时,从冷却容器20A取出保冷体30。与卡合部315卡合的钩部324的前端部暴露于外部。用户用手指解除钩部324与卡合部315的卡合,打开闭塞构件320而使容器主体310的投入口313开放。在投入口313开放的状态下,保冷体30的大约一半暴露于外部。由此,用户能容易地从容器主体310即冷却容器20A内取出保冷体30。在容器主体310内存在凝结水的情况下,以使投入口313朝下的方式倾斜臭氧水喷雾器1来丢弃凝
结水。
<变更例二>
图8中,(a)和(b)是变更例二的臭氧水喷雾器1的立体图。图9的(a)是变更例二的冷却容器20B的立体图。图9的(b)是变更例二的冷却容器20B和保冷体30A的立体图。图9的(c)是变更例二的构成冷却容器20B的闭塞构件420的立体图。图8的(a)和图9的(a)表示冷却容器20B关闭的状态,图8的(b)和图9的(b)表示冷却容器20B打开的状态。图9的(a)中,容器主体410以分解的状态表示,图9的(b)中省略了构成容器主体410的上构件412。
在本变更例中,臭氧水喷雾器1代替冷却容器20而具备冷却容器20B。
冷却容器20B包括容器主体410和闭塞构件420。容器主体410和闭塞构件420例如由树脂材料形成。冷却容器20B相当于本发明的冷却部。
容器主体410具有扁平的中空圆柱状,由有底圆筒状的下构件411和覆盖该下构件411的上表面开口的圆板状的上构件412构成,包括顶面部410a、底面部410b以及周面部410c。在周面部410c形成具有绵延大约半周的长度的投入口413。此外,在底面部410b,在投入口413的右端附近形成有圆筒状的支承部414。而且,在顶面部410a形成有容纳盖罩11的下端部的容纳部415。
闭塞构件420以与容器主体410的投入口413的形状对应的方式具有大致半圆筒状。在闭塞构件420的左端部设置有U字状的臂421。在臂421的前端部形成有转动轴422。此外,在闭塞构件420的左右端面和上下端面分别设置有由弹性构件形成的衬垫423、424。
在闭塞构件420的周面部420b的右端面形成有钩部425。在容器主体410,在投入口413附近设置有供钩部425卡合的卡合部416。
闭塞构件420以使转动轴422插入支承部414的方式安装于容器主体410。闭塞构件420通过以转动轴422为中心转动而开闭。
如图9的(b)所示,箱体31局部凹陷,使得保冷体30A不与存在于容器主体410内部的支承部414和臂421干涉。其他结构与上述实施方式的保冷体30相同。
在蓄冷后的保冷体30A容纳于容器主体410内之后,闭塞构件420关闭,投入口413被闭塞构件420封堵。由此,保冷体30A容纳于冷却容器20B内(参照图8的(a)、(b))。钩部425与卡合部416卡合,闭塞构件420不易打开。
当闭塞构件420关闭时,闭塞构件420与容器主体410之间被衬垫423、424水封。由此,即使在冷却容器20B内产生凝结水,凝结水也不易从投入口413向冷却容器20B的外部漏出。
与上述实施方式相同,保持构件70的第一构件71的突起部74与冷却容器20B的顶面部410a(上构件412)接触。蓄于贮水容器110内的水,特别是贮水容器110的底部的水被容纳有保冷体30A的冷却容器20B冷却,由此,该水的温度降低或不易上升。
当保冷体30A暖化而冷却效果消失时,从冷却容器20B取出保冷体30。用户用手指解除钩部425与卡合部416的卡合,打开闭塞构件420而使容器主体410的投入口413开放。在容器主体410内存在凝结水的情况下,取出保冷体30A之后丢弃凝结水。
需要说明的是,在冷却容器20B中,支承部414和转动轴422存在于容器主体410的内部,不向外部凸出。因此,支承部414和转动轴422不易碰到什么东西而发生破损。
<变更例三>
图10的(a)是变更例三的臭氧水喷雾器1的局部剖面立体图。图10的(b)是表示变更例三的在贮水容器110的下方配置有冷却装置80的状态的主视图。
在本变更例中,为了冷却贮水容器110内的水,臭氧水喷雾器1具备具有珀耳帖元件84的冷却装置80。冷却装置80相当于本发明的冷却部。
在壳体10的下表面安装有具有大致扁平的中空圆柱状并容纳有冷却装置80的外壳90。外壳90构成臭氧水喷雾器1的底部。在外壳90的周面部90a,绵延整周形成有多个通气孔91。
冷却装置80由珀耳帖模块81、冷却风扇82以及吸热块83构成。珀耳帖
