Preparation method of small-molecule group healthy water and application thereof in relieving alcoholism

By combining multiple energy fields and interacting with metasilicic acid fragments, highly efficient and stable small molecule cluster water was prepared, solving the problem of applying healthy water in hangover relief products and achieving efficient and economical hangover relief and sobering effects.

CN122166945APending Publication Date: 2026-06-09FUJIAN OSPRING TECH & DEV

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
FUJIAN OSPRING TECH & DEV
Filing Date
2026-01-30
Publication Date
2026-06-09

AI Technical Summary

Technical Problem

Existing technologies lack applications for preparing healthy water into small molecule cluster water for use in hangover relief products. Furthermore, existing methods for preparing small molecule cluster water are energy-intensive and inefficient, failing to meet the demands of large-scale, stable production.

Method used

By employing a combination of multiple energy fields and the interaction of far-infrared waves and terahertz waves, along with metasilicic acid fragments, zinc, strontium, and selenium elements, a device and method for preparing small molecule cluster water that is continuously operable, highly efficient, economical, has a large processing capacity, and good stability is developed for use in hangover remedies.

Benefits of technology

It achieves efficient preparation and stability of small molecule cluster water, which can be effectively used for sobering up and has excellent solubility and permeability, meeting the needs of large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to a method for preparing small-molecule cluster healthy water and its application in hangover relief. The method includes a preparation apparatus comprising a healthy water purifier, a stirring pot, a spiral tank, a coarse filter, a fine filter, a circulating pump, and an intermediate circulating water tank. The healthy water purifier, stirring pot, spiral tank, coarse filter, and fine filter are sequentially connected in one line, while the coarse filter, fine filter, circulating pump, intermediate circulating water tank, and stirring pot are connected in another line. This invention breaks through existing technologies for preparing small-molecule cluster water by combining multiple energy fields, including selecting stronger energy fields such as far-infrared waves and terahertz waves, and their interactions. It provides a continuously operable, highly efficient, economical, high-capacity, and stable apparatus and method for preparing small-molecule cluster water, as well as its application in hangover relief products.
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Description

Technical Field

[0001] This invention relates to a method for preparing small molecule cluster healthy water and its application in relieving hangovers. Background Technology

[0002] In existing technologies, the preparation of small-molecule water requires sufficient energy to break the hydrogen bonds connecting water molecules, thus dispersing large water molecule clusters into smaller ones. For example, patents CN202210784230.6 ("Use of Small-Molecular Water in the Preparation of Hangover Relief Products") and CN201410440102.5 ("A Water Treatment Method and System for Preparing Stable Small-Molecular-Cluster Water") both point out that many methods exist for activating water, i.e., preparing small-molecule water, including magnetization, high temperature, biological methods, and oscillation. These energy forms can all achieve the goal of breaking down large water molecule clusters. However, both of these patents employ a combination of a strong magnetic field and a far-infrared field based on tourmaline to achieve the preparation of small-molecule water. The innovative TRIZ theory suggests that the evolutionary stage and potential future direction of a technological system can be determined based on the energy form it employs. The aforementioned patented technology uses a "strong magnetic field + far-infrared field" to prepare small molecule cluster water. Therefore, the possible evolutionary direction should be to select a stronger energy form or energy combination as the preferred target.

[0003] On the one hand, zinc, strontium, and selenium are beneficial trace elements for the human body. So-called healthy water refers to water that meets the latest national group standard "Standards for Healthy Drinking Water Quality" (TCAPS-2021) issued in 2021. The most significant feature of the "Standards for Healthy Drinking Water Quality" is its affirmation of beneficial trace elements such as zinc, strontium, and selenium, and their recommended content ranges: for example, the limit for zinc is 0.05-1.0 mg / L, with a target value of 0.2-1.0 mg / L; its main functions are: enhancing immunity, promoting wound healing, and protecting vision. The limit for strontium is 0.2-10.0 mg / L, with a target value of 5.0-10.0 mg / L; its main functions are: promoting bone growth and development, and preventing and treating osteoporosis. The limit for selenium is 0.01-0.05 mg / L, with a target value of 0.01-0.05 mg / L. Its main functions include protecting cell membrane integrity, enhancing immunity, helping maintain nerve sensitivity, anti-oxidation, assisting in the prevention of cardiovascular disease, protecting pancreatic cells, and lowering blood sugar. However, existing technologies do not disclose the application of preparing healthy water into small molecule clusters for use in hangover remedies.

