Preparation device, method and application of low deuterium water facial mask liquid containing zinc
The zinc-containing low-deuterium water facial mask liquid generated through joint intervention solves the problem of volatilization of small molecule cluster water and low-deuterium water during the spraying process, achieving economical and efficient skin care effects, and possessing anti-corrosion, antibacterial and beautifying functions.
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
- 2026-06-05
AI Technical Summary
Existing spray mask liquids contain small molecule clusters of water and low-deuterium water that are prone to volatilization during the spraying process, resulting in the loss of effective ingredients and high costs. They also fail to effectively utilize the skin care benefits of zinc.
A device consisting of a zinc-containing healthy water purifier, a mixing pot, a conditioning tank, a coarse filter, and a fine filter, combined with far-infrared materials and an electric heater, is used to generate stable small-molecule cluster water and low-deuterium water through the combined intervention of mechanical field, thermal field, and far-infrared field, thus preparing a facial mask liquid rich in zinc.
It achieves the stability of small molecule cluster water and the economical production of low-deuterium water, reduces evaporation loss, improves skin care effects, and has anti-corrosion, antibacterial, beautifying and immune-enhancing functions.
Smart Images

Figure CN122141530A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of spray mask technology, and more particularly to an apparatus, method and application for preparing a zinc-containing low-deuterium water mask liquid. Background Technology
[0002] Chinese patent application CN201911137042.9 discloses "A spray mask based on small molecule cluster water and its preparation method." This invention uses 14.05-86.62% small molecule cluster water as a solvent, which is the main material of the spray mask. Small molecule cluster water is composed of 5-8 water molecules and possesses strong penetrating power, strong dissolving power, strong diffusion power, strong volatility, strong transport power, and strong emulsifying power; it is also weakly alkaline. Small molecule cluster water has a high oxygen content (dissolved oxygen greater than 6 mg / L), which can bring more oxygen and nutrients to the body's tissue cells; at the same time, it removes metabolic waste and toxins from cells, offering numerous benefits. Because small water molecule clusters possess energy, they exhibit strong diffusion and penetration properties. In the context of facial mask spraying, the spray distance from the nozzle of the spray device (such as a small spray bottle) to the skin surface (such as the face) is approximately 3-6 cm. The sprayed liquid adheres to the skin surface, allowing the small water molecule clusters, along with their accompanying active ingredients, to penetrate and be absorbed into the skin. This demonstrates its advantages in facial mask application. However, during the spraying process, the mist droplets are exposed to the air, and the high volatility of the small water molecule clusters on the skin surface accelerates the natural evaporation of water and vapor, resulting in a loss of some small water molecule clusters. This affects the effectiveness and efficiency of the small water molecule cluster spray mask. This phenomenon is particularly noticeable in dry or hot weather, representing a deficiency in existing technology.
[0003] The invention patent application CN202010845116.0 discloses "a production process and application of low-deuterium water". This invention explicitly states that the low-deuterium water has an NMR spectral density ≤65Hz. Low-deuterium water is essentially small-molecule cluster water with strong permeability and volatility. While its high permeability is beneficial when used as a facial mask material during spraying, its high volatility is a drawback: water and vapor inevitably evaporate during spraying and when adhering to the skin surface, resulting in a significant loss in the quantity and effectiveness of the mask's main material – a deficiency in existing technology. Furthermore, low-deuterium water has the highest activity, and its preparation or purchase cost is also relatively high. Its high cost would be prohibitive for use in mass-market facial mask products and their processing, another potential shortcoming in existing technology.
[0004] Patent application CN202111122678.3 discloses "A Tremella fuciformis polysaccharide topical facial mask and its preparation method." Besides using Tremella fuciformis polysaccharide, deionized water constitutes the largest proportion and is the main material used in this invention. Patent CN113069396A discloses a hydrating and moisturizing facial mask and its preparation method, also using 70-85% deionized water. According to research, deionized water undergoes special treatment, removing only impurities and harmful substances while retaining the purest state of water molecules (and eliminating beneficial substances), without increasing the energy of the water. This comparison indicates that such technologies also have shortcomings; their formulations are not entirely reasonable, thus weakening the contribution of the excellent properties of Tremella fuciformis polysaccharide to the facial mask product.
