Preparation equipment of multi-gradient activated water
Through the preparation equipment of multi-gradient activated water, magnetization treatment technology is used to optimize the physical and chemical characteristics of irrigation water, solving the problems of waste and inefficiency of water resources in traditional irrigation methods, and achieving the effect of efficient use of water resources and promoting sustainable agricultural development.
Patent Information
- Application Number
- CN202421673551.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-16
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2034-07-16
AI Technical Summary
Traditional agricultural irrigation methods have problems of waste of water resources and inefficiency, which has led to the intensification of water resources shortage and supply and demand contradictions, affecting the sustainable development of agriculture and the economy.
Design a multi-gradient activated water preparation equipment, which can optimize the physical and chemical characteristics of irrigation water by precisely controlling the magnetization intensity under different gradients, improve the permeability and dissolution of water, thereby improving the efficiency of water resource utilization.
The multi-gradient magnetization treatment of water has been realized, which significantly improves the activation effect of water, improves water quality, improves irrigation efficiency and crop growth performance, and promotes the development of water-saving and efficient agriculture.
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Figure CN222846510U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of agricultural production equipment, in particular to a preparation device for multi-gradient activated water. Background Art
[0002] With the continuous growth of the global population and the acceleration of industrialization, water shortage has become an increasingly severe global challenge. In China, as a major agricultural country, agricultural irrigation water accounts for a large proportion of the total water consumption. However, traditional agricultural irrigation methods often adopt extensive management, unreasonable irrigation water allocation, and low irrigation efficiency, which not only wastes a lot of precious water resources, but also exacerbates the contradiction between water supply and demand, becoming an important bottleneck restricting the sustainable development of agriculture and even the entire economic and social development.
[0003] In response to the above problems, improving the utilization efficiency of agricultural irrigation water and developing water-saving and efficient agriculture have become key issues in my country's agricultural transformation and upgrading and sustainable development. Among the many water-saving measures, improving the physical and chemical properties of irrigation water, that is, preparing and applying activated water, is regarded as an innovative and effective solution. Activated water refers to water that has been treated with specific physical technologies. These treatments can significantly improve the physiological activity of water, enhance its penetration capacity and crop absorption efficiency, thereby reducing the amount of irrigation water while promoting the improvement of soil structure, improving soil fertility, accelerating crop growth, and ultimately achieving a dual increase in crop yield and quality.
[0004] Research shows that activated water can not only effectively solve the problem of water shortage, but also can be safely used in agricultural production without introducing any chemical residues or pollution, and is harmless to crops, soil and its microbial ecosystem. This feature makes activated water technology show great application potential and broad market prospects in the development of modern agriculture.
[0005] Therefore, a multi-gradient activated water preparation device is proposed to solve the above technical problems. Utility Model Content
[0006] The purpose of the utility model is to solve the above-mentioned technical problems and provide a preparation device for multi-gradient activated water. The utility model realizes customized optimization of the physical and chemical properties of irrigation water by precisely controlling the magnetization intensity under different gradients, so as to further improve the efficiency of water resource utilization and promote the development of water-saving and efficient agriculture.
[0007] The utility model adopts the following technical solution to solve the above-mentioned technical problems: a multi-gradient activated water preparation device, comprising an equipment outer frame, a multi-gradient activated water device and a water supply pipeline, wherein the multi-gradient activated water device comprises a first gradient activated water pipe, a second gradient activated water pipe, a third gradient activated water pipe and a fourth gradient activated water pipe, the first gradient activated water pipe is provided with a first magnetized tube capable of adjusting the magnetic strength of activated water, the second gradient activated water pipe is provided with a second magnetized tube capable of adjusting the magnetic strength of activated water, the third gradient activated water pipe is provided with a third magnetized tube capable of adjusting the magnetic strength of activated water, the fourth gradient activated water pipe is provided with a fourth magnetized tube capable of adjusting the magnetic strength of activated water, the first gradient activated water pipe, the second gradient activated water pipe, the third gradient activated water pipe and the fourth gradient activated water pipe are installed inside the equipment outer frame from left to right, and the water supply pipeline is installed at the water inlet and water outlet ends of the first gradient activated water pipe, the second gradient activated water pipe, the third gradient activated water pipe and the fourth gradient activated water pipe.
[0008] Preferably, the length and diameter of the first magnetizing tube and the fourth magnetizing tube are both 400 mm*51 mm.
[0009] Preferably, the length and diameter of the second magnetizing tube and the third magnetizing tube are both 400 mm*63 mm.