[0004] On the other hand, in patent application number CN201821308409.X, entitled "A Metasilicic Acid Addition and Mixing Device," the patent states that metasilicic acid, also known as silicic acid, is one of the nine trace elements in the national standard for identifying mineral water. Its main function is to protect the normal function of the cardiovascular system, preventing cardiovascular diseases caused by a deficiency of metasilicic acid in the human body, such as arteriosclerosis and coronary heart disease. Therefore, this case arises to provide a device and method for preparing small molecule cluster water that is continuously operable, highly efficient, economical, has a large processing capacity, and good stability, as well as the application of small molecule cluster health water in hangover relief products. Summary of the Invention

[0005] This invention improves upon the above-mentioned problems. Specifically, the technical problem to be solved by this invention is to provide a method for preparing small molecule cluster healthy water and its application in hangover relief. By combining multiple energy fields and using the interaction of far-infrared waves and terahertz waves with stronger energy fields, a device and method for preparing small molecule cluster water that can be operated continuously, has high generation efficiency, good economy, large processing capacity, and good stability is provided, as well as its application in hangover relief products.

[0006] The present invention is configured as follows: it includes a preparation device, which includes a healthy water purifier, a mixing pot, a spiral trough, a coarse filter, a fine filter, a circulating pump, and an intermediate circulating water tank. The healthy water purifier, the mixing pot, the spiral trough, the coarse filter, and the fine filter are connected in sequence to form one line, while the coarse filter, the fine filter, the circulating pump, the intermediate circulating water tank, and the mixing pot are connected to form another line. The preparation method includes the following steps: (1) Raw water enters the healthy water purifier through the inlet pipe, and the healthy water containing zinc, strontium and selenium produced by filtration and purification is introduced into the mixing pot. Clean metasilicic acid mineral fragments are poured into the mixing pot, the mixing pot is heated and the mixer in the mixing pot is started to slurry. The temperature is controlled at 100°C-120°C and the operation time is 1-2 hours; (2) During the mixing operation in the mixing pot, under the action of the mechanical field, the far-infrared material in the mixing paddle jacket of the mixing pot radiates strong far-infrared rays with the assistance of the thermal field in the mixing pot, and resonates with the water at the same frequency to produce 65-85 Hz small molecular water clusters; at the same time, most of the metasilicic acid fragments are heated and decomposed and enter the water to form a slurry; (3) The mixed slurry enters the spiral groove again, and the mixed slurry While being slowly pushed forward, it receives terahertz wave irradiation from the terahertz wave generator and is heated by the accompanying terahertz wave thermal field. The thermal field temperature is 80-90℃. With the assistance of the thermal field from the far-infrared material in the spiral groove wall interlayer, it radiates more intense far-infrared rays. Both resonate with the water at the same frequency, promoting the generation of stable small molecular cluster healthy water at 40-70 Hz and the deep dissolution of metasilicic acid. The working time of the spiral groove is controlled at 20-50 minutes. (4) The mixed slurry is then filtered twice by the coarse filter and the fine filter. The filter residue from the coarse and fine filters is returned to the intermediate circulating water tank by the circulating pump. It can be added to the mixing pot for reuse in a timely and appropriate manner. After fine filtration, the small molecular cluster water rich in zinc, strontium, selenium and metasilicic acid can be used as the main material for hangover relief products.

[0007] Furthermore, the lower part of the mixing pot is equipped with an electric heater, the middle part of the mixing pot is equipped with a stirring paddle, the stirring paddle is provided with a stirring paddle jacket, the stirring paddle jacket is filled with a far-infrared material layer A mainly composed of tourmaline, the upper part of the mixing pot is equipped with a mixing pot lid, and a stirring motor for driving the stirring paddle to rotate is installed on the mixing pot lid.

[0008] Furthermore, the upper part of the mixing pot cover is provided with a water inlet, a circulating water inlet and a feeding port, and the lower part of the mixing pot is provided with a discharge pipe A with a gate A. The two ends of the discharge pipe A are respectively connected to the mixing pot and the spiral groove, and the gate A is set inside the discharge pipe A.

