Active water treatment equipment based on magnetofluid field effect

The magnetofluid field effect water treatment equipment, which changes the properties of water through the combined action of electromagnetic fields, solves the problems of difficult and high cost installation in large-flow scenarios, realizes efficient and safe water treatment, and is suitable for agriculture, aquaculture and community water supply.

CN120757207APending Publication Date: 2025-10-10RINA WATER VALLEY (ENSHI) HEALTH TECHNOLOGY GROUP CO LTD +1
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Patent Information

Application Number
CN202511172514.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-21
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

Existing magnetic field water treatment equipment is difficult, costly, and unsafe to install in high-flow scenarios, making it difficult to meet high-flow demands in agriculture, aquaculture, and community water supply.

Method used

Active water treatment equipment based on the magnetofluid field effect is used to change the physical and chemical properties of water, including molecular aggregation state, potential, surface tension and pH value, through the combined action of electric and magnetic fields. The electromagnetic field control components are used to adjust the magnetic and electric field strengths. The design is suitable for large flow scenarios.

Benefits of technology

It improves water treatment efficiency and effectiveness, reduces energy consumption and maintenance costs, enhances equipment stability and safety, simplifies installation and maintenance processes, and adapts to various application scenarios.

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Abstract

The invention relates to the technical field of water treatment, in particular to active water treatment equipment based on a magnetofluid field effect. The device comprises a water treatment assembly for temporarily storing to-be-treated water and performing active treatment on a water body by using an electric field and / or a magnetic field, a water conveying assembly mounted and connected to the water inlet end and the water outlet end of the water treatment assembly and used for continuously conveying water flow into the water treatment assembly, and a magnetic field generating assembly mounted on the outer side of the water treatment assembly and used for generating magnetic field generated by the water treatment assembly. The magnetic field generating assembly is used for generating a magnetic field effect to act on water in the water treatment assembly, and the electromagnetic field control assembly is connected with the water treatment assembly and the magnetic field generating assembly through wires and used for controlling the water treatment assembly and the magnetic field generating assembly to generate an electric field and / or a magnetic field effect and treating the water. The water storage device is surrounded by a plurality of paired electromagnetic field generators from top to bottom, after the electromagnetic field generators are electrified to generate a magnetic field, the magnetic field action is performed on water flowing through the water storage device, and the treated water flows out through the water outlet electricity-proof wall water inlet pipe.
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Description

Technical Field

[0001] The present invention relates to the technical field of water treatment, in particular to an active water treatment device based on magnetic fluid field effect. Background Art

[0002] At present, water treatment technologies can generally be divided into three types. The first is filtration separation, which separates other components in the water through membrane device components, including membrane materials of various pore sizes, such as ultrafiltration, nanofiltration, microfiltration, reverse osmosis, etc.; the second is to use chemical raw materials to automatically separate impurities, sedimentation, and adhesion in the water; the third is to use physical energy fields to change the structure of the water body and its indicators, including ultrasonic, electric field, magnetic field, light wave field, nano field, quantum field and other devices and equipment.

[0003] Among them, the "multi-component synergistic active water treatment system" represented by physical energy field treatment technology adopts a combination of photoelectric synergy and optical-magnetic synergy technologies. Its core technology patent numbers are 200720030653.X and 2009202392990. This technology can effectively change the molecular aggregation state of water, the potential of water, surface tension, water viscosity and pH value, etc.

[0004] Existing technologies are mainly suitable for small-scale water machine production and small-flow water treatment, and are difficult to meet the needs of large-flow scenarios such as agriculture, aquaculture, and community water supply. In addition, there are many products on the market for the application of magnetic fields in water bodies, including magnetized cups, magnetic water devices, magnetic energy hydrotherapy devices, etc., generally referred to as magnetized water. This definition is somewhat different from the concept of magnetization, because the hydrogen atoms in water are diamagnetic substances and the oxygen atoms are paramagnetic substances. The effect of the magnetic field force on the water body is to interfere with the current energy level to change the performance of the water body. The magnetic field strength is proportional to the effect on the water body. Therefore, large equipment requires larger magnets. If the magnet is large, it will bring great difficulties to installation and production, or there will be greater unsafe factors, and the production cost will be high. Summary of the Invention

[0005] In order to solve the problem of difficulty in installing magnetic field generating equipment and meet the needs of large flow scenarios, the present invention provides an active water treatment equipment based on magnetic fluid field effect.

[0006] The present invention provides an active water treatment device based on magnetic fluid field effect, which adopts the following technical solutions: An active water treatment device based on magnetic fluid field effect, comprising: A water treatment component, used for temporarily storing water to be treated and performing active treatment on the water using electric and / or magnetic fields; A water delivery component is installed and connected to the water inlet and outlet ends of the water treatment component to continuously deliver water to the water treatment component; A magnetic field generating component is installed outside the water treatment component and is used to generate a magnetic field effect to act on the water in the water treatment component; The electromagnetic field control component connects the water treatment component and the magnetic field generating component through a wire, and is used to control the water treatment component and the magnetic field generating component to generate an electric field and / or a magnetic field and treat the water body.

