A crop root magnetization, oxygen supply and magnetization device

By designing magnetization, oxygen supply, and magnetization equipment, and utilizing the alternating design of magnetic threads and enlarged sections, the problem of simultaneous magnetization and oxygen supply in existing technologies has been solved, thus enabling effective growth of crop roots.

CN224583928UActive Publication Date: 2026-08-04ANHUI YINGAN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI YINGAN TECHNOLOGY CO LTD
Filing Date
2025-07-14
Publication Date
2026-08-04

AI Technical Summary

Technical Problem

In existing technologies, magnetization devices can only magnetize and cannot supply oxygen at the same time, which restricts the growth of crop roots in an oxygen-deficient environment and may lead to root rot and plant death.

Method used

A crop root magnetization, oxygen supply, and magnetization device was designed, including a water pump, water pipes, a buffer pool, a crop platform, and a magnetization component. Through the alternating design of magnetic threads and enlarged sections, combined with the threaded line and the wave-shaped water flow channel, the magnetization and oxygen supply functions of the water flow are realized.

Benefits of technology

It improves the magnetization and oxygen supply of water flow, enhances the growth capacity of crop roots, prevents root rot, and meets the growth needs of crop roots.

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Abstract

This utility model discloses a crop root magnetization, oxygen supply, and magnetization device. By simultaneously supplying magnetization to water flowing through a magnetic thread and utilizing the alternating spatial arrangement of the close-fitting section and the enlarged section, the water flow can acquire oxygen and magnetization capabilities and be magnetized as it passes through the magnetization component, thus meeting the requirements for crop root growth. This solves the defect in existing technologies that cannot simultaneously magnetize and oxygenate water flow to crop roots. The inner surfaces of both the close-fitting and enlarged sections are provided with threaded lines. When water flows through these threaded lines, turbulence is further generated, enhancing the interaction between water and the magnetic field, as well as the mixing of water and air, thereby improving the oxygen supply and magnetization effects. The wavy water flow channel increases the turbulence of the water flow, facilitating sufficient contact between water and air, thereby increasing the dissolved oxygen content in the water and enhancing the oxygen supply capacity to the crop roots.
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Description

Technical Field

[0001] This utility model relates to the field of crop root technology, and more particularly to a crop root magnetization, oxygen supply and magnetization device. Background Technology

[0002] Hydroponics is a form of soilless cultivation. In this cultivation method, the mineral elements needed by the plants are provided through a nutrient solution. The nutrient solution is an aqueous solution containing various nutrients required for plant growth, prepared in specific proportions according to the different growth stages and species of the plant. The plant roots are in direct contact with the nutrient solution, allowing for more efficient absorption of nutrients and water.

[0003] When crop roots lack oxygen, they undergo anaerobic respiration. Anaerobic respiration in plants produces substances such as alcohol and carbon dioxide. Taking corn as an example, in oxygen-deficient environments such as flooding, the alcohol produced by anaerobic respiration in its roots accumulates within the cells, causing toxicity to root cells. Alcohol denatures proteins, damaging cell structure and function, thus affecting the normal physiological activities of the root system. In severe cases, it can lead to root rot and ultimately the death of the entire plant. Therefore, hydroponically grown crops require a large amount of oxygen.

[0004] A suitable magnetic field can promote crop root growth. The magnetic field may affect biochemical processes within root cells. For example, it may affect cell membrane permeability, making it easier for root cells to absorb nutrients from the external environment. When the ability of root cells to absorb nutrients is enhanced, cell division and growth rates may accelerate, thereby promoting root elongation and branching.

[0005] The prior art CN 218089064 U discloses a fluid magnetization device, in which a tube is screwed into an outer magnetization component through a first threaded sleeve, and the magnetized cylinder is screwed into an inner magnetization component through a second threaded sleeve. The cylinder channel of the magnetized cylinder is connected to an inlet valve port on the side near the first threaded sleeve, and an outlet valve port is connected to the side near the second threaded sleeve. Through the dual combination of the outer and inner magnetization components, it can perform internal and external spiral guidance and magnetization work on high-flux magnetized carrier water flow of carbon concentrate and carbon points. On the one hand, it can improve the comprehensiveness of water flow magnetization, ensure comprehensive magnetization of water flow inside and outside, and improve magnetization efficiency, but it can only perform magnetization and cannot supply oxygen.