[0009] Furthermore, the spiral groove includes a U-shaped groove plate, the lower part of which is U-shaped, and an upper plate is installed on the upper part of the U-shaped groove plate. At least two terahertz generators and an exhaust pipe are installed on the upper plate. End caps are provided on both sides of the U-shaped groove plate, and a spiral shaft driven by a spiral motor is provided between the two end caps. Spiral blades are distributed on the spiral shaft. A U-shaped groove plate inlet is provided on the upper side of one side of the U-shaped groove plate for connecting to the discharge pipe A of the mixing tank. A discharge pipe B with a gate B is provided on the lower side of the other side of the U-shaped groove plate for connecting to the input end of the coarse filter tank. The gate B is located inside the discharge pipe B.

[0010] Furthermore, a trough interlayer is provided on the inner side of the U-shaped trough plate, and the trough interlayer is filled with a far-infrared material layer B, mainly composed of tourmaline.

[0011] Furthermore, the coarse filter tank is equipped with multiple coarse filters, and the fine filter tank is equipped with multiple fine filters. A connecting pipeline is provided between the output end of the coarse filter and the input end of the fine filter tank. An intermediate pump is provided on the connecting pipeline. The slurry is filtered sequentially through the coarse filter of the coarse filter tank and the fine filter of the fine filter tank before being output.

[0012] Furthermore, the coarse filter tank has a coarse filter residue collection tank at its coarse filter discharge port, and the fine filter tank has a fine filter residue collection tank at its fine filter discharge port. The coarse filter residue collection tank and the fine filter residue collection tank are connected to the intermediate circulating water tank via a circulation pipeline. The intermediate circulating water tank is connected to the mixing pot via a return liquid pipeline. The circulation pump is installed on the circulation pipeline.

[0013] Furthermore, the zinc content in the healthy water produced by the healthy water purifier is required to be within a limit of 0.05-1.0 mg / L, with a target value of 0.2-1.0 mg / L; the strontium content is required to be within a limit of 0.2-10.0 mg / L, with a target value of 5.0-10.0 mg / L; and the selenium content is required to be within a limit of 0.01-0.05 mg / L, with a target value of 0.01-0.05 mg / L.

[0014] Furthermore, small molecule cluster healthy water can be prepared using the methods described above.

[0015] Furthermore, small molecule cluster health water is used in the treatment and relief of hangovers.

[0016] Compared with existing technologies, the present invention has the following advantages: The device has a simple structure, reasonable design, and is easy to use. It introduces metasilicic acid fragments, zinc gluconate, potassium hydroxide, and healthy water rich in zinc, strontium, and selenium into a mixing tank for heating and slurrying. At the same time, it receives far-infrared radiation from the jacket of the stirring paddle, which resonates with the water at the same frequency, promoting the fragmentation and pyrolysis of metasilicic acid particles. After the slurry enters the spiral tank, it receives multiple radiations from terahertz waves, thermal fields, and far-infrared waves while being pushed forward by the spiral, which resonates with the water at the same frequency, promoting the dissolution of smaller and more stable small molecular clusters of healthy water and metasilicic acid. After coarse filtration and fine filtration, the concentrated slurry residue is returned to the intermediate tank for recycling. The finely filtered product is healthy water rich in small molecular clusters of metasilicic acid, which can be used for sobering up. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of an embodiment of the present invention; Figure 2 for Figure 1 Sectional view AA in the middle; In the diagram: 1-Healthy Water Purifier; 2-Mixing Pot, 21-Mixing Pot Cover, 211-Water Inlet, 212-Circulating Water Inlet, 213-Feeding Port, 22-Mixing Paddle, 23-Electric Heater, 24-Mixing Motor, 25-Discharge Pipe A with Gate A; 3-Spiral Groove, 31-Terahertz Wave Generator, 32-Exhaust Pipe, 33-Upper Plate of Groove, 34-Far Infrared Material Layer B, 35-Spiral Shaft, 36-U-Shaped Groove Plate, 37-Discharge Pipe B with Gate B; 4-Coarse Filter Tank, 41-Coarse Filter, 42-Coarse Filter Sludge Collection Tank, 43-Intermediate Pump; 5-Fine Filter Tank, 51-Fine Filter, 52-Fine Filter Sludge Collection Tank; 6-Circulating Pump, 7-Intermediate Circulating Water Tank. Detailed Implementation