[0007] The combined action of electric and magnetic fields can more effectively alter the physical and chemical properties of water, such as molecular aggregation, potential, surface tension, and pH, thereby improving the efficiency and effectiveness of water treatment. The magnetic field effect can regulate the recombination process of free radical pairs, reducing the probability of free radical recombination, increasing the proportion of singlet free radical pairs, and increasing the free radical yield, thereby enhancing the activity and effectiveness of water treatment. The device is designed for high-flow water treatment scenarios, such as agriculture, aquaculture, and community water supply, addressing the inefficiency of traditional small-scale water treatment equipment in high-flow scenarios. The electromagnetic field control component allows for flexible adjustment of the electric and magnetic field intensities, optimizing control based on different water quality and treatment requirements to ensure optimal treatment results. By optimizing the application of the electromagnetic field and the device design, the energy consumption and maintenance costs of the device during operation are reduced, improving overall economic efficiency. The device design reduces reliance on large magnets, reducing the safety risks caused by overly large magnets, while also enhancing the stability and reliability of the device's operation. The integrated design makes the device more compact, simplifies installation and maintenance, and facilitates promotion and application in different scenarios.

[0008] Furthermore, the water treatment component includes a water reservoir, which has a water inlet and a water outlet at both ends. The water delivery component is respectively connected to the water inlet and the water outlet and continuously delivers water to the water reservoir through the water inlet and the water outlet.

[0009] The water delivery component connects the water inlet and outlet to ensure that water can flow continuously through the water reservoir. This design ensures the continuity and efficiency of the water treatment process and is suitable for water treatment needs in large-flow scenarios. The water reservoir can maintain a certain amount of water during the treatment process, so that the electric field and magnetic field have a more uniform and stable effect on the water body, thereby improving the effect and efficiency of water treatment. Through continuous water delivery, the time the water body stays in the water reservoir can be precisely controlled to ensure that the water body is fully affected by the electromagnetic field within the appropriate time, thereby improving the overall treatment efficiency and reducing the time required for water treatment. The setting of the water inlet and outlet helps to maintain the water level in the water reservoir stable, thereby reducing the impact of water level fluctuations on the treatment process and improving the stability and reliability of equipment operation.

[0010] Furthermore, a water electrode A and a water electrode B are provided on and connected to the water reservoir, and the water electrode A and the water electrode B are respectively provided near the water inlet and the water outlet.

[0011] The water body electrode A and the water body electrode B are arranged close to the water inlet and the water outlet respectively, which enables the electric field to cover the entire water flow path in the water storage device, ensures that the water body is affected by the electric field during the process of entering and flowing, and improves the water treatment efficiency. The layout of the electrodes continuously applies the electric field during the dynamic flow of the water flow, so that the water treatment is not limited to the static state, and the dynamic treatment can more effectively change the physical and chemical properties of the water, optimize the water quality, and ensure the uniformity of the water treatment effect.

[0012] Further, the water supply assembly includes a water inlet pipe and a water outlet pipe, the water inlet pipe is connected to the water inlet of the water treatment assembly and externally connected to the water supply device, the water outlet pipe is connected to the water outlet of the water treatment assembly and externally connected to the water collection device, and the water inlet pipe and the water outlet pipe are both insulated.

[0013] The water inlet pipe and the water outlet pipe are respectively connected to the water supply device and the water collection device, so that the water flow can continuously and stably enter the water treatment assembly and be discharged, thereby ensuring the continuity and efficiency of the water treatment process, and being suitable for large flow treatment requirements. The water inlet pipe and the water outlet pipe are both insulated, which can effectively isolate the influence of the internal electric field of the water storage device on the external water supply device and the water collection device, avoid external equipment failure or safety hazards caused by electric field leakage, and avoid the risk of electric shock caused by electric field leakage outside the pipe, thereby ensuring the safety of the equipment during operation.

[0014] Further, the water inlet pipe is folded and coiled in the water inlet anti-electricity wall, the water outlet pipe is folded and coiled in the water outlet anti-electricity wall, the water inlet anti-electricity wall is arranged close to the water inlet, and the water outlet anti-electricity wall is arranged close to the water outlet.

[0015] The water inlet anti-electricity wall and the water outlet anti-electricity wall are arranged close to the water inlet and the water outlet respectively, and the water inlet pipe and the water outlet pipe are folded and coiled in the anti-electricity wall, which can effectively shield the electric field from interfering with the pipe and the external environment, avoid safety hazards or affect the normal operation of other equipment caused by electric field leakage, and provide an additional protection barrier for the water inlet pipe and the water outlet pipe, effectively isolate the electric field, avoid electric shock accidents caused by electric field leakage, and further improve the operation safety of the equipment.

[0016] Further, the magnetic field generating assembly includes an electromagnetic coil, the electromagnetic coil is wound on the coil support and jointly wrapped on the outer surface of the electromagnetic core, the electromagnetic core has an electromagnetic yoke and a magnetic pole plate at both ends respectively, and the magnetic pole plate is arranged close to the water storage device of the water treatment assembly.