[0005] Tremella fuciformis, a traditional food and medicinal ingredient, has become widely available and enjoyed by everyone thanks to successful artificial cultivation techniques. Tremella fuciformis polysaccharides are its active ingredient, rich in natural plant-based colloids, making them viscous and smooth. When used in skincare cosmetics, tremella fuciformis polysaccharides can help repair the epidermis, increase its moisture content, and possess excellent moisturizing and water-locking abilities. These polysaccharides can absorb large amounts of water, maintaining high moisturizing properties under both low and high humidity conditions, increasing the moisture content of the stratum corneum and giving the skin a soft feel; they also prevent moisture evaporation from the skin surface, thus preventing skin aging, promoting the growth of elastic cells, and possessing anti-aging and antioxidant effects. Therefore, they are often used in high-end cosmetics.
[0006] Because Tremella polysaccharide has a high moisturizing and water-retaining capacity, it needs to work closely with water in skincare applications, especially with small molecule cluster water and low-deuterium water. Functionally, they support each other. Small molecule cluster water needs the protection of Tremella polysaccharide to prevent it from evaporating naturally during use. Beneficial elements such as Tremella polysaccharide can be easily penetrated and absorbed into the skin by small molecule cluster water and low-deuterium water. This can make up for the shortcomings of existing mask liquid technology. Therefore, there is a need to provide a moisturizing mask liquid that reduces evaporation, is timely and long-lasting, multi-purpose, and low-cost to meet market demand.
[0007] Zinc is a beneficial trace element for the human body. It promotes skin wound repair, regulates immune cells, and enhances skin immunity. It has long been used as a therapeutic adjuvant in skin care and is easily transported by small-molecule water clusters to maximize its effects. "Healthy water" refers to water that meets the latest national group standard "Standards for Healthy Drinking Water Quality" (TCAPS-2021, implemented on July 1, 2021), which affirms beneficial trace elements such as zinc and their recommended content ranges. For example, the limit for zinc is 0.05-1.0 mg / L, and the target value is 0.2-1.0 mg / L. However, there are no publicly available reports on using healthy water to prepare spray-on facial mask liquids. Therefore, it is necessary to apply a zinc-rich small-molecule water cluster and low-deuterium water to skin care. Summary of the Invention
[0008] The purpose of this invention is to provide an apparatus, method and application for preparing zinc-containing low-deuterium water facial mask liquid. The apparatus and method have the advantages of continuous operation, high production efficiency, good economy, large processing capacity and good stability, and can be applied to spray facial mask liquid products.
[0009] The technical solution of the present invention is as follows: a preparation device for zinc-containing low-deuterium water facial mask liquid, including a stirring pot, a healthy water purifier connected to the stirring pot and a feeding port, an output end of the stirring pot connected to a conditioning tank for mixing with low-deuterium water, an output end of the conditioning tank connected sequentially to a coarse filter tank and a fine filter tank, the coarse filter tank and the fine filter tank being connected to an intermediate circulating water tank via circulation pipelines, and the intermediate circulating water tank being provided with an intermediate water pipe leading to the stirring pot.
[0010] Furthermore, the mixing pot is equipped with a stirring paddle driven by a stirring motor, and the hollow cavity inside the stirring shaft of the stirring paddle is filled with far-infrared material; the bottom of the mixing pot is equipped with an electric heater with built-in far-infrared material.
[0011] Furthermore, the lid of the mixing pot is provided with a water inlet and a circulating water inlet; the water inlet is connected to a healthy water purifier, and the healthy water purifier is provided with a water inlet pipe; the circulating water inlet is connected to a circulating pipeline; and the lower part of the mixing pot body is provided with a discharge pipe with a slide plate connected to the conditioning tank.
[0012] Furthermore, the conditioning tank is provided with a low-deuterium water inlet on the side near the mixing pot, and a discharge port with a gate is provided at the lower part of the other side of the conditioning tank. Several far-infrared baffles are provided at intervals on the upper and lower sides of the conditioning tank, and the far-infrared baffles on the upper and lower sides are staggered. There is a gap between the far-infrared baffle on the upper side and the bottom plate of the conditioning tank, and there is a gap between the far-infrared baffle on the lower side and the top plate of the conditioning tank, so as to form a bent water flow channel in the conditioning tank.