[0018] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0019] Example 1: As Figure 1-2 As shown, the present invention provides a method for preparing small molecule cluster healthy water, including a preparation device. The preparation device includes a healthy water purifier 1, a stirring pot 2, a spiral trough 3, a coarse filter 4, a fine filter 5, a circulating pump 6, and an intermediate circulating water tank 7. The healthy water purifier, stirring pot, spiral trough, coarse filter, and fine filter are connected in sequence to form one line, and the coarse filter, fine filter, circulating pump, intermediate circulating water tank, and stirring pot are connected to form another line. The preparation method includes the following steps: (1) Raw water enters the healthy water purifier through the inlet pipe, and the healthy water containing zinc, strontium and selenium produced by filtration and purification is introduced into the mixing pot. Clean metasilicic acid mineral fragments are poured into the mixing pot, the mixing pot is heated and the mixer in the mixing pot is started to slurry. The temperature is controlled at 100°C-120°C and the operation time is 1-2 hours; (2) During the mixing operation in the mixing pot, under the action of the mechanical field, the far-infrared material in the mixing paddle jacket of the mixing pot radiates strong far-infrared rays with the assistance of the thermal field in the mixing pot, and resonates with the water at the same frequency to produce 65-85 Hz small molecular water clusters; at the same time, most of the metasilicic acid fragments are heated and decomposed and enter the water to form slurry; (3) The mixed slurry enters the spiral groove again, and the mixed slurry is slowly pushed While being moved forward, it receives terahertz wave irradiation from the terahertz wave generator and the accompanying thermal field heating of the terahertz wave. The thermal field temperature is 80-90℃. With the assistance of the thermal field from the far-infrared material in the spiral groove wall interlayer, it radiates more intense far-infrared rays. Both resonate with the water at the same frequency, promoting the generation of stable small molecular cluster healthy water at 40-70 Hz and the deep dissolution of metasilicic acid. The operation time of the spiral groove is controlled at 20-50 minutes. (4) The mixed slurry is then filtered twice through the coarse filter and the fine filter. The filter residue from the coarse and fine filters is returned to the intermediate circulating water tank by the circulating pump. It can be added to the mixing pot for reuse in a timely and appropriate manner. After fine filtration, the small molecular cluster water rich in zinc, strontium, selenium and metasilicic acid, namely the terminal fine filtrate, can be used as the main material for hangover relief products.

[0020] During preparation, in step (1), metasilicic acid fragments (water after soaking metasilicic acid fragments for two weeks when used in the laboratory), zinc gluconate, potassium hydroxide, and healthy water rich in zinc, strontium, and selenium can be introduced into a mixing pot.

[0021] In this embodiment of the invention, an electric heater 23 is provided at the bottom of the mixing pot, and a stirring paddle 22 is installed in the middle of the mixing pot. The stirring paddle includes a stirring shaft and multiple blades distributed on the stirring shaft. A stirring paddle jacket is provided inside the stirring paddle, and a far-infrared material layer A, mainly composed of tourmaline, is filled inside the stirring paddle. A mixing pot cover 21 is provided at the top of the mixing pot, and a stirring motor 24 for driving the stirring paddle to rotate is installed on the mixing pot cover.

[0022] The upper part of the mixing pot lid is provided with a water inlet 211, a circulating water inlet 212 and a feeding port 213. The feeding port is designed to facilitate the addition of metasilicic acid fragments or particles. The water inlet 211 and the circulating water inlet 212 can be used to introduce healthy water or circulating water, respectively. The lower side of the mixing pot is provided with a discharge pipe A25 with a gate A. The two ends of the discharge pipe A are connected to the mixing pot and the spiral groove, respectively. The gate A is set inside the discharge pipe A. After the mixing process is completed, the gate of the discharge pipe A is opened to enter the next process.

