Water treatment structure for negative hydrogen active ion water station
By using natural electrolytic components and pH balance components in the water treatment structure, and using quartz sand, obsidian and maifanite to produce negative hydrogen active ionic water at room temperature, the problem of large energy consumption in the existing technology is solved, and efficient production and water quality regulation are achieved.
Patent Information
- Application Number
- CN202510576699.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-06
- Publication Date
- 2025-08-08
AI Technical Summary
In the prior art, the electrolytic method for producing negative hydrogen active ion water consumes a lot of energy and is difficult to produce efficiently at room temperature.
The water treatment structure is adopted that includes filtration and disinfection components, ion exchange components, natural electrolytic components and pH balance components. The negative hydrogen active ion water is produced at room temperature by natural electrolysis, and negative hydrogen ions are generated through natural electrolysis of quartz sand and obsidian, and the pH is adjusted by using maifanite.
On the premise of reducing energy consumption, efficient production of negative hydrogen active ion water has improved the electrolytic efficiency, avoided local accumulation, and achieved purification of water quality and pH adjustment.
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Figure CN120441113A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of water purification equipment, and in particular relates to a water treatment structure for a negative hydrogen active ion water station. Background Art
[0002] Negative hydrogen active ion water, also known as negative hydrogen water, is a special type of water that contains negative hydrogen ions. These negative hydrogen ions have excess electrons and are very easy to lose electrons, thus having strong reducing properties. Negative hydrogen ion water is made by dissolving negative hydrogen ions into water. Negative hydrogen ions (H - ) loses an electron and becomes a hydrogen atom (H), which then forms a hydrogen molecule (H2). Because negative hydrogen ions have a reducing power several times stronger than hydrogen molecules or atoms, this water has a strong antioxidant capacity, and the health benefits it can achieve are as follows:
[0003] 1. Strong antioxidant properties: Negative hydrogen ion water is a powerful antioxidant that can neutralize free radicals in the body, slowing down the oxidation process and thus protecting cells and tissues from oxidative damage. This helps delay aging and prevent disease.
[0004] 2. Anti-inflammatory Effect: It has significant anti-inflammatory properties, which can reduce inflammatory responses in the body, including chronic inflammation, thereby alleviating the symptoms of inflammation-related diseases. This is of great significance for the prevention and treatment of cardiovascular disease, diabetes, cancer, and autoimmune diseases.
[0005] 3. Promote metabolism: It helps to improve the metabolic process in the body and improve energy utilization efficiency. By regulating the activity of metabolic enzymes and promoting cell metabolism, hydrogen-rich water can promote physical health and help maintain a healthy weight and physical condition.
[0006] 4. Promote cell regeneration: The hydrogen molecules in the water can promote cell regeneration and repair, and accelerate the recovery process of damaged tissues. This is especially beneficial for people in the postoperative recovery period or the wound healing period.
[0007] 5. Protect the nervous system: It has a protective effect on the nervous system, can reduce nerve damage, and prevent neurodegenerative diseases. This may be related to its antioxidant and anti-inflammatory effects, which help slow down the neurodegenerative process.
[0008] 6. Improvement of chronic diseases: It has shown potential in the adjuvant treatment of certain chronic diseases, such as diabetes and cardiovascular disease. It can play a certain adjuvant therapeutic role in these diseases by reducing adverse reactions such as oxidative damage and cell apoptosis.
[0009] In the prior art, negative hydrogen active ion water is usually produced by electrolysis, which consumes a lot of electricity. The present application provides a device for producing negative hydrogen active ion water at room temperature using a natural method. Summary of the Invention
[0010] The technical problem to be solved by the present invention is to overcome the shortcomings of the above-mentioned prior art and provide a water treatment structure for a negative hydrogen active ion water station.
[0011] The technical solution adopted to solve the above technical problems is: a water treatment structure for a negative hydrogen active ion water station, including a body, a water treatment unit is provided in the body, and the water treatment unit includes:
[0012] A filtration and disinfection component with a water inlet pipe;
[0013] an ion exchange component connected to the filtering and disinfecting component;
[0014] a natural electrolysis component connected to the ion exchange component;
[0015] A pH balance component connected to the natural electrolysis component;
[0016] The filtration and disinfection component is used to filter and disinfect water at room temperature, the ion exchange component is used to exchange cations in water, the natural electrolysis component is used to naturally electrolyze the water after ion exchange, and the pH balance component is used to adjust the pH of the water after electrolysis.