[0013] Furthermore, a coarse filter is installed in the coarse filter tank, and the coarse filter is connected to the fine filter tank via an intermediate pump. A fine filter is installed in the fine filter tank, and an output pipeline for the main material of the mask spraying liquid is connected to the fine filter. A coarse filter residue tank is connected to the coarse filter tank, and a fine filter residue tank is connected to the fine filter tank. The coarse filter residue tank and the fine filter residue tank are respectively connected to a circulation pipeline via a circulation pump.
[0014] A method for preparing a zinc-containing low-deuterium water facial mask liquid includes an apparatus for preparing the zinc-containing low-deuterium water facial mask liquid, comprising the following steps: A. Put the raw water into the healthy water purifier, introduce the zinc-containing healthy water produced by filtration and purification into the mixing pot, pour the clean tremella fragments and additives into the mixing pot, turn on the electric heater at the bottom of the mixing pot and start the mixing paddle to pulverize, control the temperature at 70~90℃, and the working time is 1~2 hours. B. When the stirring paddle inside the mixing pot is stirring and impacting, the far-infrared material filled in the hollow cavity of the stirring shaft radiates strong far-infrared rays under the help of the heat field inside the pot, which sterilizes and disinfects the materials inside the pot, and resonates with the water and the tremella, producing 65~75 Hz small molecular clusters of water as a solute; at the same time, it promotes the dissolution of tremella fragments into tremella short-chain polysaccharides, which, together with the added materials, form a mixed slurry; C. The mixed slurry enters the conditioning tank, and low-deuterium water is injected at the same time. The newly formed mixed slurry flows through the far-infrared baffle set in the conditioning tank to complete the mixing with the low-deuterium water, while promoting the generation of more stable 60-70 Hz small molecular clusters of water and the further dissolution of short-chain polysaccharides from Tremella fuciformis. D. The mixed slurry is then filtered twice, through a coarse filter and a fine filter. The concentrated slurry from the coarse and fine filters is returned to the intermediate circulating water tank via a circulation pipeline, and then added to the mixing pot for further processing and utilization as needed. The slurry after fine filtration is the zinc-containing low-deuterium water facial mask liquid, which becomes the main material of the spray facial mask liquid.
[0015] Furthermore, the aforementioned healthy water purifier adds zinc-containing mineral sintered particles to the water purifier, and produces healthy water that meets the requirements of the "Standards for Healthy Drinking Water Quality" through filtration and slow release.
[0016] Furthermore, the additive contains 3-5% corrosion inhibitor and 2-4% antioxidant by mass.
[0017] Furthermore, after filtration in the coarse filter, the liquid enters the fine filter for further filtration. The small amount of coarse filtrate and filter residue retained is sent to the circulating water tank for recycling through the circulation pipeline. After fine filtration in the fine filter, the liquid is stored centrally and used as the main material for the face mask spray liquid. The small amount of fine filter residue remaining is sent to the circulating water tank through the circulation pipeline for recycling.
[0018] An application of a zinc-containing low-deuterium water facial mask liquid includes a method for preparing a zinc-containing low-deuterium water facial mask liquid, which involves adding 0.5~1.5% jasmine oil to the filtrate output from the fine filtration tank to prepare a fragrant zinc-rich small molecular cluster polysaccharide spray liquid, which is then packaged in barrels or bottles for user use.
[0019] Compared with the prior art, the present invention has the following advantages: 1. This invention utilizes the combined intervention and interaction of multiple energy fields, including mechanical, thermal, and far-infrared fields, generated by stirring and impacting in a mixing tank. This disrupts the hydrogen bonds between water molecules, producing stable small-molecule clusters of water. These clusters, combined with low-deuterium water as a solvent, form the main material for a zinc-rich small-molecule cluster polysaccharide spraying liquid. Simultaneously, the combined intervention of these multiple energy fields promotes the production of more short-chain polysaccharides from *Tremella fuciformis* (silver ear fungus), facilitating deeper dissolution.
[0020] 2. The method for producing small molecule cluster water and low deuterium water facial mask liquid of the present invention is simple, can be continuously produced, has low energy consumption, good economic efficiency, and low preparation cost.