[0010] Preferably, the first magnetizing tube, the second magnetizing tube, the third magnetizing tube and the fourth magnetizing tube are four water magnets of different specifications.
[0011] Preferably, the magnetic water device includes an outer tube wall, magnetic field lines, a magnetic conductive layer and a high silicon aluminum energy ring. The magnetic field lines are installed around the magnetic conductive layer inside the outer tube wall. The magnetic conductive layer is surrounded to form an annular channel for water to flow through. The high silicon aluminum energy ring is installed between the magnetic conductive layer and the outer tube wall.
[0012] Preferably, the magnetic induction intensity of the electromagnet formed in the first magnetizing tube is 0gs, the magnetic induction intensity of the electromagnet formed in the second magnetizing tube is 2000gs, the magnetic induction intensity of the electromagnet formed in the third magnetizing tube is 4000gs, and the magnetic induction intensity of the electromagnet formed in the fourth magnetizing tube is 6000gs.
[0013] Preferably, the front ends of the first gradient live water pipe, the second gradient live water pipe, the third gradient live water pipe and the fourth gradient live water pipe are all provided with solenoid valves that can be electrically controlled to switch on and off, and the solenoid valves are installed at the same height in front of the first magnetizing tube, the second magnetizing tube, the third magnetizing tube and the fourth magnetizing tube.
[0014] Preferably, the water supply pipe includes a water inlet and a water outlet, the solenoid valve is installed at one end close to the water inlet, the water inlet is connected to the water inlet ends of the first gradient live water pipe, the second gradient live water pipe, the third gradient live water pipe and the fourth gradient live water pipe, and the water outlet is connected to the water outlet ends of the first gradient live water pipe, the second gradient live water pipe, the third gradient live water pipe and the fourth gradient live water pipe.
[0015] Preferably, a control unit is provided on the top of the outer frame of the device, and the control unit is arranged on the top of the outer frame of the device, and the control unit is connected to the magnetic field lines on the solenoid valve, the first magnetizing tube, the second magnetizing tube, the third magnetizing tube and the fourth magnetizing tube.
[0016] Preferably, a display panel is further provided on the top of the outer frame of the device, and the display panel is installed on the outside of the control unit and connected to the control unit to display control information.
[0017] The beneficial effects of the utility model are:
[0018] 1. Through four magnetizing tubes with different magnetic induction strengths (the first magnetizing tube, the second magnetizing tube, the third magnetizing tube and the fourth magnetizing tube), multi-gradient magnetization treatment of water flow is realized, which can gradually enhance the activation effect of water, optimize the water molecule structure, form small molecular cluster water, improve the solubility and penetration of water, and make it easier to be absorbed and utilized by organisms;
[0019] 2. Magnetization treatment helps to remove impurities and harmful substances in water, while increasing the dissolved oxygen and mineral content in water, thereby improving water quality and enhancing the safety and health of drinking water;
[0020] 3. Each gradient active water pipe and magnetization tube is designed as an independent pipe, which is convenient for application in a variety of experimental or production scenarios and provides more flexible configuration options. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0022] Figure 2 It is a structural schematic diagram of the multi-gradient water activator of the utility model;
[0023] Figure 3 It is a schematic diagram of the structure inside the magnetic water device of the utility model;
[0024] Figure 4 It is a schematic diagram of the growth status of experimental plants of the utility model.
[0025] In the figure: 1. Equipment outer frame, 11. Control unit, 12. Display panel, 2. Multi-gradient water activator, 21. First gradient water activator, 211. First magnetized tube, 22. Second gradient water activator, 221. Second magnetized tube, 23. Third gradient water activator, 231. Third magnetized tube, 24. Fourth gradient water activator, 241. Fourth magnetized tube, 25. Magnetic water activator, 251. Outer tube wall, 252. Magnetic field lines, 253. Magnetic conductive layer, 254. High silicon aluminum energy ring, 26. Solenoid valve, 3. Water supply pipe, 31. Water inlet, 32. Water outlet. DETAILED DESCRIPTION
[0026] The utility model is further described below in conjunction with the accompanying drawings and implementation modes.