[0017] Through the above technical solution, the natural electrolysis component utilizes the natural electrolysis method to electrolyze water at room temperature, and negative hydrogen active ion water is produced while reducing energy consumption.
[0018] Furthermore, the body is provided with a display screen, a touch module and a water inlet.
[0019] Through the above technical solution, the touch module controls the water inlet time and water inlet volume, the display screen shows the corresponding water inlet time value and water inlet volume value, and the water intake is used to take out the treated water.
[0020] Furthermore, the filtering and disinfection assembly includes a first stainless steel tank body placed in the body, the water inlet pipe is installed on the first stainless steel tank body, the first stainless steel tank body has a built-in ultraviolet disinfection device, the first stainless steel tank body is connected to the filter tank through a pipeline, and the filter tank is filled with filter filler.
[0021] Through the above technical solution, room temperature water enters the first stainless steel tank through the water inlet pipe and is disinfected by ultraviolet disinfection equipment, while the filter filler in the filter tank can filter the disinfected room temperature water, so that the room temperature water can be filtered and disinfected to reach drinking level.
[0022] Furthermore, the ion exchange assembly includes an anion resin exchange tank placed in the body, and an automatic water flow control valve is installed on the top of the anion resin exchange tank. The automatic water flow control valve is connected to the filter tank through a pipeline.
[0023] Through the above technical solution, the anion resin exchange tank can exchange anions in water at room temperature to achieve the effect of improving water quality.
[0024] Furthermore, the natural electrolysis assembly includes a second stainless steel tank body connected to the anion resin exchange tank through a pipeline, and the second stainless steel tank body is filled with quartz sand and obsidian.
[0025] Through the above technical solution, quartz sand and obsidian are used to carry out natural electrolysis of water at room temperature, realizing natural electrolysis of water to obtain negative hydrogen ions.
[0026] Furthermore, the pH balance component includes a third stainless steel tank body connected to the second stainless steel tank body through a pipeline, the third stainless steel tank body is equipped with medical stone filler, and the outer wall of the third stainless steel tank body is provided with a water outlet pipe.
[0027] Through the above technical solution, medical stone is used to adjust the pH value of water at room temperature.
[0028] Furthermore, an upper grid plate and a lower grid plate are sequentially installed in the second stainless steel tank body from top to bottom, the upper grid plate is fixedly installed on the inner wall of the second stainless steel tank body, and the lower grid plate is slidably engaged and installed in the second stainless steel tank body, and a filling space is enclosed between the upper grid plate and the lower grid plate, and quartz sand and obsidian fillers are placed in the filling space. A gap adjustment component is provided in the second stainless steel tank body, and the gap adjustment component is used to self-adjust the gap between the quartz sand and obsidian fillers.
[0029] Through the above technical solution, when the water inlet of the second stainless steel tank is large, the obsidian micro-electrolysis efficiency will decrease, that is, some room temperature water will not have sufficient time to be electrolyzed when passing through the gap between the quartz sand and the obsidian, affecting the electrolysis efficiency. However, the gap adjustment component can be used to adjust the gap between the quartz sand and the obsidian filler when the water inlet is large, so that the gap is reduced, thereby reducing the water output, so that the flow rate of room temperature water in the gap between the quartz sand and the obsidian is reduced, and thus electrolysis can be fully carried out.
[0030] Furthermore, the gap adjustment assembly includes an adjustment rod that coaxially slides through the upper grid plate and the lower grid plate, the lower end of the adjustment rod is locked and connected to the lower grid plate by multiple nuts, the upper end of the adjustment rod is fixed with a buoyancy part, and an elastic reset part is provided in the second stainless steel tank body, and the elastic reset part gives the buoyancy part potential energy to move downward.
[0031] Through the above technical solution, when the amount of water entering the second stainless steel tank body is large, the liquid level in the upper space inside the second stainless steel tank body rises, thereby generating a larger buoyancy on the buoyancy part, so that the buoyancy part drives the adjusting rod to move upward. When the adjusting rod moves upward, it will drive the lower grid plate to move upward, so that the filling space between the upper grid plate and the lower grid plate is reduced, thereby making the filling of quartz sand and obsidian tighter.
