Water dispenser capable of electrolyzing running water

By designing an electrolyzed water dispenser, utilizing activated carbon and metal electrode components and a small-gap electrolysis design, the problem of upgrading electric water dispensers to electrolyzed water dispensers has been solved, achieving efficient hydrogen production through water electrolysis and increasing product added value.

CN223921178UActive Publication Date: 2026-02-17罗民雄
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Patent Information

Application Number
CN202422203133.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2026-02-17
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

Existing electric water dispensers are difficult to upgrade to electrolyzed water dispensers, and the cost is high, which cannot effectively increase the added value of the product.

Method used

Design an electrolytic water dispenser, comprising a water tank, an electrolytic water electrode assembly, a control circuit, an electric water pump, and an instant heating element. It utilizes activated carbon and metal positive and negative electrode assemblies with a gap of less than 2 mm. The water flow is electrolyzed by the electrolytic water current of the control circuit and the electrode assembly to output hydrogen water.

Benefits of technology

It achieves the efficient electrolysis of water to produce hydrogen in the water dispenser, increasing the added value of the product, and is low in cost and reliable.

✦ Generated by Eureka AI based on patent content.

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Abstract

An electrolysis running water dispenser is characterized by comprising a water tank, and the water tank is provided with a water filling opening; the water electrolysis electrode assembly comprises a positive electrode and a negative electrode; the water dispenser base comprises a base and a machine body connected with the base into a whole. The water tank is arranged on a transverse panel of the base, so that the base and the water tank are tightly combined into the water dispenser; a control circuit, a controlled electric water pump, a running water instant heating electric heater, an electrolyzed water power supply and an electrode assembly are arranged in the machine base; a positive electrode and a negative electrode of the electrode assembly are connected to an electrolyzed water power supply through conductive circuits respectively; the water electrolysis working process comprises the following steps: filling water into the water tank; the starting control circuit controls the current output positive and negative ends of the electrolyzed water power supply to respectively convey electrolyzed water current to the positive and negative electrodes of the electrode assembly through the circuit to produce hydrogen water; the control circuit simultaneously controls the electric water pump to work, water in the water tank is pumped into the pipeline and flows to the electric water pump and the electric heater, the electric heater heats the water flow to a preset water temperature, and the water flow is electrolyzed by the electrode assembly and then flows out of the machine water outlet for use.
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Description

TECHNICAL FIELD

[0001] The present application relates to an electrolysis water dispenser, belonging to the technical field of electrolytic water. BACKGROUND

[0002] The present application is an electrolysis water dispenser, which is a clever and simple upgrade of a water tank type electric water dispenser. The traditional electric water dispenser is widely used in the market. By adding the function of electrolysis water production, the product can be upgraded and entered into the hydrogen health care and medical industry, greatly improving the added value of the product. The present application is a simple and low-cost reliable method to solve this new technical problem. SUMMARY

[0003] The basic content of the application is an electrolysis water dispenser, characterized by: a water tank, a water tank with a water inlet; an electrolysis water electrode assembly, the electrode assembly containing a positive electrode and a negative electrode; a water dispenser base, the base including a base and a body connected to the base; the water tank is placed on the horizontal panel of the base, so that the base and the water tank are tightly combined into a water dispenser; the space in the base is installed with a control circuit and controlled water pump, water flow instant heater, electrolysis water electrode and electrode assembly; the electrode assembly contains a positive electrode and a negative electrode, and there is an electrolysis water gap between the positive and negative electrodes, which can flow through the water flow, and the electrolysis water current output by the positive and negative electrodes can electrolyze the water flow, and the water flow will not leak out of the electrode assembly; the positive and negative electrodes of the electrode assembly are connected to the current output positive and negative electrode ports of the electrolysis water power supply through the conductive circuit; the working process of the electrolysis water of the machine: a predetermined amount of drinking water is filled in the water tank; the working process of the electrolysis water output by the machine: start the control circuit to control the electrolysis water power supply current output positive and negative ends to respectively deliver electrolysis water current to the positive and negative electrodes of the electrode assembly through the circuit, and make hydrogen water according to the predetermined time; the control circuit controls the water pump to work at the same time, and the water in the water tank is pumped into the pipeline to the water pump and the heater, the heater heats the water flow to a predetermined water temperature, and then the water flow is electrolyzed through the electrode assembly and output from the machine outlet through the pipeline for use; the water flow path during the electrolysis water output process of the machine is: electrolysis water in the water tank → pipeline → water pump → heater → electrode assembly positive and negative electrode gap → pipeline → machine water outlet.

