Electrolytic water generator
Technical Field
The utility model relates to the technical field of electrolyzed water, in particular to an electrolyzed water generator.
Background
Electrolyzed water generally refers to the product of water containing an electrolytic agent after electrolysis, one of which is alkaline ionic water and the other of which is acidic ionic water. The hypochlorous acid in the acidic electrolyzed water is utilized to destroy cell walls and virus shells, and destroy nucleic acid and enzyme in bacteria and viruses, so that pathogenic microorganisms such as bacteria, viruses, fungi and the like are rapidly killed. At present, the acidic electrolyzed water can be used for seed soaking and bud strengthening, fruit and vegetable disease control, soil improvement, fruit and vegetable fresh keeping and the like, and the alkaline electrolyzed water can be used for pesticide residue reduction, soil improvement and the like.
The existing water electrolysis equipment is large in size, heavy and inconvenient to move, pH of the generated acidic water electrolysis is not adjustable, an insoluble electrolyte is easy to block equipment pipelines, the equipment is required to be manually attended during operation, remote control cannot be realized, waste water is additionally generated during operation of the equipment, water resources are wasted, and operation cost is increased, so that popularization of the water electrolysis equipment on the market is limited.
Disclosure of utility model
The utility model aims to provide an electrolyzed water generator which has compact and reasonable equipment structure, small volume, light weight, portability, simple operation, remote operation by using a mobile phone or a computer, on-site operation by using a touch display screen, indication of equipment operation condition by an indicator lamp, adjustable pH value of acidic electrolyzed water, no waste water generation, difficult blockage of equipment pipelines by an electrolyte and contribution to product popularization.
In order to achieve the above object, the solution of the present utility model is:
The utility model provides an electrolytic water generator, includes the main cabinet, the main cabinet includes electric cabinet, water making tank, qianmen, truckle, the electric cabinet is located main cabinet upper portion, electric cabinet top installation touch display screen, electric cabinet different sides installs exhaust fan, switch, three hole sockets of inlet wire, electric cabinet door respectively, electric cabinet internally mounted electrolysis power, PLC control module and relay module are installed respectively to electric cabinet door medial surface, and the hasp is installed to the lateral surface, water making tank is located main cabinet lower half, water making tank bottom mounting bottom plate, water making tank top installation electrolyte tank lid, water making tank different sides install side door, acid water interface, alkaline water interface, gas exhausting window, water inlet interface and 1# drainage interface respectively, inside 1# electrolysis trough, electrolyte tank, conductivity detection sensor, high-pressure diaphragm pump, drain valve, electric control valve, peristaltic pump, pH detection sensor, 1# hybrid bottle, 2# hybrid tube, flowmeter, through the interconnect of electrolytic water making tank, water making tank top installation electrolyte tank, water inlet opening, water inlet valve and 1# drainage interface, water level well as the water level interface sets up four, water making tank top connection bottom plate, water making tank top connection has a water level well as the interface, water supplementing tank top connection well as being located the top of the main cabinet.
Further, the electrolysis power supply is in electrical signal connection with the relay module, the relay module is in electrical signal connection with the PLC control module, and the PLC control module is in electrical signal connection with the touch display screen, the conductivity detection sensor, the high-pressure diaphragm pump, the electric control valve, the peristaltic pump and the pH detection sensor respectively.
Further, the water inlet port is connected with the high-pressure diaphragm pump through the pipeline, then the high-pressure diaphragm pump is connected with the water supplementing port and the flowmeter through the pipeline respectively, then the flowmeter is connected with the 1# mixing bottle through the pipeline, then the water outlet port is connected with the peristaltic pump through the pipeline, then the peristaltic pump is connected with the 1# mixing bottle through the pipeline, then the 1# mixing bottle is connected with the conductivity detection sensor through the pipeline, then the conductivity detection sensor is connected with the 1# electrolytic tank through the pipeline, then the 1# electrolytic tank is connected with the 2# electrolytic tank through the pipeline, then the 2# electrolytic tank is connected with the 2# mixing bottle and the electric regulating valve through the pipeline respectively, then the 2# mixing bottle is connected with the pH detection sensor through the pipeline, then the pH detection sensor is connected with the acidic water port through the pipeline, then the electric regulating valve is connected with the alkaline water port through the pipeline.
Further, two exhaust fans are used for radiating heat outwards in the electric cabinet, and one exhaust fan, the power switch and the wire inlet three-hole socket are arranged on the same side face of the electric cabinet.