[0006] Therefore, it is necessary to improve the magnetization devices in the existing technology to solve the above problems. Summary of the Invention

[0007] This invention overcomes the shortcomings of the prior art and provides a device for magnetizing crop roots, supplying oxygen, and supplying magnets.

[0008] To achieve the above objectives, the technical solution adopted by this utility model is: a crop root magnetization, oxygen supply, and magnetization device, comprising: A water pump is used to provide power for the flow of water; A water pipe, used to control the water path, is connected to the water pump; A buffer tank, used to buffer the water, is connected to the water pump; A crop platform for supporting crops includes a platform base and an soaking chamber, the soaking chamber being connected to the water pipe; A magnetization assembly for magnetizing water, connected to the water pipe, the magnetization assembly comprising: A magnet assembly, used to provide magnetic force; A magnetic thread, used to guide water flow, is fixedly connected to the magnet assembly and communicates with the water pipe; A magnetic housing is fixedly connected to the magnetic thread, and the magnetic housing, the magnetic thread, and the magnet assembly are coaxially arranged in order from the outside to the inside. The magnetic housing includes several contact sections and several enlarged sections. The inner surface of the contact section is in contact with the outer contour of the magnetic thread. The distance between the inner surface of the enlarged section and the axis is greater than the distance between the outer contour of the magnetic thread and the axis. Both the contact section and the inner surface of the enlarged section are provided with thread lines.

[0009] In a preferred embodiment of this utility model, the common axis of the magnetic shell, the magnetic thread, and the magnet assembly is horizontally arranged.

[0010] In a preferred embodiment of this invention, a plurality of the clamping segments and a plurality of the enlarging segments are alternately distributed along the axis.

[0011] In a preferred embodiment of this invention, the helical direction of the thread is opposite to the helical direction of the magnetic thread.

[0012] In a preferred embodiment of the present invention, the magnet assembly includes a magnet assembly base and a plurality of permanent magnets. The magnet assembly base is provided with a magnet cavity, and the plurality of permanent magnets are located in the magnet cavity.

[0013] In a preferred embodiment of the present invention, a plurality of permanent magnets are uniformly and linearly distributed in the magnet cavity, a spacer is provided between each adjacent permanent magnet, and the plurality of permanent magnets are fixedly connected to the magnet assembly base.

[0014] In a preferred embodiment of this utility model, the buffer pool is provided with a water flow channel and a storage cavity, and the water flow channel and the storage cavity are connected.

[0015] In a preferred embodiment of this utility model, the water flow channel is a corrugated pipe, and the water flow channel is connected to the upper end of the storage cavity.

[0016] In a preferred embodiment of this utility model, the ratio between the distance between the inner surface of the enlarged section and the axis and the distance between the outer contour of the magnetic thread and the axis is 1.5-2.5:1.

[0017] In a preferred embodiment of this utility model, the water pump, the water pipe, the magnetization component, the buffer pool, and the crop platform are arranged sequentially according to the water flow direction.

[0018] This utility model solves the defects existing in the background technology, and has the following beneficial effects: This invention provides a device for magnetizing, oxygenating, and supplying magnets to crop roots. By supplying magnets to water flowing through a magnetic thread and utilizing the alternating space of the close section and the widening section, compared to existing magnetizing devices, the device enables water to receive oxygen and magnetization as it passes through the magnetizing component, thereby meeting the requirements for crop root growth and solving the defect in existing technologies that cannot simultaneously magnetize and oxygenate water flow to crop roots.

[0019] In this invention, the inner surfaces of both the tight section and the enlarged section are provided with threaded lines. When water flows through these threaded lines, it will generate further turbulence. Compared with the prior art, this enhances the interaction between water and magnetic field and the mixing of water and air, thereby improving the oxygen supply and magnetization effect.

