River ecological environment protection and restoration device

By using a combination of water source guidance device and a separation network in the river ecological environment restoration device, the secondary contact problem between garbage and river water during the water purification process is solved, and the separation between garbage and river water and the improvement of water purification intensity is achieved.

CN120174797AInactive Publication Date: 2025-06-20ANHUI WATER CONSERVANCY TECHN COLLEGE
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Patent Information

Application Number
CN202510451586.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-06-20
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the water quality purification process, the existing river ecological environment restoration device will collect river garbage together, resulting in a decrease in the water quality purification intensity, making it difficult to separate the garbage from the purification area, affecting the stability of repair.

Method used

A river ecological environment protection and restoration device is designed, using a combination of water source guidance device and a partition network, and using the natural river water flow characteristics to limit the garbage in the collection tank. The river water is separated from the garbage through the partition network and enters the water purification drum to avoid secondary contact.

Benefits of technology

It realizes effective separation of garbage and river water, improves water quality purification intensity, enhances the stability of river ecological restoration, and simplifies the post-cleaning process of garbage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a river ecological environment protection and restoration device. The river ecological environment protection and restoration device structurally comprises a fixed shell, a solar light panel, an electric connection module, a remote information control module, a fixed driving structure, a water quality purification rotary drum and a water source guide device, after the water source guide device is further improved, the separation net of the fixing piece is installed in front of the water quality purification rotary drum through the splicing modules of the assembly frame, then the river water carries garbage to enter the collecting groove of the overlapping frame in cooperation with the flowing characteristics of the natural river water, and the garbage is collected. Meanwhile, the garbage is limited in a collecting tank by utilizing an intercepting plate in a middle-lower area, so that river water is separated from the garbage through a separation net and enters a water quality purification rotary drum, and the effect of separating and purifying the river water from the garbage can be achieved; and the garbage collection convenience in the later period is improved, the water purification strength is improved, and secondary contact with the garbage is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of river ecological protection and restoration, and more specifically to a river ecological environment protection and restoration device. Background Art

[0002] The river ecological environment refers to the water and soil ecological system on both sides of each river and its river channel, including water bodies, river banks, river beds, river bottoms, and the ground surface around the river. Therefore, when protecting the river ecological environment, special repair devices need to be used for ecological environment maintenance and garbage treatment, so as to ensure the cleanliness of the river ecological environment, avoid excessive pollution, reduce the survival rate of aquatic organisms, and prevent the generation of air pollution. In summary, the inventor found that the existing repair devices mainly have the following defects: when the current repair device purifies the river water quality, the process will collect the garbage in the river at the same time, so that the water quality will come into contact with the river garbage again during the purification process, which will reduce the intensity of water quality purification and prevent the river garbage from being separated from the purification area. Therefore, the stability of river ecological restoration will be reduced. However, when the garbage accumulates in the water quality purification area, it will be difficult to clean up later. Summary of the Invention

[0003] The technical solution adopted by the present invention to achieve the technical purpose is: a river ecological environment protection and restoration device, the structure of which includes: a fixed outer shell, a solar panel, an electrical connection module, a remote information control module, a fixed drive structure, a water quality purification drum, and a water source guiding device. The solar panel on the top of the fixed outer shell is electrically connected to the remote information control module through the electrical connection module and covers the fixed drive structure and the water quality purification drum. The water source guiding device is arranged in front of the water quality purification drum and is communicated with it.

[0004] As a further improvement of the present invention, the water source guiding device is provided with a splicing module. The splicing module is installed on the left and right sides of the assembly frame, and the assembly frame coincides with the fixing piece. The fixing piece is internally provided with a partition net that is parallel and communicated with the guiding end provided at the front end.

[0005] As a further improvement of the present invention, the guiding end is further provided with a coinciding frame. A collection groove is opened inside the coinciding frame and is communicated with the partition net. An intercepting plate is additionally installed at the front end of the collection groove and is exposed outside the river channel.