[0017] The electromagnetic coil is wound on the coil support and wrapped on the outer surface of the electromagnet core, which can generate a strong magnetic field efficiently when powered on, improve the magnetic field action efficiency in the water treatment process, and enhance the water treatment effect. The electromagnetic yoke and magnetic pole plate arranged at both ends of the electromagnet core help to concentrate the magnetic field in a specific area, especially the area close to the water storage device of the water treatment assembly, thereby enhancing the magnetic field treatment effect on the water body and improving the treatment effect. The magnetic pole plate is arranged close to the water storage device, which ensures the effective transmission of the magnetic field, so that the water body can be fully affected by the magnetic field when passing through the water storage device.

[0018] Further, the electromagnetic coil is arranged in multiple groups along the direction of water flow in the water storage device, and each group is composed of at least two electromagnetic coils and arranged around the outer circumference of the water storage device. The magnetic pole plate is an arc-shaped plate, which is fixed tightly on the outer surface of the water storage device by a magnetic pole carrier. The magnetic pole plate is fixed on the magnetic pole carrier by a fixing screw. The magnetic pole carrier is sleeved and fixed on the outer surface of the water storage device.

[0019] Multiple electromagnetic coils are arranged along the direction of water flow and evenly distributed around the outer circumference of the water storage device. This arrangement ensures uniform distribution of the magnetic field in the water storage device, ensuring uniform treatment of the water body during the entire flow process, improving the uniformity and consistency of the water treatment effect. Through the combination and reasonable layout of multiple electromagnetic coils, the overall magnetic field strength can be enhanced, further improving the water treatment capacity and the purification effect of water quality. The magnetic pole plate is stably fixed on the outer surface of the water storage device by the magnetic pole carrier and the fixing screw, which enhances the structural stability of the magnetic field assembly, reduces the potential failure risk caused by vibration and displacement, and improves the safety of the equipment. The modular design of the magnetic pole plate and the magnetic pole carrier makes installation and maintenance more convenient. The use of fixing screws facilitates the replacement and adjustment of the assembly, improving the maintainability and operational convenience of the equipment.

[0020] Further, the magnetic field generating assembly includes an electromagnetic winding, which is wound on a winding seat arranged inside a winding support. The winding support is sleeved and fixed on the outer side of the water storage device of the water treatment assembly. The winding seat is provided with a contact plate on the side facing the center of the winding support. The contact plate is arc-shaped on the side facing the center of the winding support and is arranged close to the water storage device. The electromagnetic windings on the winding seats arranged at intervals on the winding support are connected in series and arranged around the outer circumference of the water storage device.

[0021] The electromagnetic winding is wound on the winding seat and arranged around the outer circumference of the water storage device, so that the magnetic field can uniformly cover the water in the water storage device, the consistency and effect of water treatment are improved, the electromagnetic windings on the inner side of the winding support are connected in series, the overall magnetic field strength is enhanced, the water treatment capacity is improved, the water quality purification effect is improved, the contact plate is designed as an arc surface and closely arranged on the water storage device, the transmission path of the magnetic field is optimized, the magnetic field can more effectively act on the water, the magnetic field loss is reduced, and the water treatment efficiency is improved, the winding support is sleeved and fixed on the outer side of the water storage device, the stability of the electromagnetic winding and the winding seat is ensured, the influence of vibration and movement on the operation of the equipment is reduced, and the reliability and service life of the equipment are improved.

[0022] Further, the electromagnetic field control assembly includes a frequency spectrum power generator, the frequency spectrum power generator is built-in control program or external control circuit, the frequency spectrum power generator includes power input module, magnetic field output module and electric field output module, the power input module supplies power to the equipment through the power input electrode and the power output electrode, the magnetic field output module connects the magnetic field generating assembly through the magnetic field input electrode and the magnetic field output electrode and supplies power to the magnetic field generating assembly, the electric field output module connects the water treatment assembly through the electric field input electrode and the electric field output electrode and supplies power to the water treatment assembly, the power input module is connected with the magnetic field output module and the electric field output module through the voltage transformation assembly.

[0023] The built-in control program or external control circuit of the frequency spectrum power generator can accurately adjust the strength, frequency and time distribution of the electromagnetic field, and the accurate control optimizes the effect of the magnetic field and electric field in the water treatment process, improves the purification efficiency, the power input module is connected with the magnetic field output module and the electric field output module through the voltage transformation assembly, the efficient distribution of electric energy is realized, the magnetic field output module supplies power to the magnetic field generating assembly, the electric field output module supplies power to the water treatment assembly, the function modules are ensured to operate under the best energy configuration, energy waste is avoided, and the coordination of the magnetic field output module and the electric field output module enables the magnetic field and the electric field to act on the water body at the same time, the water body treatment effect is strengthened, and the comprehensive quality of water treatment is further improved.

[0024] Further, the electrical parameters of the magnetic field output module are that the output voltage is 24V, the current is 1-3A, and the frequency is 15-24Hz, and the electrical parameters of the electric field output module are that the output voltage is 36V, the current is 5-10A, and the frequency is 20-30MHz.

