Riverway management plasma water treatment device
By designing a combination of conveying components, mixing components and floating platform components, the problems of uneven mixing and limited treatment range in the plasma water treatment device were solved, the uniform distribution of plasma in the river channel and the expansion of the treatment range were achieved, the treatment efficiency was improved and costs were saved.
Patent Information
- Application Number
- CN202411507178.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2044-10-28
AI Technical Summary
The existing plasma water treatment devices have poor mixing effect and uneven distribution of plasma and water, which cannot effectively treat pollutants at different depths in the river, resulting in low treatment efficiency.
A device consisting of a conveying component, a mixing component and a floating platform component was designed. By cooperating with the mixer and the drainage pipe, uniform mixing of plasma and water was achieved. Plasma water can be released at different depths in the river. The floating platform component is moved up and down to adjust the drainage position to adapt to changes in the river water level.
The mixing efficiency of plasma and water is improved, the uniform distribution of plasma in the river channel is achieved and the treatment range is expanded, the effect of river channel management is enhanced, the operating cost is saved and the treatment efficiency is improved.
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Figure CN119018974B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of water treatment devices, and in particular to a plasma water treatment device for river management. Background Art
[0002] Plasma water treatment device is a device that uses plasma technology to treat water. This technology effectively degrades pollutants by generating highly active electrons, atoms, molecules and free radicals in the discharge medium, which collide and react with pollutant molecules in the water.
[0003] The existing technology still has the following areas for improvement: when plasma and water are mixed in the early stage to form plasma water, the mixing effect is poor, and the plasma is unevenly distributed in the water, which affects the subsequent treatment effect. When the plasma water is discharged into the river channel for river management, it is unable to take into account the different depths of the river channel. The range in which the plasma water can work is limited, which reduces the efficiency of the treatment. Summary of the Invention
[0004] In order to solve the above-mentioned problems existing in the prior art, the present invention provides a plasma water treatment device for river management, which can achieve a good mixing effect of plasma and water, and the plasma is evenly distributed in the plasma water. The device can move up and down and discharge plasma water at different depths of the river, thereby expanding the treatment range and improving the efficiency of river management.
[0005] The purpose of the present invention can be achieved through the following technical solutions:
[0006] A plasma water treatment device for river management, comprising a conveying assembly, a mixing assembly and a floating platform assembly, wherein the conveying assembly is fixedly connected to the mixing assembly, and the mixing assembly is fixedly connected to the floating platform assembly;
[0007] The delivery assembly includes a plasma generator, a water tank, a base, a first flow meter, a plasma delivery pipe, a water pump, a water delivery pipe, and a second flow meter. The plasma generator is fixedly connected to the top of the base. The plasma generator is connected to the mixing assembly through the plasma delivery pipe. The first flow meter is fixedly connected to the plasma delivery pipe. The water tank is connected to the mixing assembly through the water delivery pipe.
[0008] The mixing assembly includes a mixing tank and a drain pipe. The mixing tank is provided with a mixing channel, a conveyor and a mixer. The conveyor is fixedly connected to the plasma delivery pipe. The mixer runs through the mixing tank. The upper part of the mixer is connected to a first motor.
[0009] The floating platform assembly includes a bracket, a second motor, a support rod, a screw, a displacement block, a fixed block, a connecting rod, a limit block and a floating block. The bracket is fixedly connected above the floating block. The support rod, the screw, the displacement block and the limit block are located on the inner side of the bracket. The screw is rotatably connected to the displacement block, the displacement block is slidably connected to the support rod, and the limit block is fixedly connected to the displacement block.
[0010] Preferably, the water pump is fixedly connected to the water pipe, and the second flow meter is fixedly connected to the water pipe.
[0011] Preferably, the water delivery pipe passes through the upper end surface of the mixing tank, the water delivery pipe is located on one side of the mixing tank, and the conveyor is located on one side of the mixing tank.
[0012] Preferably, the conveyor is provided with a plurality of small conveying tubes, and the plurality of small conveying tubes are horizontally arranged and distributed.
[0013] Preferably, the drain pipe is fixedly connected to the mixing tank, and the drain pipe is fixedly connected to the fixed block. A channel is provided below the fixed block, and the drain pipe passes through the channel of the fixed block.
[0014] Preferably, the bracket is arranged in an inverted U shape, a through hole is provided on the upper portion of the bracket, the screw rod passes through the through hole of the bracket, and one side of the screw rod is connected to the second motor.
[0015] Preferably, the limit block is fixedly connected to one side of the connecting rod, the fixed block is fixedly connected to the other side of the connecting rod, a groove is provided on the upper part of the fixed block, the groove of the fixed block matches the lower part of the connecting rod, and the connecting rod is connected to the groove of the fixed block.