[0032] Furthermore, a accommodating bin is integrally fixed to the periphery of the second stainless steel tank body, the inner cavity of the accommodating bin is communicated with the inner cavity of the second stainless steel tank body, a hollow ring is snap-fitted and installed in the accommodating bin, a plurality of connecting segments are fixed to the ring hole wall of the hollow ring, a plurality of connecting segments are commonly fixed to a sliding ring toward one end of the hollow ring, the adjusting rod passes through the ring hole of the sliding ring, and the ring hole diameter of the sliding ring is larger than the outer diameter of the adjusting rod, a plurality of shifting rods are vertically fixed to the surface of the connecting segment, and the adjusting rod is provided with a shifting member for driving the sliding ring to move back and forth in the horizontal plane when the adjusting rod moves vertically.
[0033] Through the above technical solution, when the adjustment pull rod moves upward, the material-moving piece will be triggered, so that the sliding ring can drive the hollow ring to move back and forth on the horizontal plane, and then the lever can stir the quartz sand and obsidian filler in the filling space to avoid local accumulation.
[0034] Furthermore, the material-moving part includes a rotating sleeve rotatably connected to the bottom of the upper grid plate, the rotating sleeve is slidably mounted on the periphery of the adjusting rod and its lower end extends into the annular hole of the sliding ring, the lower end of the rotating sleeve is fixedly connected to a plurality of support arms, the support arms are vertically rotatably connected to a rotating roller, the annular hole wall of the sliding ring is fixedly connected to a plurality of arc-shaped protrusions, the rotating rollers are used in conjunction with the arc-shaped protrusions, a plurality of elastic parts are horizontally installed in the accommodating bin, the two ends of the elastic force direction of the elastic parts are respectively fixed to the periphery of the hollow ring and the inner cavity wall of the accommodating bin, a ball is rotatably embedded in the lower end of the adjusting rod, and the inner cavity wall of the rotating sleeve is provided with a spiral rolling groove for the ball to engage.
[0035] Through the above technical solution, when the adjusting rod moves upward, the ball will roll in the spiral rolling groove and drive the rotating sleeve to rotate. When the rotating sleeve rotates, the roller will alternately contact the arc-shaped protrusions. When in contact, the hollow ring will move in the horizontal plane, and the lever will be able to stir the quartz sand and obsidian filler.
[0036] The beneficial effects of the present invention are as follows:
[0037] 1. In the present invention, the natural electrolysis component utilizes the natural electrolysis method to electrolyze room temperature water, thereby producing negative hydrogen active ion water while reducing energy consumption;
[0038] 2. In the present invention, when the amount of water entering the second stainless steel tank body is large, the liquid level in the upper space inside the second stainless steel tank body rises, thereby generating a large buoyancy on the buoyancy part, causing the buoyancy part to drive the adjustment rod to move upward. When the adjustment rod moves upward, it will drive the lower grid plate to move upward, so that the filling space between the upper grid plate and the lower grid plate is reduced, thereby making the quartz sand and obsidian filled more tightly;
[0039] 3. In the present invention, when the adjusting pull rod moves upward, the material shifting member will be triggered to enable the sliding ring to drive the hollow ring to move back and forth on the horizontal plane, thereby enabling the shifting rod to stir the quartz sand and obsidian filler in the filler space to avoid local accumulation. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Figure 1 This is a schematic diagram of the overall structure of a water treatment structure for a negative hydrogen active ion water station according to an embodiment of the present invention;
[0041] Figure 2 yes Figure 1 A schematic diagram of the positional relationship from another perspective;
[0042] Figure 3 yes Figure 1 The positional relationship diagram after the body is omitted;
[0043] Figure 4 This is a schematic diagram of the positional relationship between the upper grid plate, the lower grid plate and the buoyancy part after assembly in the present invention;
[0044] Figure 5 yes Figure 4 A magnified schematic diagram of the local structure at point A;
[0045] Figure 6 yes Figure 4 Schematic diagram of the position relationship of the first perspective;
[0046] Figure 7 yes Figure 6A magnified schematic diagram of the local structure at point B in the middle;
[0047] Figure 8 yes Figure 4 Schematic diagram of the positional relationship of the second perspective;
[0048] Figure 9 yes Figure 4 Schematic diagram of the positional relationship of the third perspective;
[0049] Figure 10 This is a schematic diagram of the positional relationship between the rotating sleeve and the adjusting rod after assembly in the present invention;
[0050] Figure 11 yes Figure 10 Schematic diagram of the positional relationship of the middle part structure after it is cut open;
[0051] Figure 12 It is a schematic diagram of the positional relationship of the rotating sleeve after assembly in the present invention.