[0025] In summary, the present application has the following beneficial technical effects: 1. The water storage device is surrounded by a plurality of pairs of electromagnetic field generators from top to bottom, when the electromagnetic field generators are powered to generate a magnetic field, the water flowing through the water storage device is subjected to a magnetic field, and the treated water flows out through the water outlet anti-electric wall inlet pipe.

[0026] 2. The design of the water reservoir and its inlet and outlet optimizes the operating efficiency and effectiveness of the water treatment equipment, making it more adaptable to the diverse needs of modern water treatment. The layout of water body electrodes A and water body electrodes B optimizes the equipment's operating efficiency and treatment effects, while reducing energy consumption and improving the equipment's adaptability and reliability.

[0027] 3. The design of the water inlet and outlet pipes and their insulation treatment not only optimizes the operating efficiency of the water treatment equipment, but also improves the safety, stability and adaptability of the equipment, providing a guarantee for an efficient and stable water quality treatment process. The water inlet and outlet pipes are folded and coiled inside the electric shock barrier, and the electric shock barrier is set close to the water inlet and outlet, providing a more efficient and safer design for the water treatment equipment, optimizing the water treatment effect, extending the equipment life, and enhancing the adaptability of the equipment in various application scenarios.

[0028] 4. The design of the magnetic field generating assembly provides an efficient and safe magnetic field effect through the ingenious combination of electromagnetic coil, coil support, electromagnetic core, electromagnetic yoke and magnetic pole plate, thereby maximizing the water treatment effect and improving the stability and energy-saving performance of the equipment.

[0029] 5. The multiple groups of arrangement of electromagnetic coils and the optimized design of magnetic pole plates not only improve the water treatment effect and efficiency, but also enhance the structural stability and operational convenience of the equipment, further improving the safety and energy-saving performance of the equipment.

[0030] 6. The design of the magnetic field generating assembly significantly improves the performance and stability of the water treatment equipment through the rational layout and structural optimization of the electromagnetic winding, winding seat and winding support, while achieving high efficiency, energy saving and convenient maintenance, laying a solid foundation for the further development of water treatment technology.

[0031] 7. The electromagnetic field control component significantly improves the performance and efficiency of water treatment equipment through the precise design and energy optimization of the spectrum power generator, while also achieving energy conservation, environmental protection, flexible adaptability and equipment safety, providing important support for the realization of efficient water treatment technology. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 This is a schematic diagram of the overall installation structure of the present invention; Figure 2 This is a schematic diagram of the installation structure of the water treatment component and the magnetic field generating component of the present invention; Figure 3 This is a schematic diagram of the installation structure of the water outlet end of the water delivery component of the present invention; Figure 4 This is a schematic diagram of the installation structure of the water inlet end of the water delivery component of the present invention; Figure 5This is a schematic diagram of the structure of the electromagnetic field control component of the present invention; Figure 6 This is a schematic diagram of the circuit principle of the electromagnetic field control component of the present invention; Figure 7 Schematic diagram of the electromagnetic winding structure of the present invention (only one set of electromagnetic windings is shown); Figure 8 This is a schematic diagram of the installation of the electromagnetic winding structure of the present invention.

[0033] Description of reference numerals: 1. Water treatment component, 11. Water storage tank, 12. Water inlet, 13. Water outlet, 14. Water body electrode A, 15. Water body electrode B, 2. Water delivery component, 21. Water inlet pipe, 211. Water inlet anti-electric wall, 22. Water outlet pipe, 221. Water outlet anti-electric wall, 3. Magnetic field generating component, 31. Electromagnetic coil, 311. Electromagnetic core, 312. Coil support, 313. Electromagnetic yoke, 314. Magnetic pole plate, 315. Magnetic pole carrier, 316. Solid Fixed screw, 32, electromagnetic winding, 321, winding support, 322, winding seat, 323, contact plate, 4, electromagnetic field control component, 41, spectrum power generator, 42, power input module, 421, power input electrode, 422, power output electrode, 43, magnetic field output module, 431, magnetic field input electrode, 432, magnetic field output electrode, 44, electric field output module, 441, electric field input electrode, 442, electric field output electrode. DETAILED DESCRIPTION

[0034] In order to make the field-effect activated water machine suitable for large-flow scenarios such as agriculture, aquaculture, and community water supply, the research team further developed magnetofluid effect water treatment equipment based on the principle of field-effect water treatment. Its principle and theoretical support are: for reactions involving free radical pairs, the magnetic field can cause the covalent bonds of the compounds to be split, electrons to be transferred, or hydrogen atoms to be transferred, which can form free radical pairs. The occurrence of free radical pair polarization causes them to be oriented in space through spin.

[0035] According to the different orientations of the two spin vectors of the free radical pair, the recombination of free radicals exists in the form of singlet state (S) and triplet state (T+, T0, T-), and the recombination of free radicals can only occur between singlet radical pairs.

[0036] Under certain conditions, singlet radical pairs and triplet radical pairs can transform into each other, resulting in the so-called intersystem transition.