[0006] As a further improvement of the present invention, the solar panel and the electrical connection module provide electric energy for the remote information control module, and then the remote information control module controls the fixed drive structure to make the water quality purification drum operate. At the same time, combined with the natural flow of the river, the river water enters the partition net from the guiding end area of the water source guiding device. During the process, the partition net combines with the intercepting plate of the collection groove to limit the position of the river garbage.

[0007] As a further improvement of the present invention, the top of the fixed housing is covered by a solar panel, and the solar panel is equipped with two sets of electrical connection modules connected to two sets of remote information control modules to complete the electrical control of the fixed driving structure. The water purification rotating cylinder is arranged horizontally and installed in the river in combination with the fixed housing.

[0008] As a further improvement of the present invention, there are two splicing modules in total on the assembly frame, and the fixing piece fixes the separation net in a rectangular shape, and the shape of the guiding end fits the shape of the separation net.

[0009] As a further improvement of the present invention, the collection groove of the overlapping frame is in a rectangular concave shape and the middle and lower parts are covered by an interception plate.

[0010] As a further improvement of the present invention, a signal template is also provided at the lower end of the interception plate. The lower end of the signal template is connected to the top center of the sensing template, and the sensing template communicates with the collection groove. The sensing template is also connected to a concentrated block. Positioning rods are fixed on both the left and right sides of the concentrated block. The lower end of the concentrated block is fixedly connected to one end of the conveying pipe through the positioning rods. A parallel plate is also connected to the lower layer of the conveying pipe, and the other end of the conveying pipe is connected to a water pump.

[0011] As a further improvement of the present invention, the signal template and the sensing template are parallel to each other and are electrically connected in an interspersed manner. An inclined card slot is opened at the center of the lower end of the sensing template for fixed connection with the concentrated block. The conveying pipe connected to the concentrated block is in an "L" shape, and the garbage and river water in the collection groove are guided through the water pump at the other end.

[0012] As a further improvement of the present invention, the water pump is also provided with a gravity block. The lower end of the gravity block is connected to the top center of the pump body, and a heat dissipation end is arranged on the side of the pump body. A guiding groove is also opened at the front end of the pump body, and a permeable plate is connected to the lower end of the pump body.

[0013] As a further improvement of the present invention, the gravity block is perpendicular to the top center of the pump body. The shape of the guiding groove of the pump body fits the shape of the conveying pipe. The permeable plate has an anti-rust property and is provided with a large number of tiny water permeation holes.

[0014] As a further improvement of the present invention, the fixed driving structure is also provided with a clamping block. The clamping block penetrates through the four ends of the surface layer of the parallel plate, and an electrical appliance is connected to the top center of the parallel plate. The driving motor arranged at the lower end of the electrical appliance is positioned at the edge center of the parallel plate and is connected to the edge of the rotating wheel at the bottom layer. A connection cavity is arranged inside the rotating wheel to complete the insertion and fixed connection with both ends of the water purification rotating cylinder.

[0015] As a further improvement of the present invention, four clamping blocks are provided on the parallel plate in total, and the electrical appliance at the center of the top of the parallel plate is set in a vertical orientation. The connection area between the driving motor and the rotating wheel is in an arc shape, and the connection cavity of the rotating wheel matches the shape of the water purification rotating cylinder.

[0016] As a further improvement of the present invention, the electrical appliance is also provided with an insulating housing. A parallel layer is provided at the lower end of the insulating housing, and a groove is opened at the top of the insulating housing to allow the vertical auxiliary block to vertically penetrate the center of the insulating housing. The vertical auxiliary block contains an energized body to complete the fixed electrical connection with the lower end of the electrical connection module.

[0017] As a further improvement of the present invention, the insulating housing is in a "concave" shape and the vertical auxiliary block is in a rectangular shape. The internal metal energized body is used to complete the inserted fixed electrical connection with the electrical connection module.