[0021] 3. The small molecule cluster water produced by this invention and the purchased low-deuterium water have good stability and are sterilized by far-infrared radiation. They can maintain the characteristics of small molecule cluster water and tremella polysaccharides for a long time. They also contain zinc, fragrance, antiseptic, antibacterial and anti-inflammatory, beauty and skin care, and immune enhancement formulas, which can make the skin younger, the skin whiter and more radiant, and reduce age spots. They can be used as cosmetics, facial masks and other beauty requirements and usage scenarios. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the apparatus for preparing the zinc-containing low-deuterium water facial mask liquid of the present invention; Figure 2 This is a schematic diagram illustrating the use of the product in small bottles according to the present invention; Figure 3 This is a schematic diagram illustrating the working principle of the product of the present invention. Figure 2 (Central A area) In the diagram: 1-Healthy water purifier, 2-Mixing pot, 21-Pot lid, 211-Water inlet, 212-Circulating water inlet, 213-Feeding port, 22-Mixing paddle, 23-Electric heater, 24-Mixing motor, 25-Discharge pipe with baffle plate, 3-Tempering tank, 31-Far-infrared baffle, 32-Low-deuterium water inlet, 4-Coarse filter tank, 41-Coarse filter, 42-Coarse filter residue tank, 43-Intermediate pump, 5-Fine filter tank, 51-Fine filter, 52-Fine filter residue tank, 6-Circulating pump, 61-Circulating pipeline, 7-Intermediate circulating water tank, 71-Intermediate water pipe. Detailed Implementation
[0023] To make the above features and advantages of the present invention more readily understood, specific embodiments are described below in conjunction with the accompanying drawings, but the present invention is not limited thereto.
[0024] refer to Figures 1 to 3 An apparatus for preparing a zinc-containing low-deuterium water facial mask liquid includes a mixing pot 2, to which a health water purifier 1 with an inlet pipe is connected. The mixing pot 2 is equipped with a feeding port 213 for adding tremella and other additives. A discharge pipe 25 with a baffle plate is installed on the lower side wall of the mixing pot 2. The discharge pipe 25 is connected to a conditioning tank 3 via a pipeline. The conditioning tank 3 is equipped with a low-deuterium water inlet 32 to mix the mixed slurry output from the mixing pot 2 with the low-deuterium water. The output end of the conditioning tank 3 is sequentially connected to a coarse filter tank 4 and a fine filter tank 5. The liquid after fine filtration is the main material of the qualified facial mask spray liquid product. The coarse filter tank 4 and the fine filter tank 5 are respectively connected to an intermediate circulating water tank 7 via a circulation pipeline 61. The intermediate circulating water tank 7 is equipped with an intermediate water pipe 71 leading to the mixing pot 2 for recycling.
[0025] In this embodiment, the healthy water purifier 1 adds zinc-containing mineral sintered particles to a conventional water purifier (such as the multi-mineral element microbubble mineralized water generator disclosed in CN222389667U; or a filter element device and water purifier that generates microbubble water disclosed in CN119898906A). After filtration and slow release, it produces healthy water that meets the requirements of the "Standards for Healthy Drinking Water Quality". For example, the zinc content requirement in the healthy water is 0.05-10.0 mg / L.
[0026] In this embodiment, the lid 21 of the mixing pot 2 is provided with a water inlet 211 and a circulating water inlet 212; the water inlet 211 is connected to the healthy water purifier 1 so that zinc-containing healthy water can be input into the mixing pot 2. The healthy water purifier 1 is provided with a water inlet pipe. The circulating water inlet 212 is connected to a circulation pipeline so that the circulating water can be recycled.
[0027] In this embodiment, to better stir the healthy water, tremella, and additives, an electric heater 23 with built-in far-infrared material is installed at the bottom of the stirring pot 2. The stirring pot 2 contains multiple layers of stirring paddles 22. The upper part of the stirring shaft of the stirring paddle 22 extends through the pot lid 21 and is driven to rotate by a stirring motor 24 installed on the pot lid 21. The hollow cavity inside the stirring shaft of the stirring paddle 22 is filled with far-infrared material, mainly tourmaline or graphene, to control the stirring of tremella fragments and healthy water within the pot, simultaneously stirring and radiating far-infrared rays. With the aid of the thermal field within the pot, the far-infrared material radiates strong far-infrared rays, sterilizing and disinfecting the materials in the pot. It also resonates with the water, breaking the hydrogen bonds of water molecules and resonating with the tremella, shearing the long chains of tremella polysaccharides, thus producing 65-75 Hz small molecule clusters of water and the dissolution of short-chain tremella polysaccharides. This, combined with additives (preservatives, antioxidants, etc.), forms a mixed slurry. At this point, the zinc element remains in the water of the slurry.