[0016] Preferably, the mixing channel is arranged to be curved upward.
[0017] Preferably, the blades of the mixer are arranged in a blade shape.
[0018] Preferably, the drain pipe is a hose.
[0019] The beneficial effects of the present invention are:
[0020] (1) By setting up the conveying assembly, the technical effect that can be achieved is that the first flow meter is fixedly connected to the plasma conveying pipe, which is convenient for monitoring the plasma flow rate, and the second flow meter is fixedly connected to the water pipe, which can monitor the water flow rate and facilitate the adjustment of the water flow rate in conjunction with the plasma flow rate.
[0021] (2) By setting up a mixing component, the technical effect that can be achieved is that the blades of the mixer are set in a blade shape, and the rotation speed of the blades can be adjusted in accordance with the flow rate of water and plasma. Through the rotation of the blades, the water and plasma are vortex mixed, which can significantly improve the mixing efficiency of the two and make the plasma evenly distributed in the plasma water. The drain pipe is a hose, which is convenient for moving up and down.
[0022] (3) By setting up a mixing component, a technical effect that can be achieved is that a plurality of small conveying pipes are provided on the conveyor, and the plurality of small conveying pipes are arranged horizontally to improve the conveying efficiency of the plasma, increase the contact area between the plasma and the water body, and facilitate the uniform delivery of the plasma to the water body. The position of the conveyor is relative to the water pipe, and the upward curved mixing channel forms an effect in which the plasma and the water body collide with each other at the junction of the smooth section and the rising section of the mixing channel, thereby increasing the contact area between the two and improving the mixing effect between the two.
[0023] (4) By setting up the floating platform assembly, the technical effect that can be achieved is that it is easy to control the up and down displacement of the drainage pipe. The placement of plasma water can be accurately controlled according to the distribution of pollutants to achieve targeted treatment. By optimizing the drainage position, the overall use of plasma water can be reduced, the operating cost can be saved, and the treatment effect can be improved. In addition, the setting of the floating platform assembly allows the drainage pipe to be flexibly adjusted in height. The river water has tides every day, and the device can be adjusted to adapt to different water levels and water flow conditions according to the tides, thereby enhancing the overall adaptability and flexibility of the device. Plasma water is discharged at different depths in the river, which increases the contact area between the plasma water and the river water body, expands the treatment range, and helps to improve the degradation efficiency of pollutants in the river, enhance the treatment effect, and improve the efficiency of river treatment. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] To facilitate understanding by those skilled in the art, the present invention is further described below with reference to the accompanying drawings.
[0025] Figure 1 A perspective view of the present invention;
[0026] Figure 2 It is a left side view of the present invention;
[0027] Figure 3 It is the front view of the present invention;
[0028] Figure 4 is a first cross-sectional view of the mixing assembly of the present invention;
[0029] Figure 5 is a second cross-sectional view of the mixing assembly of the present invention;
[0030] Figure 6 This is a first structural diagram of the floating platform assembly in the present invention;
[0031] Figure 7 This is a second structural diagram of the floating platform assembly in the present invention;
[0032] Figure 8 is a structural diagram of the mixer in the present invention;
[0033] Figure 9 is a structural diagram of the conveyor in the present invention;
[0034] Description of main component symbols:
[0035] In the figure: 1. plasma generator; 2. water tank; 3. mixing tank; 301. mixing channel; 302. conveyor; 303. mixer; 4. floating platform assembly; 401. bracket; 402. second motor; 403. support rod; 404. screw; 405. displacement block; 406. fixed block; 407. connecting rod; 408. limit block; 409. floating block; 5. base; 6. first flow meter; 7. plasma delivery pipe; 8. water pump; 9. water pipe; 10. second flow meter; 11. first motor; 12. drain pipe. DETAILED DESCRIPTION
[0036] To further illustrate the technical means and effects adopted by the present invention to achieve the intended purpose of the invention, the following, in conjunction with the accompanying drawings and preferred embodiments, clearly and completely describes the specific implementation methods, structures, features, and effects of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0037] In the description of this application, it should be understood that the orientation or position relationship indicated by "inside" and "outside" is based on the orientation or position described in the accompanying drawings, which is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, specific orientation structure and operation, and therefore cannot be understood as a limitation on this application.