[0027] like Figure 1-4 As shown in Tables 1-5, the utility model provides a multi-gradient activated water preparation device, comprising an equipment outer frame 1, a multi-gradient activated water device 2 and a water supply pipeline 3, the multi-gradient activated water device 2 comprising a first gradient activated water pipe 21, a second gradient activated water pipe 22, a third gradient activated water pipe 23 and a fourth gradient activated water pipe 24, the first gradient activated water pipe 21 is provided with a first magnetized tube 211 capable of adjusting the magnetic strength of activated water, the second gradient activated water pipe 22 is provided with a second magnetized tube 221 capable of adjusting the magnetic strength of activated water, the third gradient activated water pipe 24 is provided with a first magnetized tube 212 capable of adjusting the magnetic strength of activated water, The tube 23 is provided with a third magnetized tube 231 which can adjust the magnetic strength of activated water, the fourth gradient active water tube 24 is provided with a fourth magnetized tube 241 which can adjust the magnetic strength of activated water, the first gradient active water tube 21, the second gradient active water tube 22, the third gradient active water tube 23 and the fourth gradient active water tube 24 are installed from left to right inside the outer frame 1 of the equipment, and the water supply pipe 3 is installed at the water inlet and outlet ends of the first gradient active water tube 21, the second gradient active water tube 22, the third gradient active water tube 23 and the fourth gradient active water tube 24.
[0028] By adopting the above technical solution, the adjustable magnetizing tubes (the first magnetizing tube 211, the second magnetizing tube 221, the third magnetizing tube 231 and the fourth magnetizing tube 241) equipped on each gradient active water pipe can gradually enhance the magnetization intensity of the water flow. This multi-gradient design allows water molecules to gradually accept different degrees of magnetic field effects when flowing through different magnetizing tubes, so that they are more fully activated and optimized. Compared with a single magnetization treatment, multi-gradient magnetization can significantly improve the activation effect of water, make the water molecule structure more refined, and have stronger solubility and penetration. The magnetization treatment helps to remove some impurities, residual chlorine, heavy metal ions and other harmful substances in the water, while increasing the dissolved oxygen and mineral content in the water.
[0029] The length and diameter of the first magnetizing tube 211 and the fourth magnetizing tube 241 are both 400 mm*51 mm; the length and diameter of the second magnetizing tube 221 and the third magnetizing tube 231 are both 400 mm*63 mm.
[0030] By adopting the above technical solution, the difference in diameter will affect the speed of water flow in the magnetized tube. A larger diameter may allow water to flow through at a faster speed, while a smaller diameter may slow down the water flow. By adjusting the water flow speed, the time and intensity of the interaction between water molecules and the magnetic field can be better controlled, thereby optimizing the magnetization effect and making experimental control more convenient.
[0031] The first magnetizing tube 211 , the second magnetizing tube 221 , the third magnetizing tube 231 and the fourth magnetizing tube 241 are specifically four types of magnetic water devices 25 of different specifications.
[0032] The magnetic water device 25 includes an outer tube wall 251, magnetic field lines 252, a magnetic conductive layer 253 and a high silicon aluminum energy ring 254. The magnetic field lines 252 are installed around the magnetic conductive layer 253 inside the outer tube wall 251. The magnetic conductive layer 253 is surrounded to form an annular channel for water to flow through. The high silicon aluminum energy ring 254 is installed between the magnetic conductive layer 253 and the outer tube wall 251.
[0033] By adopting the above technical solution, the magnetic field lines are closely around the magnetic conductive layer 253 installed in the outer tube wall 251, ensuring that the magnetic field can effectively act on the water flowing through the magnetic conductive layer. The magnetic field lines generated by the magnetic field lines can penetrate the water flow, magnetize the water molecules, and change their molecular structure and physical properties. The high silicon aluminum energy ring 254 generates and emits ultra-fine vibration waves (interference waves and resonance waves), which are continuously and constantly released to the water body flowing through. After the water molecules absorb the ultra-fine resonance waves, the vibration performance of the molecules is enhanced, and the large water molecule clusters are decomposed and cut into small single water molecules, which enhances the activity and solubility of the water molecules.
[0034] The magnetic induction intensity of the electromagnet formed in the first magnetizing tube 211 is 0 gs, the magnetic induction intensity of the electromagnet formed in the second magnetizing tube 221 is 2000 gs, the magnetic induction intensity of the electromagnet formed in the third magnetizing tube 231 is 4000 gs, and the magnetic induction intensity of the electromagnet formed in the fourth magnetizing tube 241 is 6000 gs.
[0035] By adopting the above technical solution and the gradient increasing magnetic induction intensity design, the water flow can gradually be exposed to magnetic fields of different intensities when passing through each magnetized tube, thus achieving better experimental and control effects.