[0023] The mixing paddle jacket is filled with a far-infrared material layer A, mainly composed of tourmaline, so that it can radiate stronger far-infrared rays while being stirred in a hot environment. The stirring motor drives the mixing paddle to rotate, so as to stir the metasilicic acid fragments and healthy water in the mixing pot. While stirring and impacting, far-infrared rays are radiated. With the cooperation of the electric heating field (100-120°C), a slurry of healthy water and metasilicic acid with 65-85 Hz small molecular clusters can be formed in 1 to 2 hours.

[0024] In this embodiment of the invention, the spiral groove 3 includes a U-shaped groove plate 36. The bottom of the U-shaped groove plate is U-shaped, and an upper groove plate 33 is installed on the top of the U-shaped groove plate. At least two terahertz generators 31 and an exhaust pipe 32 are installed on the upper groove plate. The terahertz generators are used to generate terahertz waves to radiate water and generate heat, thereby activating the water. The exhaust pipe 32 helps to discharge excess hot air generated by the cooling fan of the terahertz wave generator.

[0025] The U-shaped trough plate is provided with end caps on both sides, and a spiral shaft 35 driven by a spiral motor is provided between the two end caps. Spiral blades are distributed on the spiral shaft. A U-shaped trough plate inlet is provided on the upper side of one side of the U-shaped trough plate for connecting to the discharge pipe A of the mixing pot. A discharge pipe B37 with a gate plate B is provided on the lower side of the other side of the U-shaped trough plate for connecting to the input end of the coarse filter tank. The gate plate B is set inside the discharge pipe B.

[0026] In this embodiment of the invention, a groove interlayer is provided on the inner side of the U-shaped groove plate, and the groove interlayer is filled with a far-infrared material layer B34 mainly composed of tourmaline.

[0027] Because the U-shaped trough plate 36 has a sandwich layer, the cavity of which is filled with a far-infrared material layer B34 mainly composed of tourmaline. The far-infrared material can generate a far-infrared field, so that the terahertz generator 31 can radiate terahertz waves, and at the same time generate an 80-90°C heat field, causing the far-infrared material in the sandwich layer of the U-shaped trough plate to radiate stronger and more far-infrared rays. Thus, four energy fields are formed that support each other in function, realizing the transfer of energy, disintegration of objects, stirring of mixtures, and heat transfer to water, resonance at the same frequency, deep sterilization of water, and promotion of the generation of more stable small molecule clusters of water rich in zinc, strontium, and selenium at 40-70 Hz and deep dissolution of metasilicic acid, forming a uniformly mixed, smaller, more stable sterile mixture of zinc, strontium, and selenium-rich small molecule clusters of water and metasilicic acid.

[0028] When the gate B in the discharge pipe B below the other side of the U-shaped trough is opened, the slurry to be irradiated can be output to the coarse filter tank 4; the slurry is slowly advanced in the spiral trough 3, receiving uniform irradiation from terahertz waves and far-infrared waves, and the residence time is controlled to be 20-50 minutes.

[0029] In this embodiment of the invention, the coarse filter tank is provided with a plurality of coarse filters 41, the fine filter tank 5 is provided with a plurality of fine filters 51, a connecting pipeline is provided between the output end of the coarse filter and the input end of the fine filter tank, and an intermediate pump 43 is provided on the connecting pipeline. The slurry is output after being filtered by the coarse filter of the coarse filter tank and the fine filter of the fine filter tank in sequence.

[0030] In this embodiment of the invention, the coarse filter tank is provided with a coarse filter residue collection tank 42 at the coarse filter residue discharge port, and the fine filter tank is provided with a fine filter residue collection tank 52 at the fine filter residue discharge port. The coarse filter residue collection tank, the fine filter residue collection tank and the intermediate circulating water tank are connected by a circulation pipeline. The intermediate circulating water tank and the stirring pot are connected by a return liquid pipeline. The circulation pump is installed on the circulation pipeline.

[0031] The coarse filter can be made of a porous filter tube wrapped with non-woven fabric. It relies on the intermediate pump 43 for suction filtration. The relatively clean liquid after filtration enters the fine filter tank 5 for further filtration. A small amount of coarse filtrate and filter residue retained on the non-woven fabric surface flows into the coarse filtrate collection tank. Finally, it is pumped to the circulating water tank 7 by the circulation pump for recycling. The fine filtrate after filtration by the fine filter is stored in a centralized manner and can be used as the main material for sobering up. The small amount of remaining fine filtrate flows into the fine filtrate collection tank and is then pumped to the circulating water tank 7 by the circulation pump for recycling.