[0052] Figure numerals: 1. body; 2. water intake; 3. touch module; 4. display screen; 5. water inlet pipe; 6. first stainless steel tank body; 7. ultraviolet disinfection equipment; 8. filter tank; 9. anion resin exchange tank; 10. second stainless steel tank body; 11. third stainless steel tank body; 12. automatic water flow control valve; 13. water outlet pipe; 14. containing chamber; 15. buoyancy part; 16. hollow frame; 17. return spring; 18. upper grid plate; 19. hollow ring; 20. lever; 21. elastic part; 22. sliding ring; 23. lower grid plate; 24. connecting section; 25. rotating sleeve; 26. limiting ring; 27. adjusting rod; 28. support arm; 29. roller; 30. arc-shaped protrusion; 31. nut; 32. limiting column; 33. spiral rolling groove; 34. ball bearing. DETAILED DESCRIPTION
[0053] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.
[0054] like Figures 1-12As shown, this embodiment provides a water treatment structure for a negative hydrogen active ion water station, including a body 1, a display screen 4 and a touch module 3 are installed on the body 1, the touch module 3 is electrically connected to the display screen 4, the body 1 shell is equipped with a water inlet 2, the back of the body 1 (the side without the water inlet 2) is open and is equipped with a sealed door panel (not shown in the figure), and a water treatment unit is provided inside the body 1, the water treatment unit includes a filtration and disinfection component, an ion exchange component, a natural electrolysis component and a pH balance component, the filtration and disinfection component, the ion exchange component, the natural electrolysis component and the pH balance component are sequentially interconnected, the filtration and disinfection component is used to filter and disinfect normal temperature water, the ion exchange component is used to perform ion exchange on cations in water, the natural electrolysis component is used to perform natural electrolysis on the water after ion exchange, and the pH balance component is used to adjust the pH of the electrolyzed water;
[0055] Specifically, the filtering and disinfecting component includes a first stainless steel tank body 6 placed in the body 1, a water inlet pipe 5 is installed on the top of the first stainless steel tank body 6, a water inlet pump is installed in the body 1, the water inlet of the water inlet pump is connected to the external tap water pipeline, the water outlet of the water inlet pump is connected to the water inlet pipe 5, the water inlet pump is started by the touch module 3, so that the water inlet pump transports the room temperature tap water in the tap water pipeline to the water inlet pipe 5, and then enters the first stainless steel tank body 6 through the water inlet pipe 5, the first stainless steel tank body 6 has a built-in ultraviolet disinfection device 7, a water pipe is installed on the outer wall of the lower side of the first stainless steel tank body 6, and the end of the water pipe away from the first stainless steel tank body 6 is connected to the The filter tank 8 is connected so that the first stainless steel tank body 6 and the filter tank 8 can be connected through. Further, a water pipe is provided at the top of the filter tank 8, and the filter tank 8 is filled with a filter filler. The filter filler in this embodiment can be quartz sand, anthracite, and activated carbon. The quartz sand, anthracite, and activated carbon are arranged in layers, with the top layer being quartz sand, the middle layer being anthracite, and the bottom layer being activated carbon. The ultraviolet disinfection equipment 7 can select an ultraviolet disinfection lamp in the prior art. The ultraviolet disinfection lamp can be used to perform ultraviolet disinfection on the tap water entering the first stainless steel tank body 6, thereby minimizing the number of bacteria in the tap water and disinfecting the tap water.
[0056] Specifically, the ion exchange assembly includes an anion resin exchange tank 9 housed within the housing 1. An automatic water flow control valve 12 is mounted on top of the anion resin exchange tank 9. This valve is connected to the filter tank 8 via a water pipe. Tap water filtered by the filter tank 8 enters the anion resin exchange tank 9 through the water pipe. Anion resin is an ion exchange resin primarily used to remove anions, such as chloride, sulfate, and nitrate, from water. When the anion resin comes into contact with water, the exchangeable ions (such as hydroxide ions) in the resin exchange with the anions in the water.
[0057] Specifically, the hydroxide ions (OH-) in the anion resin exchange with the following anions in water: chloride, sulfate, nitrate, bicarbonate, carbonate, fluoride, and phosphate. The general form of the exchange reaction is as follows: R-OH + X- → R-X + OH-.
[0058] Here, R-OH represents the anion resin, X- represents the anions in the water, RX represents the resin after exchange, and OH- represents the hydroxide ions released. Through this exchange reaction, the anions in the water are adsorbed by the resin, thereby achieving the goal of purifying the water. Anion resins are widely used in water treatment, chemical industry, pharmaceutical industry, and other fields.