[0036] The front ends of the first gradient live water pipe 21, the second gradient live water pipe 22, the third gradient live water pipe 23 and the fourth gradient live water pipe 24 are all provided with solenoid valves 26 that can be electrically controlled to switch on and off. The solenoid valves 26 are installed at the same height in front of the first magnetizing tube 211, the second magnetizing tube 221, the third magnetizing tube 231 and the fourth magnetizing tube 241.
[0037] By adopting the above technical solution, the solenoid valve 26 can be integrated with the control system of the entire equipment through the electronically controlled switch to realize automatic operation. The user only needs to set the corresponding parameters and programs, and the equipment can automatically complete the steps of water flow distribution, magnetization treatment and collection, which greatly reduces the complexity and labor intensity of manual operation.
[0038] The water supply pipe 3 includes a water inlet 31 and a water outlet 32, and the solenoid valve 26 is installed at one end close to the water inlet 31. The water inlet 31 is connected to the water inlet ends of the first gradient live water pipe 21, the second gradient live water pipe 22, the third gradient live water pipe 23 and the fourth gradient live water pipe 24, and the water outlet 32 is connected to the water outlet ends of the first gradient live water pipe 21, the second gradient live water pipe 22, the third gradient live water pipe 23 and the fourth gradient live water pipe 24.
[0039] A control unit 11 is provided at the top of the device outer frame 1 , and the control unit 11 is provided at the top of the device outer frame 1 , and the control unit 11 is connected to the magnetic field lines 252 on the solenoid valve 26 , the first magnetizing tube 211 , the second magnetizing tube 221 , the third magnetizing tube 231 and the fourth magnetizing tube 241 .
[0040] A display panel 12 is also provided on the top of the device outer frame 1 . The display panel 12 is installed on the outside of the control unit 11 and is connected to the control unit 11 to display control information.
[0041] By adopting the above technical solution, the control unit 11, as the core control unit of the entire device, can centrally control the switch state of the solenoid valve 26 and the strength and state of the magnetic field lines 252 on each magnetizing tube. The centralized control method simplifies the operation process and improves the control efficiency. At the same time, the control unit 11 can also monitor the operating status and various parameters of the device in real time to ensure the safe operation of the device. The display panel 12 is connected to the control unit 11 and can intuitively display the control information and operating status of the device. The user can understand the current device setting parameters, working mode, fault information, etc. through the display panel, so as to conveniently operate and adjust.
[0042] During the specific implementation of the present invention, it is confirmed that the outer frame 1 of the equipment is stable and intact, the pipes are tightly connected without leakage, and the first gradient live water pipe 21, the second gradient live water pipe 22, the third gradient live water pipe 23 and the fourth gradient live water pipe 24 are correctly installed inside the outer frame 1 of the equipment; the magnetic induction intensity parameters of the first magnetizing tube 211, the second magnetizing tube 221, the third magnetizing tube 231 and the fourth magnetizing tube 241 are set by the control unit 11 to be 0gs, 2000gs, 4000gs and 6000gs respectively, and it is confirmed that the solenoid valve 26 is in a closed state, the power supply is turned on for the equipment, and the control unit 11 and the display panel 12 are ensured to work normally;
[0043] The raw water to be treated is connected to the equipment through the water inlet 31 of the water supply pipe 3. At this time, the raw water is temporarily stored in the water supply pipe 3. The solenoid valve 26 in front of the first gradient active water pipe 21 is opened by the control unit 11. The raw water first enters the first gradient active water pipe 21, passes through the first magnetization tube 211, and is magnetized and treated. During the magnetization treatment process, the magnetic field lines 252 around the magnetic conductive layer 253 generate a magnetic field that acts on the water flow. The vibration waves of the high silicon aluminum energy ring 254 enhance the vibration performance of water molecules. The annular channel formed by the magnetic conductive layer 253 ensures that the water flow is fully exposed to the magnetic field and energy field. The activated water flows out from the outlet end of the first gradient active water pipe 21 and is collected through the outlet 32 of the water supply pipe 3 for experiments or irrigation for production. The first activated water pipe 21 is closed. The solenoid valve 26 in front of the gradient active water pipe 21 is then opened and closed in turn. The water flows through the second gradient active water pipe 22, the third gradient active water pipe 23 and the fourth gradient active water pipe 24 in turn, and is magnetized by the second magnetizing tube 221 (2000gs), the third magnetizing tube 231 (4000gs) and the fourth magnetizing tube 241 (6000gs), respectively. In each gradient, the water flow undergoes changes in physical and chemical properties under the action of the magnetic field, becomes activated water and is used for experiments or irrigation. The working status and control parameters of each magnetizing tube are monitored in real time through the display panel 12, and finally the experimental data are recorded for verification and comparison.