[0018] Compared with the prior art, the present invention has the following beneficial effects: 1. After the water source guiding device of the present invention is further improved, the separation net of the fixing part is installed in front of the water purification rotating cylinder through the splicing module of the assembly frame. Then, in combination with the flowing characteristics of natural river water, the river water carries garbage into the collection tank of the overlapping frame. At the same time, the garbage is restricted in the collection tank by the intercepting plate in the middle and lower regions. Then, the river water passes through the separation net and is separated from the garbage and enters the water purification rotating cylinder, thus achieving the effect of separating and purifying from the garbage, improving the convenience of garbage collection in the later stage, and increasing the intensity of water purification to avoid secondary contact with the garbage.

[0019] 2. After the intercepting plate of the present invention is further improved, based on the signal template and sensing template installed at the lower end, the position of the concentrated block is located by the positioning rod, so that the "L"-shaped conveying pipe can be connected to the concentrated block. Then, after monitoring the amount of garbage in the collection tank by the sensing template, when the collection tank is full, the garbage and river water in the collection tank are pumped out together by the water pump, so that the garbage can be automatically distributed to the shore according to the positions of the conveying pipe and the water pump for professional personnel to handle. At the same time, the bottom end of the pump body of the water pump can intercept the garbage in its own interior through the permeable plate, and at the same time, the river water is emptied by osmosis according to the centrifugal force to complete the separation of the garbage and the river water. According to the effect on the river bank, the river water can be re-introduced into the river channel.

[0020] 3. After the fixed drive structure of the present invention is further improved, the combination of superimposed parallel plates can stably position the electrical appliance and the drive motor. Then, the drive motor can complete the shape matching with the runner by using the bottom arc shape. At the same time, the electrical appliance can complete the vertical insertion and electrical connection with the electrical connection module by combining the vertical auxiliary block and the energized body in the insulating housing, ensuring stable power supply to the drive motor, enabling the drive motor to stably drive the runner to rotate, improving the rotational stability of the water purification drum. At the same time, the parallel plates can improve the parallel fixed assembly stability with the inner side of the remote information control module according to the four sets of clamping blocks at the corners. Description of the Drawings

[0021] Figure 1 It is a schematic structural diagram of a river ecological environment protection and restoration device.

[0022] Figure 2 It is a schematic three-dimensional structural diagram of an improved water source guiding device.

[0023] Figure 3 It is a schematic three-dimensional structural diagram of an improved guiding end.

[0024] Figure 4 It is a schematic cross-sectional side view of a newly added component at the lower end of an interception plate after improvement.

[0025] Figure 5 It is a schematic three-dimensional structural diagram of an improved water pump.

[0026] Figure 6 It is a schematic cross-sectional structural diagram of an improved fixed drive structure.

[0027] Figure 7 It is a schematic front view of an improved electrical appliance.

[0028] In the figure: fixed housing - 1, solar panel - 2, electrical connection module - 3, remote information control module - 4, fixed drive structure - 5, water purification drum - 6, water source guiding device - 7; Splicing module - 71, assembly frame - 72, fixing piece - 73, partition net - 74, guiding end - 75; Coincidence frame - 751, collection tank - 752, interception plate - 753; Signal template - 7531, sensing template - 7532, centralized block - 7533, positioning rod - 7534, conduction pipe - 7535, parallel plate - 7536, water pump - 7537; Gravity block - 5371, pump body - 5372, heat dissipation end - 5373, guiding groove - 5374, permeable plate - 5375; Clamping block - 51, parallel plate - 52, energizer - 53, drive motor - 54, runner - 55, connection cavity - 56; Insulating housing - 531, parallel layer - 532, groove - 533, vertical auxiliary block - 534, energized body - 535. Specific implementation

[0029] The present invention will be further described below with reference to the accompanying drawings: Embodiment

[0030] Figures 1 to 5 As shown: The present invention provides a river ecological environment protection and restoration device, Its structure includes a fixed housing 1, a solar panel 2, an electrical connection module 3, a remote information control module 4, a fixed drive structure 5, a water purification drum 6, and a water source guiding device 7. The solar panel 2 on the top of the fixed housing 1 is electrically connected to the remote information control module 4 through the electrical connection module 3 and covers the fixed drive structure 5 and the water purification drum 6. The water source guiding device 7 is arranged in front of the water purification drum 6 and is communicated with it.