[0032] The filtrate can be used to form healthy water with small molecular clusters rich in metasilicic acid. After centralized storage, it can be bottled or packaged in barrels to form a hangover remedy product for market users.

[0033] In this embodiment of the invention, the zinc content in the healthy water produced by the healthy water purifier is required to be within a limit of 0.05-1.0 mg / L, with a target value of 0.2-1.0 mg / L; the strontium content is required to be within a limit of 0.2-10.0 mg / L, with a target value of 5.0-10.0 mg / L; and the selenium content is required to be within a limit of 0.01-0.05 mg / L, with a target value of 0.01-0.05 mg / L.

[0034] Healthy water purifiers are a current technology. They are made by adding sintered particles containing minerals such as zinc, strontium, and selenium to conventional self-produced water purifiers. The purified water is filtered and slowly released, and meets the requirements of the "Standards for Healthy Drinking Water Quality", such as the requirements for healthy water quality content.

[0035] In this embodiment of the invention, small molecule cluster healthy water is prepared by the method described above.

[0036] In this embodiment of the invention, small molecule cluster health water is used for relieving hangovers and sobering up.

[0037] Example 2: Based on Example 1 of the present invention, specifically, the preparation device includes a healthy water purifier 1, a stirring pot 2, a spiral trough 3, a coarse filter tank 4, a fine filter tank 5, a circulating pump 6, and an intermediate circulating water tank 7. The healthy water purifier, stirring pot, spiral trough, coarse filter tank, and fine filter tank are connected in sequence to form one line, while the coarse filter tank, fine filter tank, circulating pump, intermediate circulating water tank, and stirring pot are connected to form another line. The specific preparation method includes the following steps: (1) First, close the discharge pipe A25 with gate A at the bottom of the mixing pot; pass the raw water into the healthy water purifier 1 through the water inlet pipe, and introduce the healthy water containing zinc, strontium and selenium elements produced by filtration and purification into the mixing pot 2 through the water inlet 211 on the mixing pot cover 21; according to the specific conditions of the processing site, add (or do not add) the circulating water of the intermediate circulating water tank into the mixing pot 2 through the circulating water inlet 212 on the mixing pot cover 21; pour the clean metasilicic acid fragments or particles into the pot through the feeding port 213 on the mixing pot cover 2; at the same time, turn on the electric heater at the bottom of the mixing pot and start the stirring motor to drive the mixing pulp to crush and pulverize, control the temperature at 100-120°C, and the operation time is 1-2 hours.

[0038] (2) When stirring in the mixing pot, the stirring paddle is used to stir and impact, that is, under the action of the mechanical field, the mixture is stirred and broken to form a solution; at the same time, the far-infrared material mainly composed of tourmaline from the jacket of the stirring paddle radiates strong far-infrared rays under the help of the heat field in the pot, which resonates with the water at the same frequency, producing 65-85 Hz small molecule cluster water and sterilizing the water; at the same time, the super permeability, solubility, emulsification and transportability of the small molecule cluster water promotes the further pulverization and dissolution of the metasilicic acid fragments or particles impacted by stirring, and enters the healthy water of small molecule clusters, finally forming a mixed slurry of healthy water of small molecule clusters and metasilicic acid.

[0039] (3) Open the discharge pipe A25 with gate A at the bottom of the mixing pot 2, and open the discharge pipe B37 with gate B on the spiral groove 3 after an appropriate delay; the mixed slurry enters the spiral groove 3, and the mixed slurry is pushed forward and stirred by the spiral blades on the spiral shaft 3. At the same time, it receives terahertz wave irradiation generated by the terahertz generator that has been powered on, as well as the heat field (80-90℃) associated with the terahertz wave. At the same time, the exhaust pipe is started; in addition, the far-infrared material mainly composed of tourmaline from the interlayer of the tank not only has a certain heat insulation, but more importantly, it radiates stronger far-infrared rays with the help of the heat field in the tank. The two resonate with the water at the same frequency and deeply sterilize the water, generating healthy water with 40-70 Hz sterile and more stable small molecular clusters rich in metasilicic acid; control the pushing speed of the slurry by the spiral blades to ensure that the residence time in the spiral groove is 20-50 minutes.