[0028] In this embodiment, the conditioning tank 3 has a mixed slurry inlet connected to the discharge pipe 25 with a baffle plate at its lower part on the side near the mixing pot 2, and a low-deuterium water inlet 32 at its upper part on the side near the mixing pot 2, so that the low-deuterium water can be mixed with the input mixed slurry. The conditioning tank 3 has a discharge port with a gate at its lower part on the other side, and the discharge port leads to the coarse filter tank 4 through the discharge pipe. Several far-infrared baffles 31 are spaced apart on the upper and lower sides of the conditioning tank 3, and the far-infrared baffles 31 on the upper and lower sides are staggered; and there is a gap between the far-infrared baffle 31 on the upper side and the bottom plate of the conditioning tank 3, and there is a gap between the far-infrared baffle 31 on the lower side and the top plate of the conditioning tank 3, so that a bent water flow channel is formed in the conditioning tank 3, and the far-infrared baffles can also radiate far-infrared rays. The far-infrared baffle 31 allows the zinc-containing healthy water to receive a second far-infrared irradiation while simultaneously forcing it to bend and flow slowly, promoting better mixing of low-deuterium water with the mixed slurry, facilitating the generation of more stable 60-70 Hz small molecular clusters of water and further dissolution of short-chain polysaccharides from Tremella fuciformis.
[0029] At this point, the 50-65 Hz low-deuterium water participating in the mixing only needs to account for 30-40% of the ear fluid. The zinc content of the low-deuterium water increases from 0 to 3-6 mg / L, forming zinc-containing low-deuterium water. This saves on the amount of low-deuterium water used and the cost of purchasing it. It also allows the zinc element to be carried first, surrounded and protected by the polysaccharides in the tremella fuciformis, while the small-molecule healthy water follows closely behind, working together to complete the task of penetration, carrying, and delivery into the inner layer of the skin (e.g., Figure 3 ).
[0030] In this embodiment, the coarse filter tank 4 is equipped with multiple coarse filters 41, each being a porous filter mesh tube wrapped in non-woven fabric. The output pipe of the coarse filter 41 is connected to the fine filter tank 5 via an intermediate pump 43, so that the relatively clean liquid after coarse filtration is sent into the fine filter tank 5. The fine filter tank 5 is equipped with several fine filters 51, the structure of which can be the same as that of the coarse filter 41, for example, a porous filter mesh tube wrapped in non-woven fabric, but the pores of the non-woven fabric on the fine filter are smaller than those on the coarse filter. The fine filter 51 is connected to an output pipe for the main material of the facial mask spray liquid, so as to output the main material of the facial mask spray liquid product.
[0031] In this embodiment, the coarse filter tank 4 is connected to a coarse filter residue tank 42, and the fine filter tank 5 is connected to a fine filter residue tank 52. The coarse filter residue tank 42 and the fine filter residue tank 52 are respectively connected to the circulation pipeline via the circulation pump 6. After filtration by the coarse filter 41, the small amount of coarse filtrate and filter residue retained on the non-woven fabric surface flows into the coarse filter residue tank 42 and is then pumped by the circulation pump 6 to the circulation water tank 7 for recycling. The small amount of fine filter residue remaining in the fine filter tank 5 flows into the fine filter residue tank 52 and is then pumped by the circulation pump 6 to the circulation water tank 7 for recycling.