[0031] Among them, the water source guiding device 7 is provided with a splicing module 71. The splicing module 71 is installed on the left and right sides of the assembly frame 72, and the assembly frame 72 coincides with the fixing member 73. The fixing member 73 is internally provided with a partition net 74 that is parallel and communicated with the guiding end 75 provided at the front end.

[0032] Among them, the guiding end 75 is further provided with a coincidence frame 751. A collection groove 752 is opened inside the coincidence frame 751 and is communicated with the partition net 74. An intercepting plate 753 is additionally installed at the front end of the collection groove 752 and is exposed outside the river.

[0033] Among them, the solar panel 2 and the electrical connection module 3 provide electric energy for the remote information control module 4. Then, the remote information control module 4 controls the fixed drive structure 5 to make the water purification drum 5 operate. At the same time, combined with the natural flow of the river, the river water enters the partition net 74 from the guiding end 75 area of the water source guiding device 7. During the process, the partition net 74 combines with the intercepting plate 753 of the collection groove 752 to limit the position of the river garbage.

[0034] Among them, the top of the fixed housing 1 is covered by the solar panel 2, and the solar panel 2 is equipped with two electrical connection modules 3 to connect with two remote information control modules 4 to complete the electric control of the fixed drive structure 5. The water purification drum 6 is arranged horizontally and is installed in the river in combination with the fixed housing 1.

[0035] Among them, there are two splicing modules 71 provided on the assembly frame 72 in total, and the fixing member 73 fixes the partition net 74 in a rectangular shape, and the shape of the guiding end 75 is mutually consistent with the shape of the partition net 74.

[0036] Among them, the collection groove 752 of the overlapping frame 751 is in a rectangular concave form and the middle and lower parts are covered by the intercepting plate 753.

[0037] Among them, a signal template 7531 is further provided at the lower end of the intercepting plate 753. The lower end of the signal template 7531 is connected to the top center of the sensing template 7532, and the sensing template 7532 communicates with the collection groove 752. The sensing template 7532 is also connected with a concentrating block 7533. Positioning rods 7534 are fixed on the left and right sides of the concentrating block 7533. The lower end of the concentrating block 7533 is fixedly connected to one end of a catheter 7535 through the positioning rods 7534. A parallel plate 7536 is connected to the lower layer of the catheter 7535, and the other end of the catheter 7535 is connected to a water pump 7537.

[0038] Among them, the signal template 7531 and the sensing template 7532 are parallel to each other and are electrically connected in an interpenetrating manner. An inclined card slot is opened at the center of the lower end of the sensing template 7532 for fixedly connecting with the concentrating block 7533. The catheter 7535 connected to the concentrating block 7533 is in an "L" shape, and the water pump 7537 at the other end guides the garbage and river water in the collection groove 752.

[0039] Among them, the water pump 7537 is further provided with a gravity block 5371. The lower end of the gravity block 5371 is connected to the top center of the pump body 5372, a heat dissipation end 5373 is arranged on the side of the pump body 5372, a guiding groove 5374 is opened at the front end of the pump body 5372, and a permeable plate 5375 is connected to the lower end of the pump body 5372.

[0040] Among them, the gravity block 5371 is perpendicular to the top center of the pump body 5372. The shape of the guiding groove 5374 of the pump body 5372 is mutually consistent with the shape of the catheter 7535. The permeable plate 5375 has an anti-rust property and is provided with a large number of tiny water seepage holes.