[0004] The second invention is an electrolysis water dispenser, characterized by: the positive and negative electrodes of the electrolysis water electrode assembly are respectively made of activated carbon and metal, and the positive and negative electrode electrolysis water gap distance is less than 2mm, which uses the difference between the specific surface area of the activated carbon positive electrode and the specific surface area of the metal negative electrode of the electrolysis water electrode assembly and the electrolysis water characteristics of the small electrolysis water gap to improve the electrolysis water efficiency.

[0005] Basic technical solution: an electrolytic flowing water dispenser, characterized by: including a water tank, the water tank has a water filling port; an electrolytic water electrode assembly, the electrode assembly contains a positive electrode and a negative electrode; a dispenser base, the base includes a base and a machine body integrated with the base; the water tank is placed on the horizontal panel of the base, so that the base and the water tank are tightly combined into a dispenser; the space in the base is installed with a control circuit and controlled electric water pump, flowing water instant electric heater, electrolytic water electric, electrode assembly; the electrode assembly contains a positive electrode and a negative electrode, and there is an electrolytic water gap between the positive and negative electrodes, water flow can pass through, and the electrolytic water current output by the positive and negative electrodes can electrolyze the water flow, and the water flow will not leak out of the electrode assembly; the positive and negative electrodes of the electrode assembly are connected to the current output positive and negative electrode ports of the electrolytic water power source through conductive lines; the machine electrolytic water working process: a predetermined amount of drinking water is filled in the water tank; the machine electrolytic water output working process: the control circuit controls the electrolytic water power source current output positive and negative ends to respectively deliver electrolytic water current to the positive and negative electrodes of the electrode assembly through the circuit according to the predetermined time to produce hydrogen water; the control circuit controls the electric water pump to work at the same time, and the water in the water tank is pumped into the pipeline to flow to the electric water pump and the electric heater, the electric heater heats the water flow to a predetermined water temperature, and then the water flow is electrolyzed through the electrode assembly and flows out from the machine water outlet for use; the water flow path during the machine electrolytic water output process is: electrolytic water in the water tank → pipeline → electric water pump → electric heater → electrode assembly positive and negative electrode gap → pipeline → to the machine water outlet output.

[0006] Technical solution two: the electrolytic flowing water dispenser, characterized by: the positive and negative electrodes of the electrolytic water electrode assembly are respectively made of activated carbon material and metal material, and the positive and negative electrode electrolytic water gap distance is designed to be less than 2mm, which utilizes the difference between the specific surface area of the activated carbon positive electrode and the specific surface area of the metal negative electrode of the electrolytic water electrode assembly and the electrolytic water characteristics of the small electrolytic water gap to improve the electrolytic water efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0007] The application will be further explained by the accompanying drawings.

[0008] Figure 1 Embodiment 1 of the application is an electrolytic flowing water dispenser DETAILED DESCRIPTION

[0009] The following combines the embodiment 1 Figure 1 The basic structure and basic working principle of the embodiment are described.

