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Supersaturated hydrogen-rich drinking fountain

A water dispenser and hydrogen-rich technology, applied in mixers, transportation and packaging, mixer accessories, etc., can solve the problems of substandard water purification effect, by-products, residual chlorine risks, etc., to ensure water quality safety, The effect of preventing mutual accumulation and maintaining the foam flow pattern

Pending Publication Date: 2018-07-03
DALIAN SHUANGDI INNOVATIVE TECH RES INST
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] 1) The water purification effect is not up to standard, and there is a risk of residual chlorine. Even if it meets the drinking water standard, the water dispenser is very large, occupies a large area, and is cumbersome to use;
[0004] 2) Most water dispensers have a small water output, which is buffered in the water tank, making it difficult to escape the growth of bacteria, thus affecting the quality of drinking water;
[0005] 3) What's more, through magnetization, the water dispenser changes the molecular group of water, but it should be used with caution for people with gastrointestinal diseases, because magnetized water can stimulate the stomach to a certain extent;
[0006] 4) The purified water is generally acidic, which is not easy for the human body to drink for a long time
And under the action of strong current, certain by-products (H 2 o 2 , O 3 Wait);
[0009] 2) For the hydrogen perfusion method, hydrogen is injected into pure water with pressure, which should be called water containing hydrogen, rather than hydrogen "dissolving" with water, so hydrogen cannot be stored for a long time
[0011] It can be seen that for most water dispensers, the hydrogen-rich water produced has a low dissolved hydrogen content. Even if the individual content is high, there will be residual chlorine, hypochlorous acid, etc. to varying degrees, and blindly strong current improves the dissolved hydrogen content. Hydrogen, with by-products

Method used

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  • Supersaturated hydrogen-rich drinking fountain
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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] For the supersaturated hydrogen-rich water dispenser of this embodiment, see figure 1 and figure 2 , including pure water tank, circulating pump and electrolytic cell 1. The electrolytic cell 1 comprises an isolation membrane 11 and an anion electrolysis chamber 12 and an anode electrolysis chamber 13 separated by the isolation membrane, and the both sides of the isolation membrane 11 are provided with a cathode electrode 14 and an anode electrode 15 respectively positioned in the cathode and anode electrolysis chambers,

[0037] In order to improve the efficiency of producing hydrogen water, the electrolytic cell 1 can adopt a plurality of cascading modes. When it is desired to obtain higher dissolved hydrogen, the water circuits of the electrolytic cells 1 can be connected in series; if it is desired to increase the water flow rate, the water circuits of the electrolytic cells 1 can be connected in parallel. As for the electrode power supply voltage of each electro...

Embodiment 2

[0046] The supersaturated hydrogen-rich water dispenser of this embodiment is an improvement on the basis of Embodiment 1, and the differences from Embodiment 1 are: 1) The circulation loop 2 of this embodiment is connected in series with a filter element. A large number of irregular micropores in the filter element can block and divide the water flow, making it tend to become a disordered turbulent flow, which can make the gas dissolve more fully in the water, and generate more nano bubbles with smaller particle size. This is especially effective for hydrogen, which is poorly soluble in water.

[0047] 2) A circulation control unit is provided on the circulation loop 2 of this embodiment, and the circulation control unit includes a circulation check valve, a flow control valve, a pressure stabilizing valve or a combination thereof, and the like.

[0048] 3) A water outlet control unit is provided on the water outlet pipe 3, and the water outlet control unit includes a circula...

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Abstract

The invention relates to a supersaturated hydrogen-rich drinking fountain and belongs to the technical field of mixed operation of general physical or chemical methods or devices. The drinking fountain comprises a pure water tank, a circulating pump and an electrolytic tank, wherein the electrolytic tank comprises an isolating membrane as well as negative and positive electrolysis chambers, negative and positive electrodes are arranged at the two sides of the isolating membrane, multiple comb-shaped teeth directing to the isolating membrane are fixed on the inner walls of the negative and positive electrolysis chambers, the water inlet / outlet of the negative electrolysis chamber and the water inlet / outlet of the circulating pump are sequentially communicated in series by virtue of a pipeline and form a circulation loop, the circulation loop is connected with a water intake control unit in series, and the water inlet of the water intake control unit is communicated with the pure water tank. The drinking fountain provided by the invention is convenient and exquisite in appearance and easy to operate, can maintain extremely high hydrogen dissolution concentration in water, is slow inattenuation and has reducibility, no oxidizing substance and no byproduct, water quality is weakly alkaline, production is rapid, water flows out immediately, the water is produced and used at the same time, water quality security is guaranteed, and no bacteria breeds.

Description

technical field [0001] The invention relates to a water dispenser, which belongs to the technical field of general physical or chemical methods or mixing operations of devices. Background technique [0002] Water dispensers are home appliances. However, most of the water dispensers currently on the market only have the functions of water purification and water storage, but cannot provide drinking water with high dissolved hydrogen. The current water dispensers on the market have the following disadvantages: [0003] 1) The water purification effect is not up to standard, and there is a risk of residual chlorine. Even if it meets the drinking water standard, the water dispenser is very large, occupies a large area, and is cumbersome to use; [0004] 2) Most water dispensers have a small water output, which is buffered in the water tank, making it difficult to escape the growth of bacteria, thus affecting the quality of drinking water; [0005] 3) What's more, through magneti...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C02F1/461C02F1/68C25B1/10C25B9/08C25B9/19
CPCC25B9/00C25B15/08C02F1/46104C02F1/46109C02F1/68C02F2001/46138C25B1/04C25B9/73C25B9/19B01F23/23B01F23/235B01F23/2366B01F25/4522B01F25/51B01F35/211B01F35/221B01F35/2213B01F35/2211Y02E60/36
Inventor 阮树堃滕茂友李烨
Owner DALIAN SHUANGDI INNOVATIVE TECH RES INST