[0037] According to the Zeeman mechanism, in the absence of an external magnetic field, all three triplet states and the singlet state are energy degenerate and can be converted into each other; when an external magnetic field is applied to the water, the three sub-states of the triplet state will undergo Zeeman splitting, the energy of the T+ state free radical increases, the energy of the T- state free radical decreases, the energies of the T0 state and the S state remain unchanged, and only the T0 state and the S state can be converted into each other. The triplet radical pair can only recombine when it is converted into a singlet radical pair, and the probability of free radical recombination is proportional to the total number of singlet states; therefore, controlling the conversion rate between the triplet state and the singlet state by the strength of the external magnetic field can effectively reduce the recombination probability of free radicals and increase the yield of free radicals.

[0038] Based on this theory, the research team further developed a magnetofluid effect water treatment system supported by electromagnetics, motor principles and magnetofluid technology to address the shortcomings of small flow rate and equipment miniaturization in the background technology.

[0039] The following is combined with Figure 1-8 The present invention is described in further detail. Example 1

[0040] The embodiment of the present invention discloses an active water treatment device based on magnetic fluid field effect, referring to Figure 1 ,include: The water treatment component 1 is used to temporarily store water to be treated and to perform active treatment on the water using electric and / or magnetic fields; The water delivery component 2 is installed and connected to the water inlet and outlet ends of the water treatment component 1, and is used to continuously deliver water to the water treatment component 1; The magnetic field generating component 3 is installed outside the water treatment component 1 and is used to generate a magnetic field effect to act on the water in the water treatment component 1; The electromagnetic field control component 4 is connected to the water treatment component 1 and the magnetic field generating component 3 through a wire, and is used to control the water treatment component 1 and the magnetic field generating component 3 to generate electric field and / or magnetic field and treat the water body.

[0041] Reference Figure 2 The water treatment component 1 includes a water reservoir 11, and a water inlet 12 and a water outlet 13 are respectively provided at both ends of the water reservoir 11. The water delivery component 2 is respectively connected to the water inlet 12 and the water outlet 13 and continuously delivers water to the water reservoir 11 through the water inlet 12 and the water outlet 13.

[0042] Reference Figure 2 The water reservoir 11 is provided with and connected to a water electrode A14 and a water electrode B15, and the water electrode A14 and the water electrode B15 are respectively provided near the water inlet 12 and the water outlet 13.

[0043] The water storage tank 11 is made of corrosion-resistant stainless steel or high-strength plastic to ensure the durability and chemical corrosion resistance of the equipment. The electrode material is selected from materials with good conductivity to ensure the electrical conductivity and durability of the electrode. The wire material uses copper wire or aluminum wire with good insulation performance to ensure stable current transmission. The magnetic field generating component 3 is made of high magnetic permeability materials, such as iron-silicon alloy, to enhance the magnetic field effect.

[0044] The water reservoir 11 is processed by mold forming technology to process the main body of the water reservoir 11 to ensure the precise positioning of the water inlet and the water outlet. The electrodes are installed on the inner wall of the water reservoir 11 near the water inlet 12 and the water outlet 13. The water electrode A14 and the water electrode B15 are fixedly installed to ensure that the electrodes are in full contact with the water body. The magnetic field generating component 3 is wound and installed on the outside of the water reservoir 11. The electromagnetic field control component 4 and the control circuit ensure the integrity and functionality of the wire connection.

[0045] Fix the water reservoir 11 on the main body of the equipment to ensure its stability. Connect the water inlet 12 and the water outlet 13 to the water delivery component 2 respectively. Use sealing materials to ensure that there is no water leakage at the connection. Fix the water electrode A14 on the inner wall of the water reservoir 11 near the water inlet 12, and fix the water electrode B15 on the inner wall of the water reservoir 11 near the water outlet 13. Ensure that the water electrode A14 and the water electrode B15 are in full contact with the water in the water reservoir 11. Ensure that the water delivery component 2 is tightly connected to the water inlet 12 and the water outlet 13 of the water reservoir 11 to avoid water leakage. Adjust the pipe diameter of the water delivery component 2 according to the inlet and outlet water flow requirements of the water reservoir 11. Fix the magnetic field generating component 3 on the outside of the water reservoir 11 to ensure that the magnetic field can effectively act on the water in the water reservoir 11. Connect the electromagnetic field control component 4 to the water electrode A14 and the water electrode B15 of the water reservoir 11 and the magnetic field generating component 3 through wires. Install a control panel to adjust the electromagnetic field parameters.

[0046] Turn on the electromagnetic field control component 4 and set the treatment parameters (electric field strength, electric field frequency, magnetic field strength). According to the water quality requirements, adjust the electromagnetic field action parameters through the control panel. The water delivery component 2 delivers the water flow to the water reservoir 11 through the water inlet 12 and discharges the treated water through the water outlet 13. Use a flow meter to monitor the inlet and outlet water flow to ensure that the water residence time in the water reservoir 11 meets the treatment requirements. The water body electrode A14 and the water body electrode B15 generate an electric field to act on the water in the water reservoir 11. The magnetic field generating component 3 generates a magnetic field to act on the water in the water reservoir 11 to enhance the treatment effect. Use the monitoring system on the electromagnetic field control component 4 to check the water treatment effect. Adjust the electric field and magnetic field parameters according to changes in water quality to ensure the best treatment effect.