[0032] A method for preparing a zinc-containing low-deuterium water facial mask liquid includes an apparatus for preparing the zinc-containing low-deuterium water facial mask liquid, comprising the following steps: A. Close the discharge pipe 25 with a baffle plate at the bottom of the mixing pot 2; introduce raw water into the healthy water purifier 1 through the inlet pipe, and introduce the zinc-containing healthy water produced by filtration and purification into the mixing pot 2 through the inlet 211 on the pot lid 21; depending on the specific processing site conditions, add (or not add) an appropriate amount of circulating water from the intermediate circulating water tank into the mixing pot 2 through the circulating water inlet 212 on the pot lid 21; pour the clean tremella fragments, including the additives, into the mixing pot 2 through the feeding port 213 on the pot lid 2; turn on the electric heater 23 at the bottom of the mixing pot 2 and start the stirring paddle 22 to slurry, controlling the temperature at 70~90℃, with an operation time of 1~2 hours. Specifically, the temperature can be controlled at 75℃ for 2 hours; or the temperature can be controlled at 80℃ for 1.5 hours; or the temperature can be controlled at 90℃ for 1.1 hours.
[0033] B. Inside the mixing pot 2, when the stirring paddle 22 performs stirring and impact, under the action of the mechanical field, the far-infrared material mainly composed of tourmaline, which is filled in the hollow cavity of the stirring shaft, radiates strong far-infrared rays with the help of the thermal field inside the mixing pot 2. This sterilizes and disinfects the materials inside the mixing pot 2, and resonates with the water at the same frequency, as well as with the tremella, producing 65-75 Hz small molecule cluster water as a solute. The resonance causes the cell wall of the tremella to rupture, which promotes the breakage of the long polysaccharide chain of the tremella fragments into the short chain of tremella, thus promoting the separation of polysaccharides. At the same time, the small molecule cluster water, as a solvent, has super permeability, solubility, emulsification and transportability, which promotes the deep dissolution of tremella polysaccharides and enters the small molecule cluster water, which, together with the additives, forms a mixed slurry of small molecule cluster water and polysaccharide solution.
[0034] C. Open the discharge pipe 25 with a baffle plate at the bottom of the mixing pot 2, and open the discharge port with a gate on the conditioning tank 3 after an appropriate delay; the mixed slurry enters the conditioning tank 3, and at the same time, inject 30-40% of the healthy water and low-deuterium water with a frequency of 50-65 Hz (from an economic point of view, the price of low-deuterium water is 20-30 times that of high-health water for the same amount, so low-deuterium water should be used sparingly), forming a new mixed slurry; the mixed slurry flows through the tortuous water channel formed by the far-infrared baffle 31 in the conditioning tank 3, flowing slowly and meanderingly, so that the two types of water flow are evenly mixed. Because the far-infrared baffle 31 contains far-infrared materials mainly composed of tourmaline or graphene in its interlayer, it radiates stronger far-infrared rays with the help of the thermal field in the conditioning tank, giving the zinc-containing healthy water a second far-infrared radiation, sterilization and disinfection, and the resonance of the same frequency promotes the generation of smaller and more stable water molecule clusters with a frequency of 60-70 Hz. Simultaneously, resonance causes the cell walls of the tremella to rupture, further shearing the long-chain polysaccharide structure and promoting the separation of short-chain polysaccharides. Because the low-deuterium water molecules are smaller and have stronger permeability, most polysaccharides and zinc elements are initially absorbed by the low-deuterium water, forming a highly permeable and soluble zinc-containing low-deuterium water. When used in spraying, it will first penetrate and be delivered deep into the skin (e.g., Figure 3 (As shown).
[0035] D. Subsequently, the zinc-containing low-deuterium water mixture slurry undergoes two filtration stages: coarse filter tank 4, intermediate pump 43, and fine filter tank 5. The slurry after fine filtration is a sterile mixture of zinc-containing small molecule cluster water, low-deuterium water, and tremella polysaccharide, which is the zinc-containing low-deuterium water facial mask liquid, becoming the main material of the spray facial mask liquid. The concentrated slurry and filter residue left during coarse and fine filtration are respectively collected into the coarse filter residue tank 42 and the fine filter residue tank 52, and then pumped by the circulation pump 6 and returned to the intermediate circulating water tank 7 through the circulation pipeline 61. It is then added to the mixing pot 2 for further processing and utilization as appropriate.
[0036] In this embodiment, the additive comprises 3-5% corrosion inhibitor and 2-4% antioxidant by mass. For example, 3% corrosion inhibitor and 4% antioxidant; or 4% corrosion inhibitor and 3% antioxidant; or 5% corrosion inhibitor and 2% antioxidant.
