Modular wetland water purification assembly

The wetland water purification device, with its modular design and magnetic components, solves the problems of fixed structure and low efficiency of traditional wetland water purification devices, enabling flexible layout, increasing oxygen content and evaporation, and reducing installation and maintenance costs.

CN224313350UActive Publication Date: 2026-06-02武汉优水生态环境科技有限公司

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
武汉优水生态环境科技有限公司
Filing Date
2025-06-05
Publication Date
2026-06-02

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    Figure CN224313350U_ABST
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Abstract

The utility model belongs to water quality purification equipment technical field especially for a kind of modular wetland water quality purification combined device, including foam planting tray, the edge of foam planting tray is bonded with plastic outer ring, the lower surface of foam planting tray is bonded with water-absorbing cotton cloth, and foam planting tray, plastic outer ring and water-absorbing cotton cloth constitute the planting module floating on the water surface, the both sides of planting module are provided with magnetic attraction piece, and adjacent two planting modules are fixed by magnetic attraction piece, and planting module is fan-shaped, and multiple planting modules are fixed after being formed into annular structure by magnetic attraction piece;It adopts the fan-shaped planting module composed of foam planting tray, plastic outer ring and water-absorbing cotton cloth, and can be flexibly combined into annular structure by magnetic attraction piece, and this design makes the device can quickly adjust layout according to the actual situation of wetland, greatly improves the adaptability and flexibility of device.
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Description

Technical Field

[0001] This utility model belongs to the technical field of water purification equipment, specifically relating to a modular wetland water purification combination device. Background Technology

[0002] In the current field of water environment management, wetland water purification faces many challenges.

[0003] Traditional wetland water purification devices often suffer from fixed structures and poor layout flexibility, making it difficult to adapt them to different wetland topography and water quality conditions. Furthermore, existing devices are inefficient at increasing water oxygen levels, failing to effectively meet the needs of the water's ecological cycle, and insufficient evaporation also affects the wetland's natural purification capacity. In addition, traditional devices are not highly modular, making installation and maintenance cumbersome, resulting in high treatment costs. Summary of the Invention

[0004] This utility model addresses the shortcomings of existing technologies by providing a modular wetland water purification combination device, the specific technical solution of which is as follows:

[0005] A modular wetland water purification assembly includes a foam planting tray with a plastic outer ring bonded to its edge and absorbent cotton cloth bonded to its lower surface. The foam planting tray, plastic outer ring, and absorbent cotton cloth form a planting module that floats on the water surface. Magnetic attachments are provided on both sides of the planting module, and adjacent planting modules are fixed together by these magnetic attachments. The planting modules are fan-shaped, and multiple planting modules, when fixed together by the magnetic attachments, form a ring structure. The upper surface of the foam planting tray has a first limiting groove and a second limiting groove with the same center. Both ends of the first and second limiting grooves are penetrated by a plastic outer ring. A first limiting rod is placed in the first limiting groove, and a second limiting rod is placed in the second limiting groove. Connecting rods with equal spacing are fixed on the first and second limiting rods. A plastic float is fixed to the end of the connecting rod pointing towards the center of the first limiting rod. A water pump is movably installed in the hole in the middle of the plastic float, and the lower end of the water pump is in the water. A main pipe is screwed onto the water outlet end of the water pump. A ring array of branch pipes is welded to the upper end of the main pipe, and a nozzle is fixed to the end of the branch pipe.

[0006] Preferably, the water inlet end of the lower part of the water pump is equipped with a filter element for filtering impurities.

[0007] Preferably, the filter element includes a retaining ring fitted to the lower part of the water pump, on which a metal mesh cover for filtering impurities is welded, and the metal mesh cover has a spherical structure. A screw hole is opened on the surface of the retaining ring, and a hand screw is screwed into it, with the end of the hand screw fixed to the outer surface of the lower part of the water pump.

[0008] Preferably, the branch pipe has an arc-shaped structure, and the nozzle opening installed at the end of the branch pipe points towards the foam planting tray.

[0009] Preferably, the magnetic attractor is a magnet, which is adhered to the grooves opened on both sides of the plastic outer ring. A total of four magnets are installed on the two sides of the plastic outer ring, and the magnetic poles of the four magnets are in the same direction.