[0059] Specifically, the natural electrolysis component includes a second stainless steel tank body 10 connected to the anion resin exchange tank 9 through a pipeline. An upper grid plate 18 and a lower grid plate 23 are installed in the second stainless steel tank body 10 from top to bottom. The upper grid plate 18 is fixedly installed on the inner wall of the second stainless steel tank body 10, and the lower grid plate 23 is slidably engaged and installed in the second stainless steel tank body 10. A filling space is formed between the upper grid plate 18 and the lower grid plate 23, and the filling space is filled with quartz sand and obsidian. In the process of making negative hydrogen water, obsidian is used as a mineral material to generate water rich in active hydrogen through micro-electrolysis. This water has antibacterial, anti-inflammatory, bleaching and other effects. Due to its unique chemical composition and physical properties, obsidian can be used as a raw material or auxiliary material in micro-electrolysis technology, giving full play to its advantages of insulation, wear resistance, and good chemical stability, thereby improving the effect of micro-electrolysis in treating wastewater or producing hydrogen-rich water. When the water inlet of the second stainless steel tank body 10 is large, the efficiency of obsidian micro-electrolysis will decrease, that is, some room temperature water will not have enough time to be electrolyzed when passing through the gap between quartz sand and obsidian, affecting the electrolysis efficiency. Therefore, a gap adjustment component is provided in the second stainless steel tank body 10, and the gap adjustment component is used to self-adjust the gap between quartz sand and obsidian filler;
[0060] Specifically, the gap adjustment assembly includes an adjustment rod 27 that coaxially slides through the upper grid plate 18 and the lower grid plate 23. The lower end of the adjustment rod 27 is locked and connected to the lower grid plate 23 through a plurality of nuts 31. The upper end of the adjustment rod 27 is fixedly connected to the buoyancy part 15. An elastic reset member is provided in the second stainless steel tank body 10. The elastic reset member gives the buoyancy part 15 potential energy to move downward. The elastic reset member includes a hollow frame 16 fixedly mounted on the inner wall of the second stainless steel tank body 10. The hollow frame 16 is provided with a through hole for the adjustment rod 27 to pass freely. In addition, a limit ring is fixedly sleeved on the periphery of the adjustment rod 27. 26, the limiting ring 26 is located between the hollow frame 16 and the upper grid plate 18. In addition, a return spring 17 is wrapped around the periphery of the adjustment rod 27. The two ends of the return spring 17 in the elastic direction elastically press against the hollow frame 16 and the upper grid plate 18 respectively, and the return spring 17 is in a certain compressed state, thereby making the return spring 17 have a downward elastic pressing force on the limiting ring 26, so that the lower grid plate 23 and the upper grid plate 18 tend to move away from each other. Furthermore, the surface of the return spring 17 in this embodiment is treated with anti-corrosion and anti-rust treatment to prevent rust from occurring during long-term use, thereby polluting the water body;
[0061] The second stainless steel tank body 10 is integrally fixed with a accommodating bin 14 on the periphery thereof, and the inner cavity of the accommodating bin 14 is communicated with the inner cavity of the second stainless steel tank body 10, and a hollow ring 19 is mounted in the accommodating bin 14, and a plurality of connecting sections 24 are fixed to the annular hole wall of the hollow ring 19, and a sliding ring 22 is fixed to one end of the plurality of connecting sections 24 toward the hollow ring 19, and an adjusting rod 27 passes through the annular hole of the sliding ring 22, and the annular hole diameter of the sliding ring 22 is larger than the outer diameter of the adjusting rod 27, and a plurality of shifting rods 20 are vertically fixed to the surface of the connecting section 24, and a material shifting member is provided on the adjusting rod 27 for driving the sliding ring 22 to move back and forth in the horizontal plane when the adjusting rod 27 moves vertically, and the material shifting member stirs the quartz sand and obsidian fillers in the filler space, thereby being able to evenly disperse the quartz sand and obsidian to avoid local accumulation;