[0041] Specific functions and operation procedures of this embodiment: In the present invention, the river ecological environment protection and restoration device can cover the remote information control module 4, the fixed drive structure 5, and the water quality purification rotating cylinder 6 through the fixed housing 1, and then be horizontally installed in the river to achieve the interception effect. Furthermore, the solar panel 2 at the top receives sunlight and converts it into electric energy. Subsequently, the electric energy is input into the remote information control module 4 through the electrical connection module 3, so that remote control can be carried out by starting the remote information control module 4. Then, the fixed drive structure 5 drives the water quality purification rotating cylinder 6 to rotate. At the same time, combined with the flow characteristics of natural rivers, the river water enters the water quality purification rotating cylinder 6 from the water source guiding device 7 area for the precipitation and separation purification of microorganisms, thus completing the water quality restoration. During the process, the water source guiding device 7 can complete the connection with the splicing area at the front end of the remote information control module 4 through the assembly frame 72 and the splicing module 71. Then, after the fixing piece 73 of the assembly frame 72 fixes the separation net 74, it will intercept the river garbage in combination with the guiding end 75, and at the same time, it will not prevent the normal flow of river water from entering the water quality purification rotating cylinder 6. The overlapping frame 751 of the guiding end 75 allows the river water to invade through the collection groove 752, so that the garbage carried by the river water can be intercepted outside the separation net 74. At the same time, the interception plate 753 in the middle and lower regions limits the garbage stably in the collection groove 752, avoiding the situation that the continuous secondary contact with the garbage during the precipitation and removal purification of river water microorganisms by the water quality purification rotating cylinder 6 reduces the water quality purification intensity, and improving the use intensity effect of the overall restoration device. Then, the signal template 7531 and the sensing template 7532 carried at the lower end of the interception plate 753 can be electrically connected through insertion and engagement, and then are electrically connected to the remote information control module 4 according to the waterproof power supply line. Subsequently, the sensing template 7532 is in a communicating state with the collection groove 752, and the sensing template 7532 directly contacts the garbage, and the number of garbage in the collection groove 752 can be determined according to the sensing monitoring effect. Then, after the garbage is filled, the water pump 7537 at the other end of the transmission pipe 7535 will be started to operate, so that the transmission pipe 7535 installed on the parallel plate 7536 can guide the concentrated block 7533 to collect the garbage and river water inside the collection groove 752 through the positioning rod 7534. Therefore, through the cooperation of the water pump 7537, the garbage and river water inside the collection groove 752 can be directly guided into its own pump body 5372. At the same time, during the operation of the pump body 5372, the top gravity block 5371 can maintain the overall balance of itself, preventing the unstable situation caused by vibration. Furthermore, the excess temperature is discharged through the side heat dissipation end 5373 to maintain the temperature balance of the overall body. Then, the guiding groove 5374 can be connected to one end of the transmission pipe 7535, so that the garbage and river water in the collection groove 752 can enter the pump body 5372 for storage. At the same time, the permeable plate 5375 at the bottom of the pump body 5372 allows the river water to penetrate vertically. Then, according to the foundation arranged on the river bank, the river water can be separated from the garbage through the cooperation of the permeable plate 5375.Subsequently, it flows back into the river according to the centrifugal force again. Then, the garbage distributed on the riverbank will wait for professional personnel to handle it. Therefore, the usage intensity of the river ecological environment protection and restoration device can be effectively improved. Embodiment

[0042] Figures 6 to 7 as shown in: The present invention provides a river ecological environment protection and restoration device. Its structure includes that the fixed driving structure 5 is further provided with a clamping block 51. The clamping block 51 penetrates through the four ends of the surface layer of the parallel plate 52, and an energizer 53 is connected to the center of the top of the parallel plate 52. The driving motor 54 arranged at the lower end of the energizer 53 is positioned at the edge center of the parallel plate 52 and is connected to the edge of the runner 55 at the bottom layer. A connection cavity 56 is arranged inside the runner 55 to complete the insertion and fixed connection with both ends of the water purification rotating cylinder 6.

[0043] Among them, four clamping blocks 51 are provided on the parallel plate 52 in total, and the energizer 53 at the center of the top of the parallel plate 52 is set in a vertical orientation. The connection area between the driving motor 54 and the runner 55 is in an arc shape, and the shape of the connection cavity 56 of the runner 55 matches the shape of the water purification rotating cylinder 6.