[0010] Compared with existing technologies, the beneficial effects of this utility model are as follows: First, it adopts a fan-shaped planting module composed of a foam planting tray, a plastic outer ring, and absorbent cotton cloth. This module can be flexibly combined into a ring structure via magnetic attachments. This design allows the device to quickly adjust its layout according to the actual conditions of the wetland, greatly improving its adaptability and flexibility. Second, the cooperation between the planting module and the first limiting rod, second limiting rod, and connecting rod, along with the plastic floating platform, provides stable support for the water pump, ensuring its efficient operation. After the water pump is powered on, water is drawn from the water at the inlet end and sprayed out through the main pipe, branch pipes, and nozzles. This process not only significantly increases the oxygen content in the wetland water, providing a good living environment for aquatic organisms and promoting the balance of the aquatic ecosystem, but also effectively increases the evaporation rate of the wetland water, strengthening the natural purification process of the wetland. Furthermore, the modular design makes the installation, disassembly, and maintenance of the device more convenient, reducing labor and time costs. It also facilitates the replacement or upgrading of some modules according to changes in water quality, further improving the practicality and economy of the device. Attached Figure Description

[0011] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0012] Figure 2 This is a schematic diagram of the component structure of this utility model;

[0013] Figure 3 This is a schematic diagram of the foam planting tray and plastic outer ring structure in this utility model.

[0014] Reference numerals: 1. Foam planting tray; 2. Plastic outer ring; 3. Magnet; 4. Absorbent cotton cloth; 5. First limiting groove; 6. Second limiting groove; 7. First limiting rod; 8. Second limiting rod; 9. Connecting rod; 10. Plastic floating platform; 11. Water pump; 12. Main pipe; 13. Branch pipe; 14. Nozzle; 15. Metal mesh cover; 16. Clamping ring; 17. Hand-tightening screw. Detailed Implementation

[0015] The technical solution of this utility model will now be described with reference to the accompanying drawings and embodiments.

[0016] Please see Figure 1-3This embodiment provides the following technical solution: a modular wetland water purification combination device, including a foam planting tray 1, a plastic outer ring 2 bonded to the edge of the foam planting tray 1, and a water-absorbing cotton cloth 4 bonded to the lower surface of the foam planting tray 1. The foam planting tray 1, the plastic outer ring 2, and the water-absorbing cotton cloth 4 form a planting module floating on the water surface. Magnetic suction components are provided on both sides of the planting module, and two adjacent planting modules are fixed by magnetic suction components. The planting module is fan-shaped, and multiple planting modules are fixed by magnetic suction components to form a ring structure. The upper surface of the foam planting tray 1 is provided with a first limiting groove 5 and a second limiting groove 6 with the same center. Both ends of the limiting groove 5 and the second limiting groove 6 pass through the plastic outer ring 2. A first limiting rod 7 is placed in the first limiting groove 5, and a second limiting rod 8 is placed in the second limiting groove 6. Connecting rods 9 are fixed on the first limiting rod 7 and the second limiting rod 8 at equal intervals. A plastic float 10 is fixed at one end of the connecting rod 9 pointing to the center of the first limiting rod 7. A water pump 11 is movably installed in the hole opened in the middle of the plastic float 10, and the lower end of the water pump 11 is in the water. A main pipe 12 is screwed onto the water outlet end of the water pump 11. A branch pipe 13 distributed in a ring array is welded to the upper end of the main pipe 12. A nozzle 14 is fixed to the end of the branch pipe 13.

[0017] In this embodiment, a planting module floating on the water surface is formed by a foam planting tray 1, a plastic outer ring 2, and absorbent cotton cloth 4. Magnetic suction components are provided on both sides of the planting module. The planting module is fan-shaped, so that multiple planting modules can be fixed by the magnetic suction components to form a ring structure. This allows the planting modules forming the ring structure to support the first limiting rod 7 through the first limiting groove 5 and the second limiting rod 8 through the second limiting groove 6. At the same time, connecting rods 9 with equal intervals are fixed on the first limiting rod 7 and the second limiting rod 8 to support the plastic floating platform 10, which facilitates the plastic floating platform 10 to support the water pump 11. This makes it easier for the lower end of the water pump 11 to be inserted into the water, and for the water pump 11 to draw water from the lower inlet end after being powered on. The water then enters the branch pipe 13 through the main pipe 12 installed at the outlet end. The nozzle 14 installed at the end of the branch pipe 13 is used to spray water out, which helps to increase the oxygen content in the wetland water and also increases the evaporation rate of the wetland water.

[0018] Specifically, a filter element for filtering impurities is installed at the water inlet end of the lower part of the water pump 11. The filter element includes a retaining ring 16 sleeved on the lower part of the water pump 11. A metal mesh cover 15 for filtering impurities is welded on the retaining ring 16. The metal mesh cover 15 has a spherical structure. A screw hole is opened on the surface of the retaining ring 16 and a hand screw 17 is screwed into it. The end of the hand screw 17 is fixed to the outer surface of the lower part of the water pump 11.