[0062] Specifically, the material-digging member includes a rotating sleeve 25 rotatably connected to the bottom of the upper grid plate 18, the rotating sleeve 25 is slidably fitted on the periphery of the adjusting rod 27 and its lower end extends into the annular hole of the sliding ring 22, and a plurality of support arms 28 are fixedly connected to the lower end of the rotating sleeve 25, and a roller 29 is vertically rotatably connected to the support arm 28. The number of the support arms 28 and the roller 29 is set to three, and they are arranged in an axial array along the rotating sleeve 25. The axial direction of the roller 29 is parallel to the axial direction of the rotating sleeve 25. In addition, three arc-shaped protrusions 30 are fixed to the annular hole wall of the sliding ring 22, and the three arc-shaped protrusions 30 are arranged in an axial array along the rotating sleeve 25. The roller 29 is used in conjunction with the arc-shaped protrusion 30. In addition, the maximum spacing size between the periphery of the roller 29 and the axis of the rotating sleeve 25 is The ring hole diameter is smaller than the sliding ring 22, and a plurality of elastic members 21 are horizontally installed in the accommodating chamber 14. The two ends of the elastic member 21 in the elastic direction are respectively fixed to the periphery of the hollow ring 19 and the inner wall of the accommodating chamber 14. The lower end of the adjusting rod 27 is rotatably embedded with a ball 34. The inner wall of the rotating sleeve 25 is provided with a spiral rolling groove 33 for the engagement of the ball 34. The number of the ball 34 is set to two and is symmetrically arranged along the axial direction of the adjusting rod 27. Further, the periphery of the adjusting rod 27 is key-connected to the upper grid plate 18 through a key bar. The elastic member 21 in this embodiment can be set as a spring, and the periphery of the hollow ring 19 is fixed to the limiting column 32. The spring sleeve is wrapped around the limiting column 32, so that the spring is not prone to large-scale bending deformation;
[0063] When the buoyancy part 15 moves upward, it will synchronously drive the adjusting rod 27 to move upward. During the upward movement, the adjusting rod 27 will move upward relative to the rotating sleeve 25, so that the ball 34 will roll in the spiral rolling groove 33. Since the adjusting rod 27 does not rotate, the rotating sleeve 25 will rotate at the bottom of the upper grid plate 18. During the rotation process, the rotating sleeve 25 will drive the roller 29 to rotate around the axial direction of the rotating sleeve 25. During rotation, the roller 29 will alternately contact the arc-shaped protrusion 30. When in contact, it will generate an extrusion force on the arc-shaped protrusion 30, so that the arc-shaped protrusion 30 drives the sliding ring 22 to move. The sliding ring 22 also synchronously drives the hollow ring 19 to move in the accommodating chamber 14, thereby causing the hollow ring 19 to drive the connecting section 24 and the shifting rod 20 to move. When the shifting rod 20 moves, it will stir the quartz sand and obsidian filler to prevent the quartz sand and obsidian filler from locally accumulating in the filler space.
[0064] Specifically, the pH balance assembly includes a third stainless steel tank body 11 connected to the second stainless steel tank body 10 via a pipeline. The third stainless steel tank body 11 is filled with medical stone filler, and the outer wall of the third stainless steel tank body 11 is provided with a water outlet pipe 13. Medical stone is a natural mineral with a variety of unique physical and chemical properties. It is widely used in various fields such as health, beauty, and food processing. The following is a detailed overview of medical stone:
[0065] Physical properties:
[0066] Appearance: Medical stone is porous and spongy in appearance, resembling a ball of barley rice, hence the name.
[0067] Color: Usually yellow or blue, gray outside and white inside.
[0068] Structure: The surface is covered with tiny holes and is dull.
[0069] Hardness: Hardness is 2.2, density is 2.3g / cm 3 .
[0070] Chemical composition:
[0071] Medical stone is mainly composed of inorganic silicate minerals, including quartz monzonite and other minerals. Its chemical composition includes Al2O3, Fe2O3, FeO, MgO, CaO, K2O, Na2O, TiO2, P2O5, etc.
[0072] characteristic:
[0073] Adsorption: It has strong adsorption capacity, can absorb harmful substances and impurities in water and purify water quality.
[0074] Antibacterial: The surface has natural antibacterial ingredients that can inhibit bacterial growth.
[0075] Electrolysis: It can generate microcurrent to electrolyze water, producing hydroxyl free radicals and active water.
[0076] Mineral release: Contains a variety of trace elements that are beneficial to the human body, such as potassium, sodium, calcium, magnesium, etc., and can slowly release these minerals.
[0077] Adjustability: It has the function of bidirectionally adjusting pH value, which can adjust acidic or alkaline water to neutral. At the same time, the micro-electrolysis effect can electrolyze water.
[0078] application:
[0079] Water treatment: used in water purifier filter elements to improve water quality and adsorb heavy metal ions, methanol, E. coli, etc.
[0080] Health area: promote gastrointestinal motility, improve digestion and absorption, enhance immunity, and anti-oxidation.