[0020] In this invention, the wave-shaped water flow channel can increase the turbulence of the water flow. Compared with the prior art, this is conducive to the full contact between water and air, thereby increasing the dissolved oxygen content in the water and enhancing the oxygen supply capacity to crop roots. Attached Figure Description

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments; Figure 1 This is a perspective structural diagram of a preferred embodiment of the present invention; Figure 2 This is a perspective view of the magnetization component according to a preferred embodiment of the present invention; Figure 3 This is a cross-sectional view of the magnetic shell of a preferred embodiment of the present invention; In the diagram: 100, water pump; 200, water pipe; 300, buffer pool; 400, crop platform; 500, magnetization component; 510, magnet assembly; 520, magnetic thread; 530, magnetic housing; 531, clamping section; 532, enlarged section. Detailed Implementation

[0022] The present invention will now be described in further detail with reference to the accompanying drawings and embodiments. These drawings are simplified schematic diagrams, which are only used to illustrate the basic structure of the present invention in a schematic manner, and therefore only show the components related to the present invention.

[0023] like Figure 1 and Figure 2 As shown, a crop root magnetization, oxygen supply, and magnetization device includes: Pump 100 provides the power for water flow; it is the power source for the entire system. It ensures that water flows along a predetermined path in pipes such as water pipe 200, continuously supplying water for subsequent processes such as magnetization and oxygenation. Stable hydrodynamics is fundamental to achieving water, oxygen, and magnetization for crop roots.

[0024] Water pipe 200, used to control the water path, is connected to water pump 100. Water pipe 200 controls the water path, guiding the water flow rationally through various components such as magnetization component 500, enabling the water to undergo magnetization and oxygenation treatment under specific conditions. Through precise pipeline design, it ensures that the water flows through each functional section at an appropriate speed and flow rate, providing a uniform and continuous treatment effect to the crop roots.

[0025] The buffer tank 300 is used to buffer the water and is connected to the water pump 100. When the water pump 100 delivers water, the buffer tank 300 can adjust the impact force of the water flow to prevent the water flow from being too fast or too strong and directly impacting the subsequent magnetization component 500 and the crop roots.

[0026] The crop platform 400, used to support the crop, includes a platform base and an soaking chamber, which is connected to a water pipe 200. The crop platform 400 serves as the carrier supporting crop growth; its soaking chamber, connected to the water pipe 200, allows treated water to directly act on the crop roots. This design ensures that the roots are fully immersed in magnetized, oxygen-rich water, providing a favorable physical environment for root growth.

[0027] Magnetization component 500, used for magnetizing water, is connected to water pipe 200. Magnetization component 500 includes: Magnet assembly 510 is used to provide magnetic force; Magnetic thread 520 is used to guide water flow, is fixedly connected to magnet assembly 510, and is connected to water pipe 200; The magnetic housing 530 is fixedly connected to the magnetic thread 520, and the magnetic housing 530, the magnetic thread 520 and the magnet assembly 510 are coaxially arranged from the outside to the inside. like Figure 3As shown, the magnetic housing 530 includes several contact sections 531 and several enlarged sections 532. The inner surface of the contact section 531 is in contact with the outer contour of the magnetic thread 520. The distance between the inner surface of the enlarged section 532 and the axis is greater than the distance between the outer contour of the magnetic thread 520 and the axis. Both the contact section 531 and the enlarged section 532 have threaded lines on their inner surfaces. The helical direction of the threaded lines is opposite to that of the magnetic thread 520. The magnetic thread 520 is connected to the water pipe 200, and its helical direction is opposite to that of the threaded lines. This special structure guides the water flow to form a specific flow pattern within the magnetization assembly 500. The water flows forward in a rotating motion along the magnetic thread 520, allowing water molecules to be more fully magnetized in the magnetic field. Furthermore, the rotation generates centrifugal force, which helps break up air bubbles in the water, increases the contact area between water and air, and further increases the dissolved oxygen content in the water.