[0038] Reference Figures 1 to 9 The present invention discloses a plasma water treatment device for river management, comprising a conveying component, a mixing component and a floating platform component 4, wherein the conveying component is fixedly connected to the mixing component, and the mixing component is fixedly connected to the floating platform component 4;
[0039] The delivery assembly includes a plasma generator 1, a water tank 2, a base 5, a first flowmeter 6, a plasma delivery pipe 7, a water pump 8, a water delivery pipe 9, and a second flowmeter 10. The plasma generator 1 is fixedly connected to the top of the base 5. The plasma generator 1 is connected to the mixing assembly through the plasma delivery pipe 7. The first flowmeter 6 is fixedly connected to the plasma delivery pipe 7 to facilitate monitoring of the plasma flow rate. The water tank 2 is connected to the mixing assembly through the water delivery pipe 9.
[0040] The mixing assembly includes a mixing tank 3 and a drain pipe 12. The mixing tank 3 is provided with a mixing channel 301, a conveyor 302, and a mixer 303. The conveyor 302 is fixedly connected to the plasma conveying pipe 7. The mixer 303 runs through the mixing tank 3. The upper portion of the mixer 303 is connected to the first motor 11. The blades of the mixer 303 are arranged in a blade shape. The rotation speed of the blades can be adjusted according to the flow rate of the water body and the plasma. The rotation of the blades causes the water body and the plasma to vortex and mix, which can significantly improve the mixing efficiency of the two and make the plasma evenly distributed in the plasma water. The mixing channel 301 is arranged in an upward curved manner.
[0041] The floating platform assembly 4 includes a bracket 401, a second motor 402, a support rod 403, a screw 404, a displacement block 405, a fixed block 406, a connecting rod 407, a limit block 408 and a floating block 409. The bracket 401 is fixedly connected above the floating block 409, the support rod 403, the screw 404, the displacement block 405 and the limit block 408 are located on the inner side of the bracket 401, the screw 404 is rotatably connected to the displacement block 405, the displacement block 405 is slidably connected to the support rod 403, and the limit block 408 is fixedly connected to the displacement block 405.
[0042] Reference Figures 1 to 5 and Figure 9 , the water pump 8 is fixedly connected to the water pipe 9, and the second flowmeter 10 is fixedly connected to the water pipe 9, which can monitor the water flow and facilitate the adjustment of the water flow in conjunction with the plasma flow; the water pipe 9 runs through the upper end surface of the mixing tank 3, the water pipe 9 is located on one side of the mixing tank 3, and the conveyor 302 is located on one side of the mixing tank 3; a plurality of small conveying pipes are provided on the conveyor 302, and the plurality of small conveying pipes are horizontally arranged and distributed to improve the plasma transportation efficiency, increase the contact area between the plasma and the water body, and facilitate the uniform transportation of the plasma into the water body. The position of the conveyor 302 is relative to the water pipe 9, and cooperates with the upward curved mixing channel 301 to form an effect that the plasma and the water body will intersect and collide with each other at the junction of the smooth section and the rising section of the mixing channel 301, thereby increasing the contact area between the two and improving the mixing effect of the two.
[0043] Reference Figures 1 to 5The drain pipe 12 is fixedly connected to the mixing tank 3, and the drain pipe 12 is fixedly connected to the fixed block 406. A channel is provided below the fixed block 406, and the drain pipe 12 passes through the channel of the fixed block 406; the drain pipe 12 is a hose, which is convenient for moving up and down.
[0044] Reference Figures 1 to 7 The bracket 401 is arranged in an inverted U shape, a through hole is provided on the upper part of the bracket 401, a screw 404 passes through the through hole of the bracket 401, and one side of the screw 404 is connected to the second motor 402; the limit block 408 is fixedly connected to one side of the connecting rod 407, and the fixed block 406 is fixedly connected to the other side of the connecting rod 407. A groove is provided on the upper part of the fixed block 406, and the groove of the fixed block 406 matches the lower part of the connecting rod 407, and the connecting rod 407 is connected to the groove of the fixed block 406.
[0045] The setting of the floating platform assembly 4 facilitates the control of the up and down displacement of the drainage pipe 12. The placement of the plasma water can be precisely controlled according to the distribution of pollutants to achieve targeted treatment. By optimizing the drainage position, the overall usage of plasma water is reduced, operating costs are saved, and the treatment effect is improved. In addition, the setting of the floating platform assembly 4 allows the drainage pipe 12 to be flexibly adjusted in height to adapt to different water levels and water flow conditions, thereby enhancing the overall adaptability and flexibility of the device. Plasma water is discharged at different depths in the river channel, thereby increasing the contact area between the plasma water and the river water body, expanding the treatment range, and helping to improve the degradation efficiency of pollutants in the river channel, enhancing the treatment effect, and improving the efficiency of river treatment.