模块81包括珀耳帖元件84和与珀耳帖元件84的散热面连接的散热翅片85。冷却风扇82向散热翅片85送风来冷却散热翅片85。吸热块83的下表面与珀耳帖元件84的吸热面连接。此外,吸热块83贯通外壳90的顶面部90b和保持构件70的第一构件71,其上表面与贮水容器110的底面部110a接触。冷却装置80被供给电池63的电力。
冷却装置80的珀耳帖元件84被通电时,经由吸热块83从贮水容器110的底面部110a进行吸热,底面部110a被冷却。由此,蓄于贮水容器110内的水,特别是贮水容器110的底部的水被冷却,该水的温度降低或不易上升。
在本变更例中,由于代替冷却容器20而使用冷却装置80,因此不需要使保冷体30蓄冷的作业、向冷却容器20取出/放入保冷体30的作业,不易花费用户的工夫。
<其他变更例>
在上述实施方式中,配合冷却容器20即容器主体210的尺寸制作的保冷体30容纳于冷却容器20。然而,也可以代替保冷体30或者除了保冷体30之外,如图11所示将具有能容纳于冷却容器20中的尺寸的市售的保冷剂30B(例如,具有袋体中封入了凝胶状的药剂的结构)容纳于冷却容器20。同样,上述变更例一的冷却容器20A和上述变更例2的冷却容器20B中也可以容纳市售的保冷剂30B。保冷剂30B相当于本发明的保冷体。
而且,在上述实施方式中,作为能蓄冷的保冷体,使用了在扁平的中空圆柱状的箱体31内封入液状或凝胶状的保冷剂32的结构的保冷体30。然而,也可以使用石头、陶器等热容量高的材料形成的具有扁平的实心圆柱状的保冷体。
而且,在上述实施方式中,在冷却容器20中用于进行容器主体210与托盘220之间的水封的衬垫222设置在托盘220侧。然而,衬垫222也可以不设置在托盘220侧而设置在容器主体210侧。即,也可以在容器主体210的顶面部210a的下表面的与托盘220的周面部220b的上端面接触的部分设置衬垫222。
同样,在上述变更例一的冷却容器20A中,用于进行容器主体310与闭塞部件320之间的水封的衬垫321、322、323也可以不设置在闭塞部件320侧而
设置在容器主体310侧。而且,在上述变更例二的冷却容器20B中,用于进行容器主体410与闭塞部件420之间的水封的衬垫423、424也可以不设置在闭塞部件420侧而设置在容器主体410侧。
而且,在上述实施方式中,在泵140的下游设置有电解部120,从贮水容器110内被抽吸并从泵140吐出的水被送至电解部120。然而,也可以设为:电解部120设置在泵140的上游,从贮水容器110内被抽吸并被吸入泵140之前的水经过电解部120。在该情况下,例如,电解部120的流入口121位于贮水容器110内的底部,吸水管150连接于电解部120的流出口122。并且,送水管170连接于泵140的吐出口。在该结构的情况下,泵40也经由吸水管150来抽吸贮水容器110内的底部的水。
而且,在上述实施方式中,电解部120配置于贮水容器110中。然而,电解部120也可以配置于贮水容器110的外部。
而且,电解部120的结构不限于上述实施方式的结构,只要能通过电解由贮水容器110内的水产生臭氧,可以是任意的结构。例如,电解部120也可以采用如下结构:在内部作为流水路的箱体内具备棒状的阳极、呈螺旋状卷绕于阳极的外周的线状的阴极以及介于阳极与阴极之间的离子交换膜。
而且,在上述实施方式中,臭氧水喷雾器1具备将由泵140从贮水容器110抽吸的水通过电解部120来电解而生成臭氧水的结构的臭氧水散布机构40。然而,臭氧水喷雾器1也可以具备通过电解部来对贮存于贮水容器内的状态的水进行电解而生成臭氧水并通过泵来抽吸所生成的臭氧水的结构的臭氧水散布机构。
而且,在上述实施方式中,臭氧水喷雾器1具备喷雾出臭氧水的结构的散布喷嘴130来作为散布部。然而,臭氧水喷雾器1也可以具备雨状地放出臭氧水的结构的散布喷嘴来作为散布部。
而且,在上述实施方式中,臭氧水喷雾器1具备电动式的泵140来作为送水装置。然而,臭氧水喷雾器1也可以具备活塞/气缸机构来作为送水装置。在该情况下,当操作扳机时,活塞/气缸机构与该操作联动地工作,从贮水容器110抽吸的水被送至散布喷嘴130。
此外,本发明的实施方式能在权利要求书所示的技术构思的范围内适当地进行各种变更。
Claims (6)
- 一种臭氧水散布装置,其特征在于,具备:贮水容器,贮存水;电解部,通过电解而由所述贮水容器内的水生成臭氧;散布部,散布使所述贮水容器内的水中含有由所述电解部生成的臭氧而成的臭氧水;以及冷却部,用于冷却所述贮水容器内的水。