[0028] The water pump 100, water pipe 200, magnetization component 500, buffer pool 300 and crop platform 400 are arranged in sequence according to the water flow direction.

[0029] By using the alternating space of the close section 531 and the enlarged section 532 to supply magnetism to the water flow through the magnetic thread 520, the water flow can obtain oxygen and magnetism and be magnetized when passing through the magnetization component 500, thus meeting the requirements for crop root growth and solving the defect of the prior art that cannot simultaneously magnetize and supply oxygen to the water flow of crop roots.

[0030] The magnetic housing 530, magnetic thread 520, and magnet assembly 510 are arranged horizontally along a common axis. Several contact sections 531 and several enlarged sections 532 are alternately distributed along the axis. The magnetic housing 530 is coaxially arranged with the magnetic thread 520 and magnet assembly 510, and includes contact sections 531 and enlarged sections 532. The inner surface of the contact section 531 is in contact with the outer contour of the magnetic thread 520, allowing water to make close contact between the contact section 531 and the magnetic thread 520, thus better receiving magnetization. The distance between the inner surface of the enlarged section 532 and the axis is greater than the distance between the outer contour of the magnetic thread 520 and the axis. When water flows through the enlarged section 532, the flow velocity decreases and the pressure increases, which facilitates the release of gas from the water and also provides more space for the water to be magnetized. Both the inner surfaces of the close-fitting section 531 and the enlarged section 532 are provided with spiral lines. When the water flows through these spiral lines, it will generate further turbulence, enhance the interaction between water and magnetic field and the mixing of water and air, thereby improving the oxygen supply and magnetization effect.

[0031] The magnet assembly 510 includes a magnet assembly base and several permanent magnets. The magnet assembly base has a magnet cavity, and the several permanent magnets are located in the magnet cavity. The several permanent magnets are evenly and linearly distributed in the magnet cavity, and a spacer is provided between each adjacent permanent magnet. The several permanent magnets are fixedly connected to the magnet assembly base.

[0032] The magnetic force provided by the magnet assembly 510 is the key factor in achieving water magnetization. The permanent magnets are uniformly and linearly distributed within the magnet cavity, with spacers between adjacent magnets. This design generates a stable and uniform magnetic field. When water flows through the magnetic field region, the microstructure of the water molecules, such as their electron clouds, changes under the influence of the magnetic field, thus achieving water magnetization.

[0033] The buffer tank 300 is equipped with a water flow channel and a storage chamber, which are connected. The water flow channel is a corrugated pipe, and it is connected to the upper end of the storage chamber. This internal structure, with its water flow channel and storage chamber, increases the turbulence of the water flow, facilitating full contact between water and air, thereby increasing the dissolved oxygen content in the water and enhancing the oxygen supply capacity to crop roots.

[0034] The ratio of the distance between the inner surface of the enlarged section 532 and the axis to the distance between the outer contour of the magnetic thread 520 and the axis is 1.5-2.5:1. The larger distance between the inner surface of the enlarged section 532 and the axis results in a decrease in water velocity and an increase in pressure when water flows through it, which is beneficial for increasing dissolved oxygen in the water. Simultaneously, the presence of threads on the inner surface of the enlarged section 532 guides the water flow into turbulence, further increasing the contact area between water and air, allowing more oxygen to dissolve in the water, thereby increasing the dissolved oxygen content and providing sufficient oxygen for crop roots to meet their growth requirements.

[0035] When the water flows from the close section 531 into the widening section 532, the sudden increase in space will cause some turbulence and eddies. This will help release oxygen in the water and form tiny bubbles. These bubbles can adhere to the surface of the crop roots, further improving the root system's oxygen absorption efficiency, enhancing root respiration, and promoting root growth and development.

[0036] The appropriate ratio between the inner surface of the enlarged section 532 and the distance between the outer contour and the axis of the magnetic thread 520 allows the magnetic thread 520 to better guide the water flow. When the water flows through the magnetic thread 520, it moves along the helical direction of the thread, generating a strong rotational motion. After entering the enlarged section 532, the rotating water continues to flow within it. Due to the increased space, the water's rotation becomes more free, forming larger eddies and turbulence. This helps water molecules interact more fully with the magnetic field, resulting in higher magnetization and a better magnetization effect.

