Healthy water house for preparing alkalescent micromolecular purified water

By integrating pure water production, electrolysis, and disinfectant water generation devices into the health water house, the problems of low pH value and wastewater waste in commercially available pure water are solved. It realizes the preparation of weakly alkaline small molecule pure water and disinfectant water, meeting health needs and saving water resources.

CN224147798UActive Publication Date: 2026-04-21刘蕊 +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
刘蕊
Filing Date
2025-04-10
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

In existing technologies, commercially available purified water has a low pH value and is weakly acidic, which is detrimental to health if consumed for a long time. The weakly acidic water produced by electrolysis cannot be sterilized or disinfected, resulting in a waste of water resources.

Method used

Design a healthy water house that includes a pure water production device, an electrolysis device, a weakly alkaline water storage tank, a pure water storage tank, a hypochlorous acid water generator, a wastewater collection tank, and a disinfectant water storage tank. Through an automated control system, tap water is processed into weakly alkaline small molecule pure water and disinfectant water, and wastewater is collected for reuse.

Benefits of technology

It enables the preparation of weakly alkaline small-molecule purified water with good taste and suitable pH value to meet the needs of healthy drinking water, while producing disinfectant water, reducing wastewater discharge, saving water resources and reducing water production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

A healthy water house for preparing alkalescent micromolecular purified water comprises a house body, and a purified water production device, an electrolysis device, an alkalescent water storage tank, a purified water storage tank, a hypochlorous acid water generator, a wastewater collection tank and a disinfectant fluid storage tank which are connected through pipelines are arranged in the house body. The purified water storage tank is connected with a purified water outlet pipe, the weakly alkaline water storage tank is connected with a weakly alkaline water outlet pipe, and the disinfectant fluid storage tank is connected with a disinfectant fluid outlet pipe. According to the utility model, tap water can be prepared into alkalescent micromolecular purified water with good taste and moderate pH value, and hypochlorous acid water with disinfection and sterilization functions can be produced, so that the requirements of people on healthy drinking water and skin cleaning water are met. Meanwhile, a large amount of wastewater generated in the purified water production process and weakly acidic water generated in the electrolysis process can be collected and recycled, and no wastewater is discharged basically, so that water resources are saved, and the water production cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of healthy drinking water technology, and in particular to a healthy water house for preparing weakly alkaline small molecule purified water. Background Technology

[0002] Currently, drinking water typically comes from commercially available tap water, which is boiled before consumption. To obtain healthier drinking water, some businesses install water purification equipment in residential areas to filter and purify tap water into purified water for sale to consumers. However, this purified water has a low pH value and is slightly acidic. Long-term consumption can cause the body's internal environment to become more acidic, which is detrimental to health. Furthermore, the large amount of wastewater generated during the production of purified water is directly discharged, resulting in a waste of water resources.

[0003] To improve the pH value of purified water, existing technologies use the addition of alkaline substances or electrolysis to prepare weakly alkaline water. While adding alkaline substances can raise the pH value, it introduces exogenous chemical substances, affecting the purity of the water. Electrolysis uses the principle of electrolysis to decompose water molecules into hydroxide ions and hydrogen ions, thereby producing weakly alkaline and acidic water. However, existing electrolysis devices also produce weakly acidic water while producing weakly alkaline water. Since the pH value of weakly acidic water is approximately 5.5-6.0, it cannot achieve a sterilization and disinfection effect and is directly discharged, further wasting water resources. Summary of the Invention

[0004] To address the aforementioned problems, this invention aims to provide a healthy water house for preparing weakly alkaline small-molecule purified water, thereby overcoming the shortcomings of existing technologies.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a health water house for preparing weakly alkaline small molecule pure water, comprising a house body, wherein the house body is provided with a pure water production device, an electrolysis device, a weakly alkaline water storage tank, a pure water storage tank, a hypochlorous acid water generator, a wastewater collection tank and a disinfectant water storage tank.

[0006] The inlet of the pure water production device is connected to tap water, the outlet is connected to a pure water storage tank via a pipeline, and the wastewater discharge end is connected to a wastewater collection tank.

[0007] The inlet of the electrolysis device is connected to the pure water storage tank via a pipeline and a first water pump; the outlet of the weakly alkaline small molecule pure water of the electrolysis device is connected to the weakly alkaline water storage tank via a pipeline; and the outlet of the weakly acidic water of the electrolysis device is connected to the wastewater collection tank via a pipeline.

[0008] The inlet of the hypochlorous acid water generator is connected to the wastewater collection tank via a pipeline and a second water pump, and the outlet of the hypochlorous acid water generator is connected to the disinfectant water storage tank via a pipeline.