[0044] Through the magnetized water produced by the utility model, this embodiment lists the experimental data on the effect on the growth of strawberries, and the growth conditions are as follows: Figure 4 , where numbers 1-5 correspond to photos of strawberries irrigated with magnetized water intensities of 0gs, 2000gs, 4000gs, 6000gs and 8000gs, respectively. Group A shows photos of strawberries before irrigation with magnetized water, and Group B shows photos of strawberries irrigated with magnetized water for 152 days.
[0045]
[0046] Table 1 Effects of different magnetized water irrigation on strawberry stem diameter, plant height, leaf number and leaf water content
[0047] The stem is an important way to connect the underground part and the aboveground part. When the stem diameter becomes larger, it can transport and absorb more organic matter, inorganic matter and water. The number of leaves is an important indicator of strawberry growth. The leaf is one of the important organs for photosynthesis in plants, and photosynthesis is an important way for plants to synthesize organic matter. It is positively correlated with the yield, quality and growth of strawberries. By measuring the relative water content of strawberry leaves, the water status, adaptability and drought resistance of strawberries can be evaluated. The results of the effects of different magnetized water irrigation on strawberry stem diameter, plant height, leaf number and leaf relative water content are shown in Table 1. It is found that magnetized water irrigation can promote the growth of strawberries. Compared with the G3 treatment group, the strawberry stem diameter, plant height, leaf number and leaf water content are the largest, which are 38%, 64%, 49% and 57% higher than the control group, respectively. This shows that the magnetized water irrigation with a magnetization intensity of 6000Gs has the best effect on promoting the physiological indicators of strawberries.
[0048]
[0049] Table 2 Effects of different magnetized water irrigation on strawberry biomass
[0050] By weighing the fresh weight and dry weight of strawberry plants, we can see the biomass of strawberry from the side. From Table 2, we can see that magnetized water irrigation can promote the biomass of strawberry. Compared with the heaviest total fresh weight, leaf fresh weight, root fresh weight, leaf dry weight and root dry weight of the G3 treatment group, they were 268%, 310%, 150%, 217% and 165% higher than those of the control group, respectively. This shows that magnetized water irrigation with a magnetization intensity of 6000Gs has the best effect on the growth of strawberry biomass.
[0051]
[0052] Table 3 Effects of different magnetized water irrigation on first-order fruit weight, volume, total fruit weight and fruit shape index of strawberry
[0053] The effects of different magnetized water irrigation on the first-order fruit weight, volume, total fruit weight and fruit shape index of strawberry are shown in Table 3: It was found that magnetized water irrigation can promote the quality and yield of strawberries. The first-order fruit weight, volume, total fruit weight and fruit shape index of G3 treatment were the highest, which were 84%, 76%, 185%, and 2% higher than those of the control group, respectively. This shows that magnetized water irrigation with a magnetization intensity of 6000Gs has the best effect on promoting the quality and yield of strawberries.
[0054]
[0055] Table 4 Effects of different magnetized water irrigation on soluble protein content in strawberry fruit
[0056] Soluble protein content is an important indicator for measuring strawberry quality. The effects of different magnetized water irrigation on the soluble protein content of strawberries are shown in Table 4. It was found that magnetized water irrigation helps to increase the soluble protein content of strawberries. The soluble protein content of G3 treatment was the highest, which was 19% higher than that of the control. This shows that magnetized water irrigation with a magnetization intensity of 6000Gs has the best effect on promoting strawberry quality.
[0057]
[0058]
[0059] Table 5 Effects of different magnetized water irrigation on soil pH
[0060] The effects of different magnetized water irrigation on the relative water content of strawberry leaves and soil pH are shown in Table 5. It can be seen that magnetized water irrigation helps to increase the relative water content of leaves and reduce soil pH. The water content of the G3 treatment group is the highest, which is 57% higher than that of the control group. The soil pH value of the G3 treatment is the lowest, which is 3% lower than that of the control group. This shows that magnetized water irrigation with a magnetization intensity of 6000Gs has the best promoting effect on increasing the relative water content of strawberry leaves and reducing soil pH.
[0061] The various embodiments in the specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other.