- 根据权利要求1所述的臭氧水散布装置,其特征在于,还具备:送水装置,从所述贮水容器内的底部经由吸水管来抽吸水并将其送向所述散布部,所述电解部使由所述送水装置抽吸的水经过所述电解部来对该经过的水进行电解,所述冷却部配置于所述贮水容器的下方,对所述贮水容器的底面部进行冷却。
- 根据权利要求1或2所述的臭氧水散布装置,其特征在于,所述冷却部包括:冷却容器,供能通过被冷却来进行蓄冷的保冷体以能取出的方式容纳。
- 根据权利要求3所述的臭氧水散布装置,其特征在于,所述冷却部包括:容器主体,具有供所述保冷体投入的投入口并容纳所述保冷体;以及闭塞构件,封堵所述投入口,在所述容器主体与所述闭塞构件之间设置有水封构件,所述水封构件防止由所述保冷体凝结的水从所述投入口漏出。
- 根据权利要求1或2所述的臭氧水散布装置,其特征在于,所述冷却部包括:冷却装置,具有珀耳帖元件。
- 根据权利要求1所述的臭氧水散布装置,其特征在于,所述冷却部配置于所述贮水容器的下方,对所述贮水容器的底面部进行冷却。
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Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2000154004A (ja) * | 1998-11-16 | 2000-06-06 | Teeiku Wan Sogo Jimusho:Kk | オゾン水供給装置 |
| CN1397502A (zh) * | 2001-07-18 | 2003-02-19 | 三洋电机株式会社 | 杀菌方法和电解水生成装置 |
| JP2014012262A (ja) * | 2012-07-04 | 2014-01-23 | Eco Planner:Kk | オゾン水生成装置 |
| CN107308833A (zh) * | 2017-08-22 | 2017-11-03 | 依格安顾问(香港)有限公司 | 超声波雾化臭氧水的制造装置及方法 |
| JP6249200B1 (ja) * | 2016-11-04 | 2017-12-20 | 昌也 城井 | 電解セル及びそれを用いたオゾン水噴出装置 |
| CN207002264U (zh) * | 2017-06-08 | 2018-02-13 | 南京交通职业技术学院 | 一种安全高效高压放电式臭氧发生器 |
| WO2022057235A1 (zh) * | 2020-09-17 | 2022-03-24 | 青岛海尔洗衣机有限公司 | 臭氧水散布装置 |
-
2022
- 2022-11-07 JP JP2022178483A patent/JP2024068005A/ja active Pending
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2023
- 2023-11-01 WO PCT/CN2023/129061 patent/WO2024099208A1/zh not_active Ceased
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2000154004A (ja) * | 1998-11-16 | 2000-06-06 | Teeiku Wan Sogo Jimusho:Kk | オゾン水供給装置 |
| CN1397502A (zh) * | 2001-07-18 | 2003-02-19 | 三洋电机株式会社 | 杀菌方法和电解水生成装置 |
| JP2014012262A (ja) * | 2012-07-04 | 2014-01-23 | Eco Planner:Kk | オゾン水生成装置 |
| JP6249200B1 (ja) * | 2016-11-04 | 2017-12-20 | 昌也 城井 | 電解セル及びそれを用いたオゾン水噴出装置 |
| CN207002264U (zh) * | 2017-06-08 | 2018-02-13 | 南京交通职业技术学院 | 一种安全高效高压放电式臭氧发生器 |
| CN107308833A (zh) * | 2017-08-22 | 2017-11-03 | 依格安顾问(香港)有限公司 | 超声波雾化臭氧水的制造装置及方法 |
| WO2022057235A1 (zh) * | 2020-09-17 | 2022-03-24 | 青岛海尔洗衣机有限公司 | 臭氧水散布装置 |
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