[0037] In this embodiment, after the mixed liquid enters the coarse filter tank 4, the coarse filter 41, which consists of multiple porous filter tubes wrapped with non-woven fabric, is suction-filtered by the intermediate pump 43. 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 filter residue tank 42, and is then sent to the circulating water tank 7 for recycling by the circulation pump 7 through the circulation pipeline 61. The liquid after fine filtration in the fine filter tank 5 is stored in a centralized manner and can be used as the main material for the facial mask spray liquid. The remaining small amount of fine filter residue flows into the fine filter residue tank 52, and is then sent to the circulating water tank 7 by the circulation pump 7 through the circulation pipeline 61 for recycling.
[0038] An application of a zinc-containing, low-deuterium water facial mask liquid involves using the finely filtered liquid as the main material of the facial mask spray product. Adding 0.5-1.5% jasmine oil to the filtrate produces a fragrant, zinc-rich, small-molecule polysaccharide spray, which can then be packaged in drums or bottles for user use. Specifically, 0.7% jasmine oil can be added to the filtrate, or 1% or 1.4% jasmine oil can be added to the filtrate output from the fine filtration tank 5.
[0039] When using this product, it is recommended to press Figure 2 Instructions: Aim the small spray bottle containing the facial mask liquid at the face, focusing on three areas: the forehead, the corners of the eyes, and the eyelids. Apply the spray while also rubbing it in.
[0040] according to Figure 3 To understand its working principle: The zinc-containing deuterium water spray is packaged in a small spray bottle for convenient daily use. When using, hold the spray bottle at a certain distance from three points on your face and press to spray out the mist, then spread it evenly on these areas. Using the spray while keeping your head flat is more effective than standing. Due to the presence of polysaccharides, the natural evaporation and runny nature of the spray are reduced. Furthermore, the smaller molecular clusters of deuterium water carry zinc and other elements deeper into the skin first, followed by more of these smaller molecular clusters of healthy water carrying zinc and polysaccharides, contributing to younger-looking skin, a brighter and more radiant complexion, and reduced age spots.
[0041] The above description is only a preferred embodiment of the present invention. For those skilled in the art, designing different forms of zinc-containing low-deuterium water facial mask liquid preparation devices, methods and applications based on the teachings of the present invention does not require creative labor. All equivalent changes, modifications, substitutions and variations made in accordance with the scope of the patent application of the present invention without departing from the principles and spirit of the present invention shall be covered by the present invention.
Claims
1. An apparatus for preparing a zinc-containing low-deuterium water facial mask liquid, comprising a stirring pot (2), characterized in that, The mixing pot (2) is connected to a healthy water purifier (1) and is provided with a feeding port (213). The output end of the mixing pot (2) is connected to a conditioning tank (3) for mixing with low-deuterium water. The output end of the conditioning tank (3) is sequentially connected to a coarse filter (4) and a fine filter (5). The coarse filter (4) and the fine filter (5) are respectively connected to an intermediate circulating water tank (7) via a circulation pipeline (61). The intermediate circulating water tank (7) is provided with an intermediate water pipe (71) leading to the mixing pot (2).
2. The apparatus for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 1, characterized in that, The mixing pot (2) is equipped with a stirring paddle (22) driven by a stirring motor (24), and the hollow cavity inside the stirring shaft of the stirring paddle (22) is filled with far-infrared material; the bottom of the mixing pot (2) is equipped with an electric heater (23) with built-in far-infrared material.
3. The apparatus for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 1 or 2, characterized in that, The mixing pot (2) has a water inlet (211) and a circulating water inlet (212) on its lid (21); the water inlet (211) is connected to the healthy water purifier (1), and the healthy water purifier (1) is provided with a water inlet pipe; the circulating water inlet (212) is connected to the circulating pipeline (61); the lower part of the mixing pot (2) is provided with a discharge pipe (25) with a slide plate connected to the conditioning tank (3).