[0009] The pure water storage tank is connected to a pure water outlet pipe, the weakly alkaline water storage tank is connected to a weakly alkaline water outlet pipe, and the disinfectant water storage tank is connected to a disinfectant water outlet pipe. The outlets of the pure water outlet pipe, the weakly alkaline water outlet pipe, and the disinfectant water outlet pipe are arranged side by side outside the building.

[0010] Furthermore, the building is also equipped with an electrical control system, which controls the automatic operation of the pure water production device, the first water pump, the electrolysis device, the second water pump, and the hypochlorous acid water generator.

[0011] Furthermore, it also includes an automatic water vending system, which includes a pure water vending pump connected in series with the pure water outlet pipe, a weak alkaline water vending pump connected in series with the weak alkaline water outlet pipe, and a disinfection water vending pump connected in series with the disinfection water outlet pipe, as well as a card reader and a QR code payment system respectively installed above the outlets of the pure water, weak alkaline water, and disinfection water; the card reader or QR code payment system automatically controls the pure water vending pump, weak alkaline water vending pump, and disinfection water vending pump to work at timed intervals through the electronic control system to complete the quantitative water vending.

[0012] Preferably, the electrical control system is a PLC control system.

[0013] The advantages of this utility model compared with the prior art are:

[0014] 1. This utility model can prepare tap water into weakly alkaline small molecule pure water with good taste and moderate pH value, and at the same time produce hypochlorous acid water with disinfection and sterilization function, so as to meet people's needs for healthy drinking water and skin cleansing water.

[0015] 2. This utility model can provide purified water, weakly alkaline small molecule purified water, and disinfectant water, which can meet the different needs of community users.

[0016] 3. This utility model collects and reuses a large amount of wastewater generated during the pure water production process and the weakly acidic water generated during the electrolysis process, with virtually no wastewater discharge. This not only saves water resources but also reduces water production costs. Attached Figure Description

[0017] Figure 1 This is a front view structural diagram of the present invention.

[0018] Figure 2 This is a side view of the structure of this utility model.

[0019] Figure 3 This is a schematic diagram illustrating the principle of this utility model. Detailed Implementation

[0020] To enable those skilled in the art to better understand the technical solution of this utility model, the technical solution of this utility model will be further described below in conjunction with the accompanying drawings and embodiments.

[0021] Appendix Figures 1-3 This illustration shows an embodiment of the present invention, comprising a roof 1. The roof 1 houses a purified water production device, an electrolysis device, a weakly alkaline water storage tank, a purified water storage tank, a hypochlorous acid water generator, a wastewater collection tank, and a disinfectant water storage tank. The purified water production device has an inlet, an outlet, and a wastewater discharge end. The inlet is connected to a tap water pipe 2, the outlet is connected to the purified water storage tank via a pipe, and the wastewater discharge end is connected to the wastewater collection tank. The purified water produced by the purified water production device is stored in the purified water storage tank via pipes. Wastewater generated during the purification process is discharged into the wastewater collection tank via pipes. A purified water outlet pipe is connected to the purified water storage tank, and the outlet of the purified water outlet pipe is located outside the roof 1 for users to obtain purified water.

[0022] like Figure 3 As shown, the electrolysis device has a water inlet, a weakly alkaline small-molecule purified water outlet, and a weakly acidic water outlet. The water inlet is connected to a purified water storage tank via a pipeline and a first water pump 3. The weakly alkaline small-molecule purified water outlet is connected to a weakly alkaline water storage tank via a pipeline, and the weakly acidic water outlet is connected to a wastewater collection tank via a pipeline. During electrolysis, purified water is drawn from the purified water storage tank by the first water pump 3 and then electrolyzed. The resulting weakly alkaline small-molecule purified water is stored in the weakly alkaline water storage tank via a pipeline. Simultaneously, the generated weakly acidic water is stored in the wastewater collection tank via a pipeline. A weakly alkaline water outlet pipe is connected to the weakly alkaline water storage tank, and the outlet of this weakly alkaline water outlet pipe is located outside the building, allowing users to obtain weakly alkaline small-molecule water through this outlet.

[0023] like Figure 3 As shown, the hypochlorous acid water generator has an inlet and a disinfectant water outlet. The inlet is connected to a wastewater collection tank via a pipeline and a second water pump 4. The disinfectant water outlet is connected to a disinfectant water storage tank via a pipeline. By starting the second water pump 4, the mixed water of wastewater discharged from the pure water production process and weakly acidic water generated by electrolysis is drawn from the wastewater collection tank into the hypochlorous acid water generator to generate disinfectant water, which is then stored in the disinfectant water storage tank. The disinfectant water storage tank is connected to a disinfectant water outlet pipe, and the outlet of this disinfectant water outlet pipe is located outside the building, allowing users to obtain disinfectant water through this outlet.