[0040] (4) After that, the small molecule cluster polysaccharide slurry is filtered twice by the coarse filter tank 4, the water pump 43 and the fine filter tank 5. The final purified liquid output from the fine filter tank is used as the main material of the small molecule cluster healthy aquatic products. It is then packaged in barrels or bottles and put on the market for users. The concentrated slurry and filter residue produced by coarse and fine filtration are respectively collected in the coarse filter residue collection tank 42 and the fine filter residue collection tank 52, and then pumped by the circulation pump 6 and returned to the intermediate circulation tank 7, which can be recycled to the mixing pot again.

[0041] Unless otherwise stated, if any of the technical solutions disclosed in this invention specify a numerical range, then the disclosed numerical range is a preferred numerical range. Anyone skilled in the art should understand that the preferred numerical range is merely one among many feasible numerical values ​​that has a more obvious or representative technical effect. Because there are many numerical values, it is impossible to list them all. Therefore, this invention discloses only some numerical values ​​to illustrate the technical solutions of this invention. Furthermore, the numerical values ​​listed above should not constitute a limitation on the scope of protection of this invention.

[0042] If the terms "first" or "second" are used in this document to specify components, those skilled in the art should know that the use of "first" or "second" is merely for the purpose of distinguishing components in description, and unless otherwise stated, the above terms have no special meaning.

[0043] Furthermore, if the present invention discloses or relates to mutually fixedly connected components or structural parts, then unless otherwise stated, a fixed connection can be understood as: a detachable fixed connection (e.g., using bolts or screws), or a non-detachable fixed connection (e.g., riveting, welding). Of course, mutually fixed connections can also be replaced by an integral structure (e.g., manufactured using a casting process) (except where it is obviously impossible to use an integral molding process).

[0044] In addition, unless otherwise stated, the terms used in any of the technical solutions disclosed in this invention to indicate positional relationships or shapes include states or shapes that are similar to, close to, or approximate with those states or shapes.

[0045] Any component provided by this invention can be assembled from multiple individual components or can be a single component manufactured by a one-piece molding process.

[0046] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them; although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications can still be made to the specific implementation of the present invention or equivalent substitutions can be made to some technical features without departing from the spirit of the technical solutions of the present invention, and all such modifications and substitutions should be covered within the scope of the technical solutions claimed in the present invention.

Claims

1. A method for preparing small molecule cluster healthy water, characterized in that, The preparation device includes a healthy water purifier (1), a mixing pot (2), a spiral trough (3), a coarse filter (4), a fine filter (5), a circulating pump (6), and an intermediate circulating water tank (7). The healthy water purifier, the mixing pot, the spiral trough, the coarse filter, and the fine filter are connected in sequence to form one line, while the coarse filter, the fine filter, the circulating pump, the intermediate circulating water tank, and the mixing pot are connected to form another line. The preparation method includes the following steps: (1) Raw water enters the healthy water purifier through the inlet pipe, and the healthy water containing zinc, strontium and selenium produced by filtration and purification is introduced into the mixing pot. Clean metasilicic acid mineral fragments are poured into the mixing pot, the mixing pot is heated and the mixer in the mixing pot is started to slurry. The temperature is controlled at 100°C-120°C and the operation time is 1-2 hours; (2) During the mixing operation in the mixing pot, under the action of the mechanical field, the far-infrared material in the mixing paddle jacket of the mixing pot radiates strong far-infrared rays with the assistance of the thermal field in the mixing pot, and resonates with the water at the same frequency to produce 65-85 Hz small molecular water clusters; at the same time, most of the metasilicic acid fragments are heated and decomposed and enter the water to form a slurry; (3) The mixed slurry enters the spiral groove again, and the mixed slurry While being slowly pushed forward, it receives terahertz wave irradiation from the terahertz wave generator and is heated by the accompanying terahertz wave thermal field. The thermal field temperature is 80-90℃. With the assistance of the thermal field from the far-infrared material in the spiral groove wall interlayer, it radiates more intense far-infrared rays. Both resonate with the water at the same frequency, promoting the generation of stable small molecular cluster healthy water at 40-70 Hz and the deep dissolution of metasilicic acid. The working time of the spiral groove is controlled at 20-50 minutes. (4) The mixed slurry is then filtered twice by the coarse filter and the fine filter. The filter residue from the coarse and fine filters is returned to the intermediate circulating water tank by the circulating pump. It can be added to the mixing pot for reuse in a timely and appropriate manner. After fine filtration, the small molecular cluster water rich in zinc, strontium, selenium and metasilicic acid can be used as the main material for hangover relief products.