[0037] In use, the water pump 100 is started, providing power for the water flow. The water flows into the magnetization component 500, sequentially passing through the magnetic field region formed by the magnetic thread 520 and the magnet assembly 510. Guided by the inner surfaces of different sections of the magnetic outer shell 530, the water is magnetized. Furthermore, as it flows through the close-fitting section 531 and the expanding section 532, the flow pattern is optimized due to the alternating spatial changes and the effect of the threaded lines, further enhancing the oxygen and magnetization effects. The water then flows through the water pipe 200 into the buffer tank 300, where it undergoes buffering and initial oxygen exchange. Simultaneously, the water flows through the water flow channel and storage chamber within the buffer tank 300. Finally, the magnetized, oxygenated, and magnetized water flows into the soaking chamber of the crop platform 400, providing a suitable water environment for the crop roots to grow.

[0038] Based on the preferred embodiments of this utility model described above, those skilled in the art can make various changes and modifications without departing from the technical concept of this utility model. The technical scope of this utility model is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. A device for magnetizing, oxygenating, and magnetizing crop roots, characterized in that, include: A water pump (100) is used to provide power for the flow of water; A water pipe (200), used to control the path of water, is connected to the water pump (100); A buffer tank (300) for buffering water is connected to the water pump (100); A crop platform (400) for supporting crops includes a platform base and an soaking chamber, the soaking chamber being connected to the water pipe (200); A magnetization assembly (500) for magnetizing water, connected to the water pipe (200), the magnetization assembly (500) comprising: Magnet assembly (510) is used to provide magnetic force; A magnetic thread (520) is used to guide the water flow, is fixedly connected to the magnet assembly (510), and is connected to the water pipe (200); A magnetic housing (530) is fixedly connected to the magnetic thread (520), and the magnetic housing (530), the magnetic thread (520) and the magnet assembly (510) are coaxially arranged from the outside to the inside. The magnetic housing (530) includes several close-fitting sections (531) and several enlarged sections (532). The inner surface of the close-fitting section (531) is in contact with the outer contour of the magnetic thread (520). The distance between the inner surface of the enlarged section (532) and the axis is greater than the distance between the outer contour of the magnetic thread (520) and the axis. Both the close-fitting section (531) and the enlarged section (532) have threaded lines on their inner surfaces.

2. The crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: The common axis of the magnetic housing (530), the magnetic thread (520), and the magnet assembly (510) is horizontally arranged.

3. The crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: Several of the aforementioned close-fitting segments (531) and several of the aforementioned enlarged segments (532) are alternately distributed along the axis.

4. The crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: The helical direction of the thread is opposite to that of the magnetic thread (520).

5. The crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: The magnet assembly (510) includes a magnet assembly base and a plurality of permanent magnets. The magnet assembly base is provided with a magnet cavity, and the plurality of permanent magnets are located in the magnet cavity.

6. The crop root magnetization, oxygen supply, and magnetization device according to claim 5, characterized in that: Several permanent magnets are uniformly and linearly distributed in the magnet cavity, and a spacer is provided between each adjacent permanent magnet. The several permanent magnets are fixedly connected to the magnet assembly base.

7. The crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: The buffer pool (300) is provided with a water flow channel and a storage cavity, and the water flow channel and the storage cavity are connected.

8. The crop root magnetization, oxygen supply, and magnetization device according to claim 7, characterized in that: The water flow channel is a corrugated pipe, and the water flow channel is connected to the upper end of the storage cavity.

9. The crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: The ratio between the distance between the inner surface of the enlarged section (532) and the axis and the distance between the outer contour of the magnetic thread (520) and the axis is 1.5-2.5:

1.

10. A crop root magnetization, oxygen supply, and magnetization device according to claim 1, characterized in that: The water pump (100), the water pipe (200), the magnetization component (500), the buffer pool (300), and the crop platform (400) are arranged in sequence according to the direction of water flow.