[0024] Preferably, the outlets of the pure water outlet pipe, the weak alkaline water outlet pipe, and the disinfectant water outlet pipe are arranged side by side outside the building.

[0025] This utility model is typically designed for unattended, automatic operation, such as... Figure 3 As shown, the building 1 is also equipped with a PLC electrical control system, which controls the automatic operation of the pure water production device, the first water pump 3, the electrolysis device, the second water pump 4, and the hypochlorous acid water generator. Electronic level gauges are preferably installed in the pure water storage tank, the weakly alkaline water storage tank, the wastewater collection tank, and the disinfectant water storage tank. These gauges provide real-time feedback on the water level in each tank and container. When the water level reaches the upper or lower limit, a signal is sent to the electrical control system to initiate or stop water production accordingly.

[0026] When this utility model is operated using a water sales method, it also includes an automatic water sales system, such as... Figure 1 and Figure 3 As shown, the automatic water vending system includes a pure water pump 51 connected in series with the pure water outlet pipe, a weakly alkaline water pump 52 connected in series with the weakly alkaline water outlet pipe, and a disinfectant water pump 53 connected in series with the disinfectant water outlet pipe, as well as a card reader 71 and a QR code payment system 72 respectively installed above the outlets of the pure water, weakly alkaline water, and disinfectant water. The card reader or QR code payment system automatically controls the weakly alkaline water pump, the weakly alkaline water pump, and the disinfectant water pump to operate at set times through the electronic control system to complete the quantitative water dispensing.

[0027] To facilitate water dispensing during water sales, such as Figure 1 As shown, on the exterior of the building 1, there are sequentially arranged a pure water sales window 61, a weakly alkaline water sales window 62, and a disinfectant water sales window 63. The outlets of the pure water outlet pipe, the weakly alkaline water outlet pipe, and the disinfectant water outlet pipe are sequentially arranged in the corresponding windows.

[0028] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Various changes and modifications may be made to this utility model without departing from its spirit and scope of protection, and all such changes and modifications fall within the scope of protection claimed by this utility model.

Claims

1. A health water house for preparing weakly alkaline small molecule pure water, comprising a house body, characterized in that: The building is equipped with a pure water production device, an electrolysis device, a weakly alkaline water storage tank, a pure water storage tank, a hypochlorous acid water generator, a wastewater collection tank, and a disinfectant water storage tank. The inlet of the pure water production device is connected to tap water, the outlet is connected to a pure water storage tank via a pipeline, and the wastewater discharge end is connected to a wastewater collection tank. The inlet of the electrolysis device is connected to the pure water storage tank via a pipeline and a first water pump; the outlet of the weakly alkaline small molecule pure water of the electrolysis device is connected to the weakly alkaline water storage tank via a pipeline; and the outlet of the weakly acidic water of the electrolysis device is connected to the wastewater collection tank via a pipeline. The inlet of the hypochlorous acid water generator is connected to the wastewater collection tank via a pipeline and a second water pump, and the outlet of the hypochlorous acid water generator is connected to the disinfectant water storage tank via a pipeline. The pure water storage tank is connected to a pure water outlet pipe, the weakly alkaline water storage tank is connected to a weakly alkaline water outlet pipe, and the disinfectant water storage tank is connected to a disinfectant water outlet pipe. The outlets of the pure water outlet pipe, the weakly alkaline water outlet pipe, and the disinfectant water outlet pipe are arranged side by side outside the building.

2. The healthy water house according to claim 1, characterized in that: The building is also equipped with an electrical control system, which controls the automatic operation of the pure water production device, the first water pump, the electrolysis device, the second water pump, and the hypochlorous acid water generator.

3. The healthy water house according to claim 2, characterized in that: It also includes an automatic water vending system, which includes a pure water vending pump connected in series with the pure water outlet pipe, a weak alkaline water vending pump connected in series with the weak alkaline water outlet pipe, and a disinfection water vending pump connected in series with the disinfection water outlet pipe, as well as a card reader and a QR code payment system respectively installed above the outlets of the pure water, weak alkaline water, and disinfection water; the card reader or QR code payment system automatically controls the pure water vending pump, weak alkaline water vending pump, and disinfection water vending pump to work at timed intervals through the electronic control system to complete the quantitative water vending.

4. The healthy water house according to claim 2, characterized in that: The electrical control system is a PLC control system.