[0047] Clean the inner wall and electrodes of the water storage tank 11 regularly to ensure that there is no accumulation of impurities, check whether there is any water leakage at the connection of the water delivery component 2, and check the operating status of the magnetic field generating component 3 and the electromagnetic field control component 4 to ensure the normal operation of the equipment. Example 2

[0048] On the basis of Example 1, the following is added: Reference Figure 3 and Figure 4 The water delivery component 2 includes a water inlet pipe 21 and a water outlet pipe 22. The water inlet pipe 21 is connected to the water inlet 12 of the water treatment component 1 and is connected to an external water supply device. The water outlet pipe 22 is connected to the water outlet 13 of the water treatment component 1 and is connected to an external water collection device. The water inlet pipe 21 and the water outlet pipe 22 are both insulated.

[0049] Reference Figure 3 and Figure 4 The water inlet pipe 21 is folded and coiled in the water inlet anti-electricity wall 211, and the water inlet pipe 21 is folded and coiled in the water outlet anti-electricity wall 221. The water inlet anti-electricity wall 211 is set close to the water inlet 12, and the water outlet anti-electricity wall 221 is set close to the water outlet 13.

[0050] Reference Figure 5 and Figure 6 The electromagnetic field control component 4 includes a spectrum power generator 41, which has a built-in control program or an external control circuit. The spectrum power generator 41 includes a power input module 42, a magnetic field output module 43 and an electric field output module 44. The power input module 42 is connected to an external power supply device through a power input electrode 421 and a power output electrode 422. The magnetic field output module 43 is connected to the magnetic field generating component 3 through a magnetic field input electrode 431 and a magnetic field output electrode 432 and supplies power to the magnetic field generating component 3. The electric field output module 44 is connected to the water treatment component 1 through an electric field input electrode 441 and an electric field output electrode 442 and supplies power to the water treatment component 1. The power input module 42 is connected to the magnetic field output module 43 and the electric field output module 44 through a transformer component.

[0051] The electrical parameters of the magnetic field output module 43 are an output voltage of 24V, a current of 1-3A, and a frequency of 15-24Hz. The electrical parameters of the electric field output module 44 are an output voltage of 36V, a current of 5-10A, and a frequency of 20-30 MHz.

[0052] The water inlet pipe 21 and the water outlet pipe 22 are made of pressure-resistant hose or stainless steel pipe and are insulated on the surface. The water inlet pipe 21 is folded and coiled in the water inlet anti-electricity wall 211, and the water outlet pipe 22 is folded and coiled in the water outlet anti-electricity wall 221 to ensure the insulation effect.

[0053] The water storage tank 11 is fixed on the main body of the equipment to ensure its stability. The water inlet 12 and the water outlet 13 are respectively connected to the water inlet pipe 21 and the water outlet pipe 22. Sealing materials are used to ensure that there is no water leakage at the connection. The water inlet pipe 21 is connected to the water inlet 12 and is connected to an external water supply device; the water outlet pipe 22 is connected to the water outlet 13 and is connected to an external water collection device. The water inlet pipe 21 is coiled in the water inlet anti-electricity wall 211, and the water outlet pipe 22 is coiled in the water outlet anti-electricity wall 221 to ensure the insulation effect.

[0054] The flow range of water delivery component 2 is 10-50L / min, which can be flexibly adjusted according to processing requirements.

[0055] The capacity of the water storage tank 11 can be selected according to the processing requirements, such as 100L to 500L. Example 3

[0056] On the basis of Example 2, the following is added: Reference Figure 2 The magnetic field generating component 3 includes an electromagnetic coil 31, which is wound on a coil support 312 and wrapped around the outer surface of an electromagnetic core 311. An electromagnetic yoke 313 and a magnetic pole plate 314 are respectively provided at both ends of the electromagnetic core 311. The magnetic pole plate 314 is arranged close to the water storage tank 11 of the water treatment component 1.

[0057] Reference Figure 2 The electromagnetic coils 31 are arranged in multiple groups along the water flow direction in the water reservoir 11, and each group consists of at least two electromagnetic coils 31 and are arranged around the outer circumference of the water reservoir 11. The magnetic pole plate 314 is an arc-shaped plate, and the magnetic pole plate 314 is tightly fixed to the outer surface of the water reservoir 11 through the magnetic pole carrier 315. The magnetic pole plate 314 is fixed to the magnetic pole carrier 315 by fixing screws 316, and the magnetic pole carrier 315 is sleeved and fixed to the outer surface of the water reservoir 11.