[0062] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A preparation device for multi-gradient activated water, characterized in that: The invention comprises an equipment outer frame (1), a multi-gradient water activator (2) and a water supply pipeline (3); the multi-gradient water activator (2) comprises a first gradient water activator (21), a second gradient water activator (22), a third gradient water activator (23) and a fourth gradient water activator (24); the first gradient water activator (21) is provided with a first magnetizing tube (211) capable of adjusting the magnetic strength of activated water; the second gradient water activator (22) is provided with a second magnetizing tube (221) capable of adjusting the magnetic strength of activated water; the third gradient water activator (23) is provided with a first magnetizing tube (211) capable of adjusting the magnetic strength of activated water; The fourth gradient live water pipe (24) is provided with a fourth magnetizing tube (241) capable of adjusting the magnetic strength of activated water; the first gradient live water pipe (21), the second gradient live water pipe (22), the third gradient live water pipe (23) and the fourth gradient live water pipe (24) are installed from left to right inside the outer frame (1) of the equipment; and the water supply pipe (3) is installed at the water inlet end and the water outlet end of the first gradient live water pipe (21), the second gradient live water pipe (22), the third gradient live water pipe (23) and the fourth gradient live water pipe (24).
2. The preparation equipment of multi-gradient activated water according to claim 1, characterized in that: The length and diameter of the first magnetizing tube (211) and the fourth magnetizing tube (241) are both 400 mm*51 mm.
3. The preparation equipment of multi-gradient activated water according to claim 1, characterized in that: The length and diameter of the second magnetizing tube (221) and the third magnetizing tube (231) are both 400 mm*63 mm.
4. The preparation equipment of multi-gradient activated water according to claim 1, characterized in that: The first magnetizing tube (211), the second magnetizing tube (221), the third magnetizing tube (231) and the fourth magnetizing tube (241) are specifically four types of magnetic water devices (25) of different specifications.
5. The preparation equipment of multi-gradient activated water according to claim 4, characterized in that: The magnetic water device (25) comprises an outer tube wall (251), magnetic field lines (252), a magnetic conductive layer (253) and a high silicon-aluminum energy ring (254); the magnetic field lines (252) are installed inside the outer tube wall (251) around the magnetic conductive layer (253); the magnetic conductive layer (253) is surrounded to form an annular channel through which water can flow; and the high silicon-aluminum energy ring (254) is installed between the magnetic conductive layer (253) and the outer tube wall (251).
6. The preparation equipment of multi-gradient activated water according to claim 1, characterized in that: The magnetic induction intensity of the electromagnet formed in the first magnetizing tube (211) is 0 gs, the magnetic induction intensity of the electromagnet formed in the second magnetizing tube (221) is 2000 gs, the magnetic induction intensity of the electromagnet formed in the third magnetizing tube (231) is 4000 gs, and the magnetic induction intensity of the electromagnet formed in the fourth magnetizing tube (241) is 6000 gs.
7. The preparation equipment of multi-gradient activated water according to claim 1, characterized in that: The front ends of the first gradient live water pipe (21), the second gradient live water pipe (22), the third gradient live water pipe (23) and the fourth gradient live water pipe (24) are all provided with electromagnetic valves (26) capable of electrically controlled switching, and the electromagnetic valves (26) are installed at the same height in front of the first magnetizing tube (211), the second magnetizing tube (221), the third magnetizing tube (231) and the fourth magnetizing tube (241).
8. The preparation equipment of multi-gradient activated water according to claim 1, characterized in that: The water supply pipe (3) comprises a water inlet (31) and a water outlet (32); the solenoid valve (26) is installed at one end close to the water inlet (31); the water inlet (31) is connected to the water inlet ends of the first gradient live water pipe (21), the second gradient live water pipe (22), the third gradient live water pipe (23) and the fourth gradient live water pipe (24); the water outlet (32) is connected to the water outlet ends of the first gradient live water pipe (21), the second gradient live water pipe (22), the third gradient live water pipe (23) and the fourth gradient live water pipe (24).
9. The preparation equipment of multi-gradient activated water according to claim 1 or 5, characterized in that: A control unit (11) is provided on the top of the device outer frame (1). The control unit (11) is arranged on the top of the device outer frame (1), and the control unit (11) is connected to the magnetic field lines (252) on the solenoid valve (26), the first magnetizing tube (211), the second magnetizing tube (221), the third magnetizing tube (231), and the fourth magnetizing tube (241).
10. The preparation equipment of multi-gradient activated water according to claim 9, characterized in that: A display panel (12) is also provided on the top of the device outer frame (1); the display panel (12) is installed outside the control unit (11) and is connected to the control unit (11) to display control information.