River garbage drying, storing and treating device based on photovoltaics
The river garbage drying, storage and treatment device powered by photovoltaic power generation solves the problem of river garbage being soaked and rotted for a long time, realizes the drying treatment of garbage and clean energy power supply, and reduces the installation and work intensity.
Patent Information
- Application Number
- CN202510910805.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2025-09-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing river garbage disposal equipment lacks drying and separation functions, causing garbage to rot in water for a long time, increasing river pollution.
A photovoltaic-based river garbage drying, storage and processing device is designed. It uses a pontoon to float on the water surface, a swing plate to expand the collection range, and a conveyor belt powered by photovoltaic power generation to transport the garbage to the collection shell for drying.
It achieves the drying treatment of river garbage to prevent it from rotting, reduces the difficulty of installation and the intensity of work, adopts clean energy for power supply and avoids the use of external cables.
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Figure CN120625568A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of river garbage treatment, and in particular to a photovoltaic-based river garbage drying, storage and treatment device. Background Art
[0002] In terms of environmental protection and management, the disposal of river garbage has always been a difficult problem. Garbage floating in the river will not only reduce the oxygen content in the water, making it difficult for aquatic organisms to reproduce, but also affect the quality of life of residents. Therefore, it is necessary to collect and treat the garbage in the river.
[0003] Chinese patent publication number CN220868154U discloses an environmentally friendly river garbage disposal device for collecting and cleaning river garbage.
[0004] However, the above-mentioned disclosed solution has the following shortcomings: the above-mentioned solution does not have the function of drying and separating river garbage during actual use, which causes the river garbage to be soaked in water for a long time after being intercepted, causing the garbage to rot, thereby increasing the pollution effect on the river.
[0005] The present invention proposes a photovoltaic-based river garbage drying, storage and processing device to solve the problem. Summary of the Invention
[0006] The purpose of the present invention is to remove the river garbage from the water and dry it under the effect of sunlight, thereby avoiding the corruption of the river garbage and overcoming the problems in the above-mentioned background technology.
[0007] Based on the above technical ideas, the technical solution adopted by the present invention is:
[0008] A photovoltaic-based river garbage drying, storage and processing device includes a shell and a connecting bracket connected to the top thereof, the connecting bracket is connected to a supporting bracket at one end away from the shell, a swing component is connected to the outside of the supporting bracket, a connecting rod is connected to the outside of the supporting bracket, the other end of the connecting rod is connected to a buoyancy box, the top of the shell is rotatably connected to a rotating shaft, the outer arc surface of the rotating shaft is connected to a contact plate, the inner wall of the shell is connected to a transmission component for collecting and transporting river garbage, and the top of the supporting bracket is connected to a photovoltaic component for powering the transport structure.
[0009] To further limit the above technical solution, the swing component includes a rotating bracket connected to the outer side of the shell, the rotating bracket is rotatably connected to the electric telescopic rod, and the telescopic end of the electric telescopic rod is rotatably connected to the docking bracket.
[0010] To further limit the above technical solution, one end of the docking bracket is connected to a swing plate, one end of the swing plate is rotatably connected to the shell, and the end of the swing plate away from the docking bracket is connected to a plurality of guide members distributed at equal intervals in a matrix.
[0011] To further limit the above technical solution, the transmission component includes a motor connected to the inner wall of the shell, the output end of the motor is connected to the conveyor belt, the outer side of the conveyor belt is provided with transmission protrusions at equal intervals, the side of the support bracket is connected to the collection shell, the outer side of the collection shell is connected to a connecting fixing rod, the other end of the connecting fixing rod is connected to the outer side of the support bracket, and the discharge end of the conveyor belt is facing the direction of the collection shell.
[0012] To further limit the above technical solution, the photovoltaic component includes a connecting base connected to the top of the supporting bracket, and a supporting connecting rod is connected to the top of the connecting base.
[0013] To further limit the above technical solution, the top of the supporting connecting rod is connected to a photovoltaic bracket, the top of the photovoltaic bracket is rotatably connected to two tilt brackets, the tilt bracket is rotatably damped and connected to a tilt connecting piece, and the other end of the tilt connecting piece is connected to a photovoltaic panel.
[0014] To further limit the above technical solution, the top of the supporting connecting rod is connected to a photovoltaic bracket, the top of the photovoltaic bracket is rotatably connected to two tilt brackets, the tilt bracket is rotatably damped and connected to a tilt connecting piece, and the other end of the tilt connecting piece is connected to a photovoltaic panel.