[0058] The electromagnet core 311 is made of high magnetic permeability material to ensure the maximization of the magnetic field effect. The electromagnetic coil 31 is wound with high-temperature resistant insulating enameled wire to ensure that each group of electromagnetic coils is arranged along the direction of water flow in the water tank 11. Each group of electromagnetic coils consists of at least two electromagnetic coils 31, which are wound on the coil support 312 and wrapped together on the outer surface of the electromagnet core 311. The electromagnetic yoke 313 is processed with high-strength ferromagnetic material and installed at both ends of the electromagnet core 311 to strengthen the magnetic field path. The pole plate 314 is designed as an arc plate and is processed with high magnetic permeability material to ensure a close fit with the outer surface of the water tank 11. The pole carrier 315 is made of corrosion-resistant metal material and is designed to be sleeved on the outer surface of the water tank 11. The fixing screws 316 are processed using standardized metal screws to ensure that the pole plate 314 is firmly fixed to the pole carrier 315 through the fixing screws 316.

[0059] The electromagnetic coil 31 is evenly wound on the coil support 312, and multiple groups are set along the water flow direction of the water reservoir 11, ensuring that each group of electromagnetic coils is arranged around the outer circumference of the water reservoir 11, and the coil support 312 is installed together with the electromagnetic core 311 to ensure effective conduction of the magnetic field. The magnetic pole plate 314 is tightly fixed to the outer surface of the water reservoir 11 through the magnetic pole carrier 315 to ensure that the arc plate fits accurately with the outer surface of the water reservoir 11. The magnetic pole plate 314 is fixed to the magnetic pole carrier 315 with fixing screws 316 to ensure its stability, and the electromagnetic yoke 313 is installed at both ends of the electromagnetic core 311 to ensure the integrity of the magnetic circuit and the effectiveness of the magnetic field.

[0060] The electromagnetic field control component 4 is started, and the parameters (such as voltage, current, and frequency) of the magnetic field output module 43 are adjusted through the spectrum power generator 41 to control the magnetic field strength of the electromagnetic coil 31. The magnetic field generated by the electromagnetic coil 31 acts on the water in the water storage tank 11 through the electromagnetic core 311 and the arc-shaped magnetic pole plate 314, ensuring that the magnetic field is evenly distributed along the direction of water flow to enhance the water treatment effect. The equipment operating status is monitored in real time through the monitoring system on the electromagnetic field control component 4, and the magnetic field strength is adjusted according to the water treatment requirements to optimize the treatment effect.

[0061] Regularly check the status of the electromagnetic coil 31 and the electromagnetic core 311 to ensure that they are working properly, and check the tightness of the magnetic pole carrier 315 and the fixing screws 316 to prevent them from loosening. Example 4

[0062] The following technical solutions are added on the basis of Example 2 and replace those of Example 3: Reference Figure 7 and Figure 8 The magnetic field generating component 3 includes an electromagnetic winding 32, which is wound on a winding seat 322. The winding seat 322 is arranged on the inner side of a winding support 321. The winding support 321 is sleeved and fixed on the outer side of the water reservoir 11 of the water treatment component 1. The winding seat 322 is provided with a contact plate 323 on the side facing the center of the winding support 321. The contact plate 323 is an arc-shaped surface on the side facing the center of the winding support 321 and is arranged close to the water reservoir 11. The electromagnetic windings 32 on the winding seats 322 arranged at intervals on the winding support 321 are connected in series with each other and arranged in a circle around the outer side of the water reservoir 11.

[0063] The electromagnetic winding 32 is manufactured using high-temperature resistant insulating enameled wire to ensure its durability and effective magnetic field generation capability. Each electromagnetic winding 32 is wound on a dedicated winding seat 322 to ensure the stability and tightness of the coil. One side of the winding seat 322 is designed as a contact plate 323, and the contact plate 323 is processed into an arc surface to ensure that it can fit tightly against the outer surface of the water tank 11.

[0064] Fix the winding support 321 to the outside of the water reservoir 11 to ensure its stability and accurate position. Install the winding seat 322 on the inner side of the winding support 321 according to the designed interval, and wind the electromagnetic winding 32 on each winding seat 322, ensuring that the contact plate 323 on the winding seat 322 faces the center side of the winding support 321 and is close to the outer surface of the water reservoir 11. Connect the electromagnetic windings 32 on the interval-arranged winding seats 322 in series and arrange them around the outer circumference of the water reservoir 11 to ensure that the electrical connection of the electromagnetic winding 32 is reliable, so as to achieve unified electromagnetic field control.

[0065] The magnetic field generated by the electromagnetic winding 32 acts on the water in the water storage 11 through the contact plate 323, ensuring uniform action of the electromagnetic field and enhancing the water treatment effect.

[0066] The above are all preferred embodiments of the present invention, and are not intended to limit the scope of protection of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the scope of protection of the present invention.

Claims

1. An active water treatment device based on magnetic fluid field effect, characterized in that: include: A water treatment component (1) is used to temporarily store water to be treated and to perform active treatment on the water using an electric field and / or a magnetic field; A water delivery component (2) is installed and connected to the water inlet and outlet ends of the water treatment component (1) and is used to continuously deliver water into the water treatment component (1); A magnetic field generating component (3) is installed outside the water treatment component (1) and is used to generate a magnetic field effect to act on the water in the water treatment component (1); The electromagnetic field control component (4) is connected to the water treatment component (1) and the magnetic field generating component (3) via a wire, and is used to control the water treatment component (1) and the magnetic field generating component (3) to generate an electric field and / or a magnetic field and treat the water body.