Further, the acid water interface, the alkaline water interface, the exhaust window holes, the water inlet interface and the No. 1 water drainage interface are positioned on the same side face of the water making tank, two side doors are arranged on the other two side faces of the water making tank, the side doors and the front door are arranged to facilitate maintenance of the internal structure of the water making tank, and the exhaust window holes are arranged in a plurality of parallel rows and are used for radiating outwards inside the water making tank.
Further, the lock catch is used for locking the electric cabinet door, and the internal structure of the electric cabinet is prevented from being damaged manually.
Further, the front door is provided with an indicator light for indicating the running state of the equipment.
Further, the operation condition of the equipment is checked and the operation parameters of the equipment are adjusted through the touch display screen, and the equipment is remotely controlled to operate through the PLC control module by using a computer or a mobile phone.
Further, the overflow hole interface is connected with the 1# drainage interface through the pipeline, the 2# drainage interface is connected with the drain valve through the pipeline, and then the drain valve is connected with the 1# drainage interface through the pipeline.
Further, the filter plate can reduce that undissolved electrolyte enters the bottom of the electrolyte solution tank and blocks the pipeline in the equipment through the water outlet port, the water level limit switch controls the water level of the electrolyte solution tank to be in a safe position, and the overflow hole port can prevent electrolyte solution in the electrolyte solution tank from overflowing and corroding the equipment after the water level limit switch is damaged.
After the structure is adopted, the electrolytic water generator has the following beneficial effects:
(1) Through the PLC control module, the mobile phone or computer remote control equipment can be used for checking the equipment operation condition in real time, the touch display screen is used for adjusting the equipment operation parameters on site, and the equipment operation condition is checked.
(2) The indicator lamp is arranged to indicate the running condition of the equipment, so that the current running condition of the field personnel equipment can be timely reminded.
(3) The electrolyte dissolving box is provided with a water level limit switch and an overflow hole interface, double insurance is provided for preventing electrolyte solution from overflowing and corroding equipment, a filter plate is arranged for reducing the blockage of insoluble electrolyte to equipment pipelines, a No. 2 drainage interface and a drainage valve are arranged, and the equipment is convenient to remove residual electrolyte solution when not operated for a long time.
(4) The conductivity of the electrolyte solution is adjustable, a conductivity detection sensor is used, the flow rate of the electrolyte solution and the flow rate of water are adjusted through a peristaltic pump and a flowmeter, and then the electrolyte solution and the water are mixed in a No. 1 mixing bottle to realize conductivity adjustment.
(5) The pH value of the acidic electrolyzed water is adjustable, the flow of the alkaline electrolyzed water is adjusted through an electric adjusting valve, the pH value of the acidic electrolyzed water is adjusted, then the pH value of the acidic electrolyzed water is stabilized by a No. 2 mixing bottle, and the pH value is detected by a pH detection sensor, so that the acidic electrolyzed water meeting the requirements is prepared.
(6) Two electrolytic tanks are arranged, so that the water making stability and the water making speed of the equipment are improved.
(7) The equipment has compact and reasonable structure, small volume, light weight, simple operation, and convenient equipment movement due to the arrangement of the casters.
Drawings
FIG. 1 is a schematic view showing the overall structure of an electrolytic water generator according to the present utility model;
FIG. 2 is a schematic view showing a structure of one side of an electrolytic water generator according to the present utility model;
FIG. 3 is a schematic view showing another side structure of an electrolytic water generator according to the present utility model;
FIG. 4 is a schematic view showing the structure of an electrolytic agent dissolving tank of an electrolytic water generator according to the present utility model.
In the figure: 1-electric cabinet, 2-exhaust fan, 3-power switch, 4-inlet three-hole socket, 5-water making tank, 6-caster, 7-bottom plate, 8-indicator, 9-front door, 10-touch display screen, 11-electric cabinet door, 12-lock, 13-side door, 14-1# electrolytic tank, 15-electrolyte tank, 16-electric regulating valve, 17-pH detection sensor, 18-2# mixing bottle, 19-2# electrolytic tank, 20-1# mixing bottle, 21-flowmeter, 22-peristaltic pump, 23-PLC control module, 24-relay module, 25-electrolyte tank cover, 26-acid water interface, 27-alkaline water interface, 28-exhaust window, 29-1# drain interface, 30-water inlet interface, 31-electrolytic power supply, 32-conductivity detection sensor, 33-high-pressure diaphragm pump, 34-drain valve, 35-water supplementing interface, 36-overflow hole interface, 37-water level limit switch, 38-filter plate, 39-water outlet interface, 40-2# drain interface, 30-2 # drain interface
Detailed Description
In order to further explain the technical scheme of the utility model, the utility model is explained in detail by specific examples.