[0010] Embodiment 1

[0011] Figure 1The electrolysis water machine of the embodiment 1 is characterized by comprising a water tank 1, the water tank 1 having a water inlet 17; an electrolysis water electrode assembly 2, the electrode assembly 2 comprising a positive electrode 3 and a negative electrode 4; a water machine base 20, the base 20 comprising a base 5 and a machine body 6 integrated with the base 5; the water tank 1 is arranged on the horizontal panel 10 of the base 5, so that the base 20 and the water tank 1 are closely combined into the water machine; the space 25 in the base 20 is provided with a control circuit 9, an electric water pump 7 controlled by the control circuit 9, a water flowing instant heating electric heater 8, an electrolysis water power supply 16 and the electrode assembly 2 controlled by the control circuit 9; the electrode assembly 2 comprises the positive electrode 3 and the negative electrode 4, and the positive electrode 3 and the negative electrode 4 are provided with an electrolysis water gap 26 between them, through which water flow 24 can flow, and the water flow 24 can be electrolyzed by the electrolysis water current output by the positive electrode 3 and the negative electrode 4, and the water flow will not leak out of the electrode assembly 2; the positive electrode 3 and the negative electrode 4 of the electrode assembly 2 are connected to the current output positive and negative electrode terminals of the electrolysis water power supply 16 through the conductive line 1 3 and the conductive line 2 14 respectively; the water tank 1 is filled with drinking water 15; the water outlet of the water tank 1 is connected to the water inlet of the electric water pump 7 through the pipeline 1 8 and then connected to the water inlet of the electric heater 8; the water outlet of the electric heater 8 is connected to the water inlet end of the positive and negative electrode gap 26 of the electrode assembly 2 through the pipeline; the water outlet end of the electrode assembly 2 is connected to the machine water outlet 22 through the pipeline 2 19; the working process of the machine output electrolysis water is as follows: the control circuit 9 controls the current output positive and negative electrode terminals of the electrolysis water power supply 16 to respectively deliver electrolysis water current to the positive electrode 3 and the negative electrode 4 of the electrode assembly 2 through the conductive line 1 3 and the conductive line 2 14, so as to produce hydrogen water according to the predetermined time; the control circuit 9 controls the electric water pump 7 to work at the same time, so as to pump the raw water in the water tank 1 into the pipeline 1 8 and then to the electric water pump 7 and the electric heater 8, the electric heater 8 heats the water flow 24 to a predetermined water temperature, and then the water flow 24 is electrolyzed by the electrode assembly 2 and then flows out from the machine water outlet 22 through the pipeline 2 19 for use; the water flow 24 flows along the following path during the process of the machine output electrolysis water: the raw water in the water tank 1→ the pipeline 1 8→ the electric water pump 7→ the electric heater 8→ the positive and negative electrode gap 26 of the electrode assembly 2→ the pipeline 2 19→ the machine water outlet 22.

[0012] The positive electrode 3 and the negative electrode 4 of the electrolysis water electrode assembly 2 of the embodiment 1 are respectively made of activated carbon material and metal material, and the positive and negative electrode electrolysis water gap distance is less than 2 mm, which makes use of the significant difference between the specific surface area of the activated carbon positive electrode and the specific surface area of the metal negative electrode of the electrolysis water electrode assembly and the small electrolysis water gap to strengthen the electrolysis effect, improve the electrolysis water efficiency and electrolysis water index, and actual test shows that this has important significance.

[0013] The present application is not limited to the specific structure and process of the embodiment 1, and can be applied to various electrolysis water devices with the same or equivalent technical features.

Claims

1. An electrolytic water fountain, characterized in that: The application relates to a water electrolysis machine, which comprises a water tank (1), a water tank (1) with a water inlet (17), an electrolytic water electrode assembly (2), an electrode assembly (2) containing a positive electrode (3) and a negative electrode (4), a water dispenser base (20), a base (5) and a machine body (6) integrated with the base (5), the water tank (1) is arranged on the horizontal panel (10) of the base (5), so that the base (20) and the water tank (1) are tightly combined into the water dispenser, the space (25) in the base (20) is provided with a control circuit (9), an electric water pump (7), a water flowing instant heating electric heater (8), an electrolytic water power supply (16) and the electrode assembly (2) controlled by the control circuit (9), the electrode assembly (2) contains the positive electrode (3) and the negative electrode (4), the positive electrode (3) and the negative electrode (4) are provided with an electrolytic water gap (26) between them, water flow (24) can flow through the electrolytic water gap (26), and the electrolytic water current output by the positive electrode (3) and the negative electrode (4) can electrolyze the water flow (24), and the water flow cannot leak out of the electrode assembly (2), the positive electrode (3) and the negative electrode (4) of the electrode assembly (2) are connected to the current output positive and negative electrode ports of the electrolytic water power supply (16) through the conductive circuit one (13) and the conductive circuit two (14) respectively, the water tank (1) is filled with drinking water (15), the water outlet of the water tank (1) is connected to the water inlet of the electric water pump (7) through the pipeline one (18) and then connected to the water inlet of the electric heater (8), the water outlet of the electric heater (8) is connected to the water inlet end of the positive and negative electrode gap (26) of the electrode assembly (2) through the pipeline, and the water outlet end of the electrode assembly (2) is connected to the machine water outlet (22) through the pipeline two (19).

2. The electrolytic water fountain as claimed in claim 1, wherein: The positive electrode (3) and the negative electrode (4) of the electrolytic water electrode assembly (2) are respectively made of activated carbon material and metal material.