[0081] Beauty field: deep cleansing of the skin, improvement of skin texture, antibacterial and anti-inflammatory.
[0082] Food processing: As a food additive, it increases the fluffiness and taste of food and improves its nutritional and health value.
[0083] Medical field: used as a drug carrier to help drugs be better absorbed and utilized.
[0084] Construction field: used to make lightweight partition boards and thermal insulation materials.
[0085] Cooking utensils: such as medical stone pots, rice cookers, etc., can heat food evenly, maintain the nutritional content and taste of food, and are antibacterial and mildew-proof.
[0086] Formation process: Medical stone was formed between 50 million and 75.5 million years ago. The lava erupted by the volcano was transformed into acidic substances through high humidity and heat underground, and was finally formed under the pressure generated by the movement of the earth's crust.
[0087] In summary, medical stone has a wide range of application value in many fields due to its unique physical and chemical properties.
[0088] The working principle of this embodiment is as follows:
[0089] The touch module 3 controls the start of the water inlet pump, so that the water inlet pump transports the room temperature tap water in the tap water pipeline to the water inlet pipe 5, and then enters the first stainless steel tank body 6 through the water inlet pipe 5, and the tap water is ultraviolet disinfected by the ultraviolet disinfection equipment 7, and then filtered by the filter filler in the filter tank 8. The filtered water will enter the anion resin exchange tank 9, and then the water quality treatment will be carried out. The treated water will enter the second stainless steel tank body 10. When the water passes through the gap of the obsidian, the obsidian can produce micro-electrolysis on the water. When the water inflow into the second stainless steel tank body 10 is large, the liquid level in the upper space inside the second stainless steel tank body 10 rises, thereby causing the buoyancy part 15 to move upward, causing the adjusting rod 27 to move upward. When the adjusting rod 27 moves upward, the adjusting rod 27 will move upward relative to the rotating sleeve 25, causing the ball 34 to roll in the spiral rolling groove 33. Since the adjusting rod 27 does not rotate, the rotating sleeve 25 will rotate. The movable sleeve 25 will rotate at the bottom of the upper grid plate 18. During the rotation, the rotating sleeve 25 will drive the roller 29 to rotate around the axial direction of the rotating sleeve 25. During rotation, the roller 29 will alternately contact the arc-shaped protrusion 30. When in contact, it will generate an extrusion force on the arc-shaped protrusion 30, so that the arc-shaped protrusion 30 drives the sliding ring 22 to move, and the sliding ring 22 also synchronously drives the hollow ring 19 to move in the accommodating chamber 14, thereby causing the hollow ring 19 to drive the connecting section 24 and the lever 20 to move. When the lever 20 moves, it will stir the quartz sand and obsidian filler to prevent the quartz sand and obsidian filler from locally accumulating in the filler space. Then, the water will enter the third stainless steel tank body 11, and the medical stone filler will balance the pH of the water. At the same time, the water can also continue to be micro-electrolyzed. Finally, the treated water will enter the external container through the outlet pipe 13. Open the water intake 2 and take out the container containing electrolyzed water.
[0090] The above are only preferred embodiments of the present invention and are not intended to limit the scope of protection of the present invention.
Claims
1. A water treatment structure for a negative hydrogen active ion water station, comprising a body (1), characterized in that: A water treatment unit is provided in the machine body (1), and the water treatment unit comprises: A filtering and disinfecting assembly provided with a water inlet pipe (5); an ion exchange component connected to the filtering and disinfecting component; a natural electrolysis component connected to the ion exchange component; A pH balance component connected to the natural electrolysis component; The filtration and disinfection component is used to filter and disinfect water at room temperature, the ion exchange component is used to exchange cations in water, the natural electrolysis component is used to naturally electrolyze the water after ion exchange, and the pH balance component is used to adjust the pH of the water after electrolysis.
2. The water treatment structure for a negative hydrogen active ion water station according to claim 1, characterized in that: The machine body (1) is provided with a display screen (4), a touch module (3) and a water inlet (2).
3. The water treatment structure for a negative hydrogen active ion water station according to claim 1, characterized in that: The filtering and disinfecting assembly comprises a first stainless steel tank body (6) arranged in the machine body (1), the water inlet pipe (5) being installed on the first stainless steel tank body (6), the first stainless steel tank body (6) being equipped with a built-in ultraviolet disinfection device (7), the first stainless steel tank body (6) being connected to a filtering tank (8) via a pipeline, and the filtering tank (8) being filled with filtering filler.