[0044] Among them, the energizer 53 is further provided with an insulating housing 531. A parallel layer 532 is arranged at the lower end of the insulating housing 531. A groove 533 is opened at the top of the insulating housing 531 to allow a vertical auxiliary block 534 to vertically penetrate through the center of the insulating housing 531. An energized body 535 is included in the vertical auxiliary block 534 to complete the fixed electrical connection with the lower end of the electrical connection module 3.

[0045] Among them, the insulating housing 531 is in a "concave" shape and the vertical auxiliary block 534 is in a rectangular shape. The insertion and fixed electrical connection with the electrical connection module 3 is completed through the internal metal energized body 535.

[0046] The specific functions and operation processes of this embodiment: In the present invention, the parallel plate 52 of the fixed drive structure 5 can be horizontally installed on the inner wall surface area of the remote information control module 4 through the clamping block 51. Then, the electrical appliance 53 at the center of the top of the parallel plate 52 can receive the electric energy of the solar panel 2 in combination with the electrical connection module 3. Furthermore, when the electrical appliance 53 starts the drive motor 54 through the electric energy, the drive motor 54 can drive the rotating wheel 55 to rotate. Therefore, the rotating wheel 55 will use the connection cavity 56 to complete the connection with the water purification rotating cylinder 6 and drive its rotation to drive the rotation and purification of the river water (removing the precipitation of polluted microorganisms). The electrical appliance 53 can be installed at the center of the top of the parallel plate 52 through the parallel layer 532 of the insulating housing 531. Then, the groove 533 at the center of the top of the insulating housing 531 can allow the electrical connection module 3 to be vertically inserted, so that the electrical connection module 3 can contact the top of the vertical auxiliary block 534 through the groove 533. Therefore, the energized body 535 in the vertical auxiliary block 534 can achieve the energization effect through the coincident contact with the electrical connection module 3, ensuring stable power supply for the drive motor 54. Then, combined with the cooperation of the insulating housing 531, it can prevent the leakage of electric energy, improve the safety factor of the electric energy conduction of the overall device, and improve the repair stability of the repair device for the river water.

[0047] Any technical solution designed by using the technical solution of the present invention or by those skilled in the art inspired by the technical solution of the present invention and achieving the above technical effects shall fall within the protection scope of the present invention.

Claims

1. A river ecological environment protection and restoration device, the structure of which includes: A fixed housing (1), a solar panel (2), an electrical connection module (3), a remote information control module (4), a fixed drive structure (5), a water purification drum (6), and a water source guiding device (7), wherein the solar panel (2) on the top of the fixed housing (1) is electrically connected to the remote information control module (4) through the electrical connection module (3) and covers the fixed drive structure (5) and the water purification drum (6), and the water source guiding device (7) is arranged in front of the water purification drum (6) and communicates with the water purification drum, and is characterized in that: The water source guiding device (7) is provided with a splicing module (71), the splicing module (71) is installed on the left and right sides of the assembly frame (72), and the assembly frame (72) and the fixing member (73) overlap each other, and the fixing member (73) has a built-in partition net (74) which is parallel to and communicates with a guiding end (75) provided at the front end; The guide end (75) is further provided with a overlap frame (751), the overlap frame (751) has a collection groove (752) in the interior thereof in communication with the separation net (74), and an interception plate (753) is further installed at the front end of the collection groove (752) to be exposed outside the river channel; The solar panel (2) and the electrical connection module (3) provide electric energy to the remote information control module (4), and then the remote information control module (4) controls the fixed driving structure (5) to operate the water purification drum (5). At the same time, in combination with the natural flow of the river channel, the river water is allowed to enter the separation net (74) from the guide end (75) area of ​​the water source guide device (7). During the process, the separation net (74) is combined with the interception plate (753) of the collection tank (752) to limit the position of the river garbage.