[0019] In this embodiment, the filter element installed at the bottom of the water pump 11 facilitates the filtration of impurities in the water entering the inlet of the water pump 11, preventing damage to the water pump 11 due to excessive impurities. The filter element consists of a metal mesh cover 15, a retaining ring 16, and a hand-tightening screw 17. The metal mesh cover 15 is used to filter impurities in the water, and the retaining ring 16 welded to the upper end of the metal mesh cover 15 is fitted onto the bottom of the water pump 11 and then fixed by the hand-tightening screw 17, thereby increasing the stability of the filter element fixed at the bottom of the water pump 11.

[0020] Specifically, the branch pipe 13 has an arc-shaped structure, and the nozzle 14 installed at the end of the branch pipe 13 opens towards the foam planting tray 1.

[0021] In this embodiment, the branch pipe 13 is of an arc shape, which makes it easy for the opening of the nozzle 14 to point towards the foam planting tray 1, so that the water sprayed from the nozzle 14 can be sprayed onto the aquatic plants planted on the foam planting tray 1.

[0022] Specifically, the magnetic component is a magnet 3, which is adhered to the grooves on both sides of the plastic outer ring 2. There are four magnets 3 installed on both sides of the plastic outer ring 2, and the magnetic poles of the four magnets 3 are in the same direction.

[0023] In this embodiment, a magnetic attraction component composed of magnets 3 is used, and the four magnets 3 installed on both sides of the plastic outer ring 2 have the same magnetic pole direction, which facilitates the attraction of two adjacent plastic outer rings 2 by the magnetic force of the two magnets 3, and facilitates the assembly of the planting modules.

[0024] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A modular wetland water purification assembly comprising a foam planting tray (1), characterized in that: The edge of the foam planting tray (1) is bonded with a plastic outer ring (2), and the lower surface of the foam planting tray (1) is bonded with a water-absorbing cotton cloth (4). The foam planting tray (1), the plastic outer ring (2), and the water-absorbing cotton cloth (4) form a planting module floating on the water surface. Magnetic suction pieces are provided on both sides of the planting module, and two adjacent planting modules are fixed by magnetic suction pieces. The planting module is fan-shaped, and multiple planting modules are fixed by magnetic suction pieces to form a ring structure. The upper surface of the foam planting tray (1) is provided with a first limiting groove (5) and a second limiting groove (6) with the same center. Both ends of the first limiting groove (5) and the second limiting groove (6) penetrate the plastic outer ring (2). The first limiting groove (5) 5) A first limiting rod (7) is placed inside, and a second limiting rod (8) is placed inside the second limiting groove (6). Connecting rods (9) are fixed on the first limiting rod (7) and the second limiting rod (8) at equal intervals. A plastic float (10) is fixed at one end of the connecting rod (9) pointing to the center of the first limiting rod (7). A water pump (11) is movably installed in the hole opened in the middle of the plastic float (10), and the lower end of the water pump (11) is located in the water. A main pipe (12) is screwed onto the water outlet end of the water pump (11). A branch pipe (13) with a ring array is welded to the upper end of the main pipe (12). A nozzle (14) is fixed to the end of the branch pipe (13).

2. A modular wetland water purification assembly according to claim 1, wherein: The water pump (11) is equipped with a filter element for filtering impurities at the water inlet end.

3. A modular wetland water purification assembly according to claim 2, wherein: The filter element includes a retaining ring (16) fitted onto the lower part of the water pump (11). A metal mesh cover (15) for filtering impurities is welded onto the retaining ring (16), and the metal mesh cover (15) has a spherical structure. A screw hole is opened on the surface of the retaining ring (16) and a hand screw (17) is screwed into it. The end of the hand screw (17) is fixed to the outer surface of the lower part of the water pump (11).

4. The modular wetlands water quality treatment assembly of claim 1, wherein: The branch pipe (13) has an arc-shaped structure, and the nozzle (14) installed at the end of the branch pipe (13) points towards the foam planting tray (1).

5. The modular wetlands water quality treatment assembly of claim 1, wherein: The magnetic attractor is a magnet (3). The magnet (3) is bonded to the grooves opened on both sides of the plastic outer ring (2). There are four magnets (3) installed on both sides of the plastic outer ring (2), and the magnetic poles of the four magnets (3) are in the same direction.