4. The water treatment structure for a negative hydrogen active ion water station according to claim 3, characterized in that: The ion exchange assembly comprises an anion resin exchange tank (9) disposed in the body (1), an automatic water flow control valve (12) being installed on the top of the anion resin exchange tank (9), and the automatic water flow control valve (12) being connected to the filter tank (8) via a pipeline.
5. The water treatment structure for a negative hydrogen active ion water station according to claim 4, characterized in that: The natural electrolysis assembly comprises a second stainless steel tank body (10) which is connected to the anion resin exchange tank (9) via a pipeline, and the second stainless steel tank body (10) is filled with quartz sand and obsidian.
6. The water treatment structure for a negative hydrogen active ion water station according to claim 5, characterized in that: The acid-base balance assembly comprises a third stainless steel tank body (11) connected to the second stainless steel tank body (10) through a pipeline, the third stainless steel tank body (11) is equipped with medical stone filler, and the outer wall of the third stainless steel tank body (11) is provided with a water outlet pipe (13).
7. The water treatment structure for a negative hydrogen active ion water station according to claim 5, characterized in that: An upper grid plate (18) and a lower grid plate (23) are sequentially installed in the second stainless steel tank body (10) from top to bottom. The upper grid plate (18) is fixedly installed on the inner wall of the second stainless steel tank body (10), and the lower grid plate (23) is slidably engaged and installed in the second stainless steel tank body (10). A filler space is enclosed between the upper grid plate (18) and the lower grid plate (23), and quartz sand and obsidian fillers are placed in the filler space. A gap adjustment component is provided in the second stainless steel tank body (10), and the gap adjustment component is used to self-adjust the gap between the quartz sand and obsidian fillers.
8. The water treatment structure for a negative hydrogen active ion water station according to claim 7, characterized in that: The gap adjustment assembly includes an adjustment rod (27) that coaxially slides through the upper grid plate (18) and the lower grid plate (23), the lower end of the adjustment rod (27) is locked and connected to the lower grid plate (23) through a plurality of nuts (31), the upper end of the adjustment rod (27) is fixed with a buoyancy part (15), and an elastic reset part is provided in the second stainless steel tank body (10), and the elastic reset part gives the buoyancy part (15) potential energy to move downward.
9. The water treatment structure for a negative hydrogen active ion water station according to claim 8, characterized in that: The periphery of the second stainless steel tank body (10) is integrally fixed with a accommodating chamber (14), the inner cavity of the accommodating chamber (14) is connected to the inner cavity of the second stainless steel tank body (10), a hollow ring (19) is fixedly installed in the accommodating chamber (14), a plurality of connecting sections (24) are fixed to the ring hole wall of the hollow ring (19), and a plurality of connecting sections (24) are fixed to a sliding ring (22) toward one end of the hollow ring (19), the adjusting rod (27) passes through the ring hole of the sliding ring (22), and the ring hole diameter of the sliding ring (22) is larger than the outer diameter of the adjusting rod (27), a plurality of shifting rods (20) are vertically fixed to the surface of the connecting section (24), and the adjusting rod (27) is provided with a shifting member for driving the sliding ring (22) to move back and forth in the horizontal plane when the adjusting rod (27) moves vertically.
10. The water treatment structure for a negative hydrogen active ion water station according to claim 9, characterized in that: The material-selecting member includes a rotating sleeve (25) rotatably connected to the bottom of the upper grid plate (18), the rotating sleeve (25) is slidably mounted on the periphery of the adjusting rod (27) and its lower end extends into the annular hole of the sliding ring (22), a plurality of supporting arms (28) are fixedly connected to the lower end of the rotating sleeve (25), a roller (29) is vertically rotatably connected to the supporting arms (28), a plurality of arc-shaped protrusions (30) are fixedly connected to the annular hole wall of the sliding ring (22), and the rotating sleeve (25) is fixedly connected to the annular hole wall of the sliding ring (22). The roller (29) is used in conjunction with the arc-shaped protrusion (30), and a plurality of elastic members (21) are horizontally installed in the accommodating chamber (14). The two ends of the elastic force direction of the elastic member (21) are respectively fixed to the periphery of the hollow ring (19) and the inner wall of the accommodating chamber (14). A ball (34) is rotatably embedded in the lower end of the adjusting rod (27), and a spiral rolling groove (33) for the ball (34) to engage is opened on the inner wall of the rotating sleeve (25).