4. The apparatus for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 1 or 2, characterized in that, The conditioning tank (3) is provided with a low deuterium water inlet (32) on the side near the mixing pot (2), and a discharge port with a gate is provided at the lower part of the other side of the conditioning tank (3). Several far-infrared baffles (31) are provided at intervals on the upper and lower sides of the conditioning tank (3). The far-infrared baffles (31) on the upper and lower sides are staggered. There is a gap between the far-infrared baffle (31) on the upper side and the bottom plate of the conditioning tank (3), and there is a gap between the far-infrared baffle (31) on the lower side and the top plate of the conditioning tank (3) so that a bent water channel is formed in the conditioning tank (3).
5. The apparatus for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 1, characterized in that, The coarse filter tank (4) is equipped with a coarse filter (41), which is connected to the fine filter tank (5) via an intermediate pump (43). The fine filter tank (5) is equipped with a fine filter (51), which is connected to the output pipeline of the main material of the mask spraying liquid. The coarse filter tank (4) is connected to a coarse filter residue tank (42), and the fine filter tank (5) is connected to a fine filter residue tank (52). The coarse filter residue tank (42) and the fine filter residue tank (52) are respectively connected to the circulation pipeline (61) via a circulation pump (6).
6. A method for preparing a zinc-containing low-deuterium water facial mask liquid, comprising the apparatus for preparing a zinc-containing low-deuterium water facial mask liquid as described in claim 4, characterized in that, Includes the following steps: A. Pass the raw water into the healthy water purifier (1), introduce the zinc-containing healthy water produced by filtration and purification into the mixing pot (2), pour the clean silver ear fungus fragments and additives into the mixing pot (2), turn on the electric heater (23) at the bottom of the mixing pot (2) and start the stirring paddle (22) to pulverize, control the temperature at 70~90℃, and the working time is 1~2 hours; B. When the stirring paddle (22) inside the mixing pot (2) is stirring and impacting, the far-infrared material filled in the hollow cavity of the stirring shaft radiates strong far-infrared rays under the help of the heat field inside the pot, sterilizes and disinfects the materials inside the pot, and resonates with the water and the silver ear fungus, producing 65~75 Hz small molecular clusters of water as solute; at the same time, it promotes the dissolution of silver ear fungus fragments into silver ear fungus short chain polysaccharides, which, together with the added materials, form a mixed slurry; C. The mixed slurry enters the conditioning tank (3) and low-deuterium water is injected at the same time. The newly formed mixed slurry flows through the far-infrared baffle set in the conditioning tank (3) to complete the mixing with the low-deuterium water, while promoting the generation of more stable 60~70 Hz small molecular cluster water and the further dissolution of short-chain polysaccharides of Tremella fuciformis. D. The mixed slurry is then filtered twice by the coarse filter (4) and the fine filter (5). The concentrated slurry left by the coarse and fine filters is returned to the intermediate circulating water tank (7) through the circulation pipeline (61), and then added to the mixing pot (2) for further processing and utilization in a timely and appropriate manner. The slurry after fine filtration is the zinc-containing low-deuterium water face mask liquid, which becomes the main material of the spray face mask liquid.
7. The method for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 6, characterized in that, The healthy water purifier (1) adds zinc-containing mineral sintered particles to the water purifier and produces healthy water that meets the requirements of the "Standards for Healthy Drinking Water Quality" after filtration and slow release.
8. The method for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 6, characterized in that, The additives are configured with 3-5% corrosion inhibitors and 2-4% antioxidants by mass ratio.
9. The method for preparing a zinc-containing low-deuterium water facial mask liquid according to claim 6, characterized in that, After being filtered by the coarse filter (4), the liquid enters the fine filter (5) for further filtration. The small amount of coarse filtrate and filter residue that are retained are sent to the circulating water tank (7) through the circulation pipeline (61) for recycling. After being finely filtered by the fine filter (5), the liquid is stored in a centralized manner and used as the main material for the face mask spray liquid. The small amount of fine filter residue that remains is sent to the circulating water tank (7) through the circulation pipeline (61) for recycling.
10. The application of a zinc-containing low-deuterium water facial mask liquid, comprising the preparation method of the zinc-containing low-deuterium water facial mask liquid according to any one of claims 6 to 9, characterized in that, Add 0.5~1.5% jasmine oil to the filtrate output from the fine filtration tank (5) to prepare a fragrant zinc-rich small molecular cluster polysaccharide spray solution, which is then packaged in barrels or bottles for user use.