2. The method for preparing small molecule cluster healthy water according to claim 1, characterized in that, The lower part of the mixing pot (2) is provided with an electric heater (23), the middle part of the mixing pot is provided with a stirring paddle (22), the stirring paddle is provided with a stirring paddle jacket, the stirring paddle jacket is filled with a far-infrared material layer A mainly composed of tourmaline, the upper part of the mixing pot is provided with a mixing pot lid (21), and a stirring motor (24) for driving the stirring paddle to rotate is installed on the mixing pot lid.

3. The method for preparing small molecule cluster healthy water according to claim 2, characterized in that, The upper part of the mixing pot cover is provided with a water inlet (211), a circulating water inlet (212) and a feeding inlet (213). The lower part of the mixing pot is provided with a discharge pipe A (25) with a gate plate A. The two ends of the discharge pipe A are connected to the mixing pot and the spiral groove respectively. The gate plate A is set inside the discharge pipe A.

4. The method for preparing small molecule cluster healthy water according to claim 1, characterized in that, The spiral groove (3) includes a U-shaped groove plate (36), the bottom of the U-shaped groove plate is U-shaped, and a groove upper plate (33) is installed on the top of the U-shaped groove plate. At least two terahertz generators (31) and an exhaust pipe (32) are installed on the groove upper plate. End caps are provided on both sides of the U-shaped groove plate, and a spiral shaft (35) driven by a spiral motor is provided between the two end caps. Spiral blades are distributed on the spiral shaft. A U-shaped groove plate feed port is provided on one side of the U-shaped groove plate to connect with the discharge pipe A of the mixing pot. A discharge pipe B (37) with a gate plate B is provided on the other side of the U-shaped groove plate to connect with the input end of the coarse filter tank. The gate plate B is set inside the discharge pipe B.

5. The method for preparing small molecule cluster healthy water according to claim 4, characterized in that, The inner side of the U-shaped trough plate is provided with a trough interlayer, and the trough interlayer is filled with a far-infrared material layer B (34) mainly composed of tourmaline.

6. The method for preparing small molecule cluster healthy water according to claim 1, characterized in that, The coarse filter tank (4) is equipped with multiple coarse filters (41), and the fine filter tank (5) is equipped with multiple fine filters (51). A connecting pipeline is provided between the output end of the coarse filter and the input end of the fine filter tank. An intermediate pump (43) is provided on the connecting pipeline. The slurry is filtered through the coarse filter of the coarse filter tank and the fine filter of the fine filter tank in sequence before being output.

7. The method for preparing small molecule cluster healthy water according to claim 1, characterized in that, The coarse filter tank has a coarse filter residue collection tank (42) at its coarse filter residue discharge port, and the fine filter tank has a fine filter residue collection tank (52) at its fine filter residue discharge port. The coarse filter residue collection tank, the fine filter residue collection tank and the intermediate circulating water tank are connected by a circulation pipeline. The intermediate circulating water tank and the stirring pot are connected by a return liquid pipeline. The circulation pump is installed on the circulation pipeline.

8. The method for preparing small molecule cluster healthy water according to claim 1, characterized in that, The healthy water produced by the water purifier is required to have the following content limits: zinc 0.05-1.0 mg / L, target 0.2-1.0 mg / L; strontium 0.2-10.0 mg / L, target 5.0-10.0 mg / L; and selenium 0.01-0.05 mg / L, target 0.01-0.05 mg / L.

9. Small molecule cluster healthy water prepared by any one of the preparation methods according to claims 1-8.

10. The application of the small molecule cluster health water according to claim 9 in relieving hangovers and sobering up.