[0015] As a further limitation of the above technical solution, an opening is provided on one side of the collection shell, the opening is facing the direction of the conveyor belt, and a guide plate is provided at the opening position of the collection shell, and the guide plate is in contact with the outer side surface of the conveyor belt.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. Simple installation. The device can float on the water surface through the pontoon structure, which reduces the difficulty of installation and facilitates the device to work in the river;
[0018] 2. The working range is large. The rotatable swing plate structure of the device can expand the effect of intercepting river garbage of the device, thereby reducing the density of the device installed in the river;
[0019] 3. To prevent decay, this device uses photovoltaic power generation to use a conveyor belt to transport the river garbage intercepted by the shell to the collection shell, which can keep the garbage away from the water surface, thereby drying the garbage and preventing it from decaying;
[0020] 4. The power supply is simple. This device uses photovoltaic self-generation to power the conveyor belt and the electric telescopic rod, thus avoiding the use of external cables. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0022] Figure 1 This is a schematic structural diagram of a buoyancy tank in a photovoltaic-based river garbage drying, storage, and processing device according to the present invention;
[0023] Figure 2 This is a schematic structural diagram of a collection shell in a photovoltaic-based river garbage drying, storage, and processing device according to the present invention;
[0024] Figure 3 This is a structural schematic diagram of a guide member in a photovoltaic-based river garbage drying, storage and processing device of the present invention.
[0025] Among them, 1. Shell; 2. Connecting bracket; 3. Support bracket; 4. Swinging component; 401. Rotating bracket; 402. Electric telescopic rod; 403. Docking bracket; 404. Swinging plate; 405. Guide; 5. Connecting rod; 6. Floating box; 7. Rotating shaft; 8. Contact plate; 9. Transmission component; 901. Conveyor belt; 902. Transmission protrusion; 903. Collection shell; 904. Connecting fixed rod; 10. Photovoltaic component; 1001. Connecting base; 1002. Support connecting rod; 1003. Photovoltaic bracket; 1004. Tilting bracket; 1005. Photovoltaic panel. DETAILED DESCRIPTION
[0026] The following is combined with Figure 1-Figure 3 The present invention is described in further detail.
[0027] Example 1: This example provides a photovoltaic-based river garbage drying storage and processing device, such as Figure 1-Figure 3 As shown, it includes a shell 1 and a connecting bracket 2 connected to the top thereof, the connecting bracket 2 is connected to a supporting bracket 3 at one end away from the shell 1, a swinging component 4 is connected to the outside of the supporting bracket 3, a connecting rod 5 is connected to the outside of the supporting bracket 3, and the other end of the connecting rod 5 is connected to a buoyancy box 6. The top of the shell 1 is rotatably connected to a rotating shaft 7, the outer arc surface of the rotating shaft 7 is connected to a contact plate 8, the inner wall of the shell 1 is connected to a transmission component 9, which is used to collect and transport river garbage, and the top of the supporting bracket 3 is connected to a photovoltaic component 10 for powering the transport structure.
[0028] The swing component 4 includes a rotating bracket 401 connected to the outer side of the housing 1 . The rotating bracket 401 is rotatably connected to an electric telescopic rod 402 . The telescopic end of the electric telescopic rod 402 is rotatably connected to a docking bracket 403 .
[0029] One end of the docking bracket 403 is connected to a swing plate 404 , one end of the swing plate 404 is rotatably connected to the housing 1 , and one end of the swing plate 404 away from the docking bracket 403 is connected to a plurality of guide members 405 distributed in a matrix at equal intervals.
[0030] The transmission component 9 includes a motor connected to the inner wall of the shell 1, the output end of the motor is connected to a conveyor belt 901, the outer side of the conveyor belt 901 is provided with transmission protrusions 902 at equal intervals, the side of the support bracket 3 is connected to a collection shell 903, the outer side of the collection shell 903 is connected to a connecting fixing rod 904, the other end of the connecting fixing rod 904 is connected to the outer side of the support bracket 3, and the discharge end of the conveyor belt 901 is facing the collection shell 903.
[0031] The photovoltaic component 10 includes a connection base 1001 connected to the top of the support bracket 3 , and a support connecting rod 1002 is connected to the top of the connection base 1001 .
[0032] The top of the supporting connecting rod 1002 is connected to a photovoltaic bracket 1003, and the top of the photovoltaic bracket 1003 is rotatably connected to two inclined brackets 1004. The inclined bracket 1004 is rotationally damped and connected to an inclined connector, and the other end of the inclined connector is connected to a photovoltaic panel 1005.
[0033] The specific working principle is: this device can achieve the effect of collecting and intercepting river garbage. Compared with traditional devices, this device can dry the garbage, avoiding the problem of garbage rotting inside the device. When the device is used, the device is placed on the river surface, and the float box 6 can make the device float on the surface of the river, so that the swing plate 404 is located inside the river surface. At this time, the device is tied to the shore to prevent the device from moving. During the flow of water in the river, the swing plate 404 is driven by the electric telescopic rod 402 to swing, thereby expanding the collection range of the device, thereby achieving the collection effect and efficiency of the device.