An electrolytic water generator, as shown in figures 1, 2, 3 and 4, comprises a main cabinet, wherein the main cabinet comprises an electric cabinet 1, a water making tank 5, a front door 9 and casters 6, the electric cabinet 1 is positioned at the upper half part of the main cabinet, a touch display screen 10 is arranged at the top of the electric cabinet 1, an exhaust fan 2, a power switch 3, a three-hole inlet socket 4 and an electric cabinet door 11 are respectively arranged at different sides of the electric cabinet 1, an electrolytic power supply 31 is arranged in the electric cabinet 1, a PLC control module 23 and a relay module 24 are respectively arranged at the inner side of the electric cabinet door 11, a lock catch 12 is arranged at the outer side of the electric cabinet door 11, the water making tank 5 is positioned at the lower half part of the main cabinet, a bottom plate 7 is arranged at the bottom of the water making tank 5, an electrolytic solution tank cover 25 is arranged at the top of the water making tank 5, a side door 13, an acid water interface 26, an alkaline water interface 27, an exhaust window 28, a water inlet interface 30 and a 1# drainage interface 29 are respectively arranged at different sides of the water making tank 5, the inside of the water making tank 5 is respectively provided with a No. 1 electrolytic tank 14, a No. 2 electrolytic tank 19, an electrolyte dissolving tank 15, a conductivity detection sensor 32, a high-pressure diaphragm pump 33, a drain valve 34, an electric regulating valve 16, a peristaltic pump 22, a pH detection sensor 17, a No. 1 mixing bottle 20, a No. 2 mixing bottle 18 and a flowmeter 21, which are mutually connected through a plurality of pipelines (not shown in the figure), the electrolyte dissolving tank 15 is positioned at the lower end of an electrolyte dissolving tank cover 25, a water supplementing interface 35, an overflow hole interface 36, a water level limit switch 37, a water outlet interface 39 and a No. 2 drain interface 40 are arranged on one side of the electrolyte dissolving tank 15, a filter plate 38 is arranged inside, the front door 9 is positioned on one side of the main cabinet, four casters 6 are positioned at the bottom of the main cabinet and connected with the bottom plate 7.
The electrolysis power supply 31 is electrically connected with the relay module 24, the relay module 24 is electrically connected with the PLC control module 23, and the PLC control module 23 is electrically connected with the touch display screen 10, the conductivity detection sensor 32, the high-pressure diaphragm pump 33, the electric control valve 16, the peristaltic pump 22 and the pH detection sensor 17 respectively.
The water inlet port 30 is connected with the high-pressure diaphragm pump 33 through a pipeline, then the high-pressure diaphragm pump 33 is connected with the water supplementing port 35 and the flowmeter 21 respectively through a pipeline, then the flowmeter 21 is connected with the No. 1 mixing bottle 20 through a pipeline, then the water outlet port 39 is connected with the peristaltic pump 22 through a pipeline, then the peristaltic pump 22 is connected with the No. 1 mixing bottle 20 through a pipeline, then the No. 1 mixing bottle 20 is connected with the conductivity detection sensor 32 through a pipeline, then the conductivity detection sensor 32 is connected with the No. 1 electrolytic tank 14 through a pipeline, then the No. 1 electrolytic tank 14 is connected with the No. 2 electrolytic tank 19 through a pipeline, then the No. 2 electrolytic tank 19 is connected with the No. 2 mixing bottle 18 and the electric regulating valve 16 respectively through a pipeline, then the No. 2 mixing bottle 18 is connected with the pH detection sensor 17 through a pipeline, then the pH detection sensor 17 is connected with the acid water port 26 through a pipeline, and then the electric regulating valve 16 is connected with the alkaline water port 27 through a pipeline.
The exhaust fans 2 are two and are used for radiating heat outwards in the electric cabinet 1, and one exhaust fan 2, the power switch 3 and the wire inlet three-hole socket 4 are arranged on the same side face of the electric cabinet 1.
The acid water port 26, the alkaline water port 27, the exhaust window hole 28, the water inlet port 30 and the 1# drainage port 29 are positioned on the same side face of the water making tank 5, two side doors 13 are positioned on the other two side faces of the water making tank 5, the side doors 13 and the front door 9 are arranged to facilitate maintenance of the internal structure of the water making tank 5, and the exhaust window holes 28 are arranged in a plurality of parallel three rows for radiating heat outwards from the interior of the water making tank 5.
The lock catch 12 is used for locking the electric cabinet door 11 and preventing the internal structure of the electric cabinet 1 from being damaged manually.