2. The active water treatment equipment based on magnetic fluid field effect according to claim 1, characterized in that: The water treatment component (1) comprises a water reservoir (11), and a water inlet (12) and a water outlet (13) are respectively provided at both ends of the water reservoir (11). The water delivery component (2) is respectively connected to the water inlet (12) and the water outlet (13) and continuously delivers water to the water reservoir (11) through the water inlet (12) and the water outlet (13).

3. The active water treatment equipment based on magnetic fluid field effect according to claim 2, characterized in that: A water electrode A (14) and a water electrode B (15) are provided on and connected to the water reservoir (11), and the water electrode A (14) and the water electrode B (15) are respectively provided near the water inlet (12) and the water outlet (13).

4. The active water treatment equipment based on magnetic fluid field effect according to claim 1 or 2, characterized in that: The water delivery assembly (2) comprises a water inlet pipe (21) and a water outlet pipe (22). The water inlet pipe (21) is connected to the water inlet (12) of the water treatment assembly (1) and is connected to an external water supply device. The water outlet pipe (22) is connected to the water outlet (13) of the water treatment assembly (1) and is connected to an external water collection device. Both the water inlet pipe (21) and the water outlet pipe (22) are insulated.

5. The active water treatment equipment based on magnetic fluid field effect according to claim 4, characterized in that: The water inlet pipe (21) is folded and coiled inside the water inlet anti-electricity wall (211), and the water inlet pipe (21) is folded and coiled inside the water outlet anti-electricity wall (221). The water inlet anti-electricity wall (211) is arranged close to the water inlet (12), and the water outlet anti-electricity wall (221) is arranged close to the water outlet (13).

6. The active water treatment equipment based on magnetic fluid field effect according to claim 1 or 2, characterized in that: The magnetic field generating assembly (3) comprises an electromagnetic coil (31), the electromagnetic coil (31) being wound on a coil support (312) and wrapped together on the outer surface of an electromagnetic core (311), an electromagnetic yoke (313) and a magnetic pole plate (314) being respectively provided at both ends of the electromagnetic core (311), and the magnetic pole plate (314) being provided in close proximity to the water storage container (11) of the water treatment assembly (1).

7. The active water treatment equipment based on magnetic fluid field effect according to claim 6, characterized in that: The electromagnetic coils (31) are arranged in multiple groups along the direction of water flow in the water reservoir (11), and each group is composed of at least two electromagnetic coils (31) and arranged around the outer circumference of the water reservoir (11). The magnetic pole plate (314) is an arc-shaped plate. The magnetic pole plate (314) is tightly fixed to the outer surface of the water reservoir (11) through a magnetic pole carrier (315). The magnetic pole plate (314) is fixed to the magnetic pole carrier (315) through a fixing screw (316). The magnetic pole carrier (315) is sleeved and fixed to the outer surface of the water reservoir (11).

8. The active water treatment equipment based on magnetic fluid field effect according to claim 1 or 2, characterized in that: The magnetic field generating assembly (3) comprises an electromagnetic winding (32), the electromagnetic winding (32) being wound on a winding seat (322), the winding seat (322) being arranged on the inner side of a winding support (321), the winding support (321) being sleeved and fixed on the outer side of a water reservoir (11) of the water treatment assembly (1), the winding seat (322) being provided with a contact plate (323) on the side facing the center of the winding support (321), the contact plate (323) being an arc-shaped surface on the side facing the center of the winding support (321) and being arranged in close contact with the water reservoir (11), the electromagnetic windings (32) on the winding seats (322) arranged at intervals on the winding support (321) being connected in series with each other and being arranged in a circular arrangement around the outer circumference of the water reservoir (11).

9. The active water treatment equipment based on magnetic fluid field effect according to claim 1, characterized in that: The electromagnetic field control component (4) includes a spectrum power generator (41), the spectrum power generator (41) has a built-in control program or an external control circuit, the spectrum power generator (41) includes a power input module (42), a magnetic field output module (43) and an electric field output module (44), the power input module (42) is connected to an external power supply device through a power input electrode (421) and a power output electrode (422), the magnetic field output module (43) is connected to the magnetic field generating component (3) through a magnetic field input electrode (431) and a magnetic field output electrode (432) and supplies power to the magnetic field generating component (3), the electric field output module (44) is connected to the water treatment component (1) through an electric field input electrode (441) and an electric field output electrode (442) and supplies power to the water treatment component (1), and the power input module (42) is connected to the magnetic field output module (43) and the electric field output module (44) respectively through a transformer component.

10. The active water treatment equipment based on magnetic fluid field effect according to claim 9, characterized in that: The electrical parameters of the magnetic field output module (43) are an output voltage of 24V, a current of 1-3A, and a frequency of 15-24Hz, and the electrical parameters of the electric field output module (44) are an output voltage of 36V, a current of 5-10A, and a frequency of 20-30 MHz.

Citation Information

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