[0046] The working principle and usage process of the present invention are as follows: the plasma generated by the plasma generator 1 is transported to the mixing tank 3 through the plasma delivery pipe 7 and the conveyor 302. The plasma flow rate is monitored by the first flow meter 6. According to the plasma flow rate, the water pump 8 is controlled to transport the water in the water tank 2 to the mixing tank 3 through the water delivery pipe 9. The mixer 303 rotates at a high speed to evenly mix the plasma and water to form plasma water.
[0047] The plasma water is discharged into the river through the drainage pipe 12 to degrade the pollutants in the river.
[0048] When plasma water needs to be discharged at different depths in the river channel, the second motor 402 is started, and the second motor 402 drives the screw 404 to rotate, driving the displacement block 405 to move up and down along the support rod 403 in the Y-axis direction. The displacement block 405 drives the connecting rod 407 and the fixed block 406 to move up and down, and the fixed block 406 drives the drainage pipe 12 to move up and down to the appropriate depth.
[0049] The above description is merely a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Although the present invention has been disclosed as a preferred embodiment as above, it is not intended to limit the present invention. Any person skilled in the art can make some changes or modifications to equivalent embodiments using the technical contents disclosed above without departing from the scope of the technical solution of the present invention. However, any brief modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. A plasma water treatment device for river management, characterized by: It comprises a conveying component, a mixing component and a floating platform component (4), wherein the conveying component is fixedly connected to the mixing component, and the mixing component is fixedly connected to the floating platform component (4); The delivery assembly comprises a plasma generator (1), a water tank (2), a base (5), a first flow meter (6), a plasma delivery pipe (7), a water pump (8), a water delivery pipe (9) and a second flow meter (10), wherein the plasma generator (1) is fixedly connected to the top of the base (5), the plasma generator (1) is connected to the mixing assembly via the plasma delivery pipe (7), the first flow meter (6) is fixedly connected to the plasma delivery pipe (7), and the water tank (2) is connected to the mixing assembly via the water delivery pipe (9); The mixing assembly comprises a mixing tank (3) and a drain pipe (12); a mixing channel (301), a conveyor (302) and a mixer (303) are provided inside the mixing tank (3); the conveyor (302) is fixedly connected to the plasma delivery pipe (7); the mixer (303) passes through the mixing tank (3); a first motor (11) is connected to the upper portion of the mixer (303); the conveyor (302) is positioned relative to the water delivery pipe (9); a plurality of small delivery pipes are provided on the conveyor (302); the plurality of small delivery pipes are horizontally arranged; the mixing channel (301) is arranged in an upwardly curved manner; and the blades of the mixer (303) are arranged in a blade-like manner; The floating platform assembly (4) includes a bracket (401), a second motor (402), a support rod (403), a screw rod (404), a displacement block (405), a fixed block (406), a connecting rod (407), a limit block (408) and a floating block (409), wherein the bracket (401) is fixedly connected to the top of the floating block (409), the support rod (403), the screw rod (404), the displacement block (405) and the limit block (408) are located inside the bracket (401), the screw rod (404) is rotatably connected to the displacement block (405), the displacement block (405) is slidably connected to the support rod (403), the limit block (408) is fixedly connected to the displacement block (405), the drain pipe (12) is fixedly connected to the mixing tank (3), and the drain pipe (12) is fixedly connected to the mixing tank (3). The fixing block (406) is provided with a channel below the fixing block (406), the drain pipe (12) passes through the channel of the fixing block (406), the drain pipe (12) is a hose, the bracket (401) is provided in an inverted U-shape, the upper portion of the bracket (401) is provided with a through hole, the screw rod (404) passes through the through hole of the bracket (401), one side of the screw rod (404) is connected to the second motor (402), the limiting block (408) is fixedly connected to one side of the connecting rod (407), the fixing block (406) is fixedly connected to the other side of the connecting rod (407), the upper portion of the fixing block (406) is provided with a groove, the groove of the fixing block (406) matches the lower portion of the connecting rod (407), and the connecting rod (407) is connected to the groove of the fixing block (406).
2. The plasma water treatment device for river management according to claim 1, characterized in that: The water pump (8) is fixedly connected to the water pipe (9), and the second flow meter (10) is fixedly connected to the water pipe (9).
3. The plasma water treatment device for river regulation according to claim 1, characterized in that: The water delivery pipe (9) passes through the upper end surface of the mixing tank (3), the water delivery pipe (9) is located on one side of the mixing tank (3), and the conveyor (302) is located on one side of the mixing tank (3).
Citation Information
Patent Citations
Intelligent equipment for purifying riverway water quality
CN117756306A
Continuous purification device for plasma riverway water body
CN214031838U