The front door 9 is provided with an indicator light 8 indicating the operating state of the apparatus.
The operation condition of the equipment is checked and the operation parameters of the equipment are adjusted through the touch display screen 10, and the operation of the equipment is remotely controlled through the PLC control module 23 by using a computer or a mobile phone.
The overflow port 36 is connected to the 1# drain port 29 by a pipe, the 2# drain port 40 is connected to the drain valve 34 by a pipe, and then the drain valve 34 is connected to the 1# drain port 29 by a pipe.
The filter plate 38 can reduce undissolved electrolyte entering the bottom of the electrolyte solution tank 15 to block the pipeline in the equipment through the water outlet port 39, the water level limit switch 37 controls the water level of the electrolyte solution tank 15 to be in a safe position, and the overflow hole port 36 can prevent electrolyte solution in the electrolyte solution tank 15 from overflowing and corroding the equipment after the water level limit switch 37 is damaged.
After the structure is adopted, the electrolytic water generator provided by the utility model has the working process that: after equipment is assembled, an external water source is connected with an equipment water inlet interface 30 to supply water for equipment, an external power source is connected with a three-hole inlet socket 4, a power switch 3 is turned on, stable voltage and current are provided for supplying power to the equipment through an electrolysis power source 31, an electrolyte solution tank 15 is firstly filled with water and then electrolyte is added until the electrolyte is saturated, a touch display screen 10 is provided with required operation parameters, the equipment is firstly filled with water for cleaning, after the cleaning is finished, formal water production is carried out, electrolyte solution is firstly subjected to conductivity adjustment through a peristaltic pump and a flowmeter, after the conductivity detection sensor 32 detects the qualified state, is electrolyzed through a No. 1 electrolytic tank 14, is electrolyzed through a No. 2 electrolytic tank 19 to form acidic electrolyzed water and alkaline electrolyzed water, the pH value of the acidic electrolyzed water can be adjusted through an adjustment electric adjustment valve 16, the pH value detection sensor 17 detects the pH value of the acidic electrolyzed water, and after the equipment is normally operated, the equipment can be controlled through a mobile phone or a computer.
The electrolytic water generator has the following beneficial effects:
(1) Through the PLC control module 23, the operation condition of the equipment can be checked in real time by using a mobile phone or a computer remote control device, and the operation parameters of the equipment can be adjusted by using the touch display screen 10 on site to check the operation condition of the equipment.
(2) The indicator lamp 8 is arranged to indicate the running condition of the equipment, so that the current running condition of the field personnel equipment can be timely reminded.
(3) The electrolyte dissolving tank 15 is provided with a water level limit switch 37 and an overflow hole interface 36, double insurance is provided for preventing electrolyte solution from overflowing and corroding equipment, a filter plate 38 is arranged for reducing the blockage of insoluble electrolyte to equipment pipelines, a No. 2 drainage interface 40 and a drainage valve 34 are arranged, and the residual electrolyte solution in the equipment is conveniently discharged when the equipment does not operate for a long time.
(4) The conductivity of the electrolyte solution is adjustable, a conductivity detection sensor 32 is used, the flow rate of the electrolyte solution is adjusted through a peristaltic pump 22, the flow rate of water is adjusted through a flowmeter 21, and then the electrolyte solution and the water are mixed in a No. 1 mixing bottle 20 to realize conductivity adjustment.
(5) The pH value of the acidic electrolyzed water is adjustable, the flow of the alkaline electrolyzed water is adjusted through the electric adjusting valve 16, the pH value of the acidic electrolyzed water is adjusted, then the pH value of the acidic electrolyzed water is stabilized by the No. 2 mixing bottle 18, and the pH value is detected by the pH detection sensor 17, so that the acidic electrolyzed water meeting the requirements is prepared.
(6) Two electrolytic tanks are arranged, so that the water making stability and the water making speed of the equipment are improved.
(7) The equipment has compact and reasonable structure, small volume, light weight, simple operation and convenient equipment movement due to the arrangement of the casters 6.
Therefore, the electrolytic water generator has the advantages of compact and reasonable equipment structure, small volume, light weight, portability, simple operation, remote operation by using a mobile phone or a computer, on-site operation by using a touch display screen, indication of equipment operation condition by using an indicator lamp, adjustable pH value of acidic electrolytic water, no waste water generation, difficult blockage of equipment pipelines by an electrolyte, and contribution to product popularization.
The above examples and drawings are not intended to limit the form or form of the present utility model, and any suitable variations or modifications thereof by those skilled in the art should be construed as not departing from the scope of the present utility model.