2. A river ecological environment protection and restoration device according to claim 1, characterized in that: The top of the fixed housing (1) is covered by a solar panel (2) and the solar panel (2) carries two sets of electrical connection modules (3) which are connected to two sets of remote information control modules (4) to complete the electrical control of the fixed drive structure (5). The water purification drum (6) is arranged in a horizontal orientation and installed in the river channel in combination with the fixed housing (1).

3. A river ecological environment protection and restoration device according to claim 1, characterized in that: The splicing modules (71) are provided with two in total on the assembly frame (72), and the fixing member (73) fixes the partition net (74) through a rectangular shape, and the shape of the guide end (75) matches the shape of the partition net (74).

4. A river ecological environment protection and restoration device according to claim 1, characterized in that: The collecting groove (752) of the overlap frame (751) is in a rectangular concave shape and the middle and lower part is covered by the interception plate (753).

5. The river ecological environment protection and restoration device according to claim 1 is characterized by: A signal template (7531) is also provided at the lower end of the intercepting plate (753). The lower end of the signal template (7531) is connected to the top center of the sensing template (7532), and the sensing template (7532) is in communication with the collecting tank (752). The sensing template (7532) is also connected to a centralizing block (7533). Positioning rods (7534) are fixed on the left and right sides of the centralizing block (7533). The lower end of the centralizing block (7533) is fixedly connected to one end of a conducting tube (7535) by the positioning rods (7534). The lower layer of the conducting tube (7535) is also connected to a parallel plate (7536). The other end of the conducting tube (7535) is connected to a water pump (7537). The signal template (7531) and the sensor template (7532) are parallel to each other and are electrically connected in an interlaced manner. An inclined slot is opened at the center of the lower end of the sensor template (7532) to be fixedly connected to the central block (7533). The conductive pipe (7535) connected to the central block (7533) is in an "L" shape and guides the garbage and river water in the collection tank (752) through a water pump (7537) at the other end.

6. A river ecological environment protection and restoration device according to claim 5, characterized in that: The water pump (7537) is also provided with a gravity block (5371), the lower end of the gravity block (5371) is connected to the top center of the pump body (5372), and a heat dissipation end (5373) is provided on the side of the pump body (5372), a guide groove (5374) is also opened at the front end of the pump body (5372), and a permeation plate (5375) is connected to the lower end of the pump body (5372); The gravity block (5371) and the top center of the pump body (5372) are perpendicular to each other. The shape of the guide groove (5374) of the pump body (5372) matches the shape of the conduction pipe (7535). The permeation plate (5375) has rust-proof properties and has a large number of tiny water seepage holes.

7. A river ecological environment protection and restoration device according to claim 1, characterized in that: The fixed drive structure (5) is further provided with a clamping block (51), the clamping block (51) penetrates through the four ends of the surface layer of the parallel plate (52), and the top center of the parallel plate (52) is connected to a power supply (53), the driving motor (54) provided at the lower end of the power supply (53) is positioned at the edge center of the parallel plate (52), and the bottom layer is connected to the edge of the rotating wheel (55), and a connecting cavity (56) is provided inside the rotating wheel (55) to complete the interlaced fixed connection with the two ends of the water purification rotating drum (6); A total of four blocks (51) are provided on the parallel plate (52), and the electric current generator (53) at the top center of the parallel plate (52) is set in a vertical orientation. The connection area between the drive motor (54) and the rotating wheel (55) is in an arc shape, and the connection cavity (56) of the rotating wheel (55) matches the shape of the water purification drum (6).

8. A river ecological environment protection and restoration device according to claim 7, characterized in that: The power supply (53) is further provided with an insulating shell (531), the lower end of which is provided with a parallel layer (532), the top of which is provided with a groove (533) to allow a vertical auxiliary block (534) to vertically penetrate the center of the insulating shell (531), and the vertical auxiliary block (534) includes a power supply body (535) to complete a fixed electrical connection with the lower end of the electrical connection module (3); The insulating housing (531) is in a "concave" shape and the vertical auxiliary block (534) is in a rectangular shape, and an interpenetrating fixed electrical connection with the electrical connection module (3) is completed through an internal metal current-carrying body (535).