[0034] After the garbage enters the shell 1, it is blocked by the inner wall of the shell 1, so that the garbage contacts the bottom of the conveyor belt 901, and the garbage is transmitted upward through the transmission protrusion 902, thereby removing the garbage from the river surface, achieving the effect of drying the garbage. The photovoltaic component 10 is used to power the conveyor belt 901 motor and the motor telescopic rod 402, thereby achieving the self-powered effect of the device and avoiding the need for the device to be connected to an external cable.
[0035] Example 2: This example provides a photovoltaic-based river garbage drying storage and processing device, such as Figure 1-Figure 3 As shown, an opening is provided on one side of the collection shell 903, and the opening faces the direction of the conveyor belt 901. A guide plate is provided at the opening position of the collection shell 903, and the guide plate contacts the outer side surface of the conveyor belt 901.
[0036] The top of the supporting connecting rod 1002 is connected to a photovoltaic bracket 1003, and the top of the photovoltaic bracket 1003 is rotatably connected to two inclined brackets 1004. The inclined bracket 1004 is rotationally damped and connected to an inclined connector, and the other end of the inclined connector is connected to a photovoltaic panel 1005.
[0037] The specific working principle is: this device can achieve the effect of cleaning and intercepting river garbage. By collecting the garbage into the collection shell 903, it is convenient for the staff to carry out periodic recycling, reducing the work intensity of the staff. At the same time, the structure of the photovoltaic component 10 can enable the device to use clean energy, avoid the effect of external power supply, and avoid the external cable limiting the installation position of the device.
[0038] The above contents are further detailed descriptions of the present invention in conjunction with specific preferred embodiments, so as to facilitate those skilled in the art to understand and apply the present invention. It should not be considered that the specific implementation of the present invention is limited to these descriptions.
Claims
1. A photovoltaic-based river garbage drying, storage and processing device, comprising a housing (1) and a connecting bracket (2) connected to the top thereof, wherein the end of the connecting bracket (2) away from the housing (1) is connected to a supporting bracket (3), characterized in that: The outer side of the support bracket (3) is connected to a swing component (4), the outer side of the support bracket (3) is connected to a connecting rod (5), the other end of the connecting rod (5) is connected to a buoyancy box (6), the top of the shell (1) is rotatably connected to a rotating shaft (7), the outer arc surface of the rotating shaft (7) is connected to a contact plate (8), the inner wall of the shell (1) is connected to a transmission component (9), which is used for collecting and transporting river garbage, and the top of the support bracket (3) is connected to a photovoltaic component (10) for powering the transport structure.
2. The photovoltaic-based river garbage drying, storage and processing device according to claim 1 is characterized in that: The swing component (4) comprises a rotating bracket (401) connected to the outside of the housing (1); the rotating bracket (401) is rotatably connected to an electric telescopic rod (402); and the telescopic end of the electric telescopic rod (402) is rotatably connected to a docking bracket (403).
3. The photovoltaic-based river garbage drying, storage and processing device according to claim 2 is characterized in that: One end of the docking bracket (403) is connected to a swing plate (404), one end of the swing plate (404) is rotatably connected to the housing (1), and one end of the swing plate (404) away from the docking bracket (403) is connected to a plurality of guide members (405) distributed at equal intervals in a matrix.
4. The photovoltaic-based river garbage drying, storage and processing device according to claim 3 is characterized in that: The transmission component (9) includes a motor connected to the inner wall of the shell (1), the output end of the motor is connected to a conveyor belt (901), the outer side surface of the conveyor belt (901) is provided with transmission protrusions (902) at equal intervals, the side surface of the support bracket (3) is connected to the collection shell (903), the outer side surface of the collection shell (903) is connected to a connecting and fixing rod (904), the other end of the connecting and fixing rod (904) is connected to the outer side of the support bracket (3), and the discharge end of the conveyor belt (901) is oriented toward the collection shell (903).
5. The photovoltaic-based river garbage drying, storage and processing device according to claim 4 is characterized in that: The photovoltaic component (10) comprises a connection base (1001) connected to the top of the support bracket (3), and a support connecting rod (1002) is connected to the top of the connection base (1001).
6. The photovoltaic-based river garbage drying, storage and processing device according to claim 5 is characterized in that: The top of the supporting connecting rod (1002) is connected to a photovoltaic bracket (1003), the top of the photovoltaic bracket (1003) is rotatably connected to two inclined brackets (1004), the inclined bracket (1004) is rotationally damped and connected to an inclined connecting piece, and the other end of the inclined connecting piece is connected to a photovoltaic panel (1005).
7. The photovoltaic-based river garbage drying, storage and processing device according to claim 6 is characterized in that: Two groups of inclined supports (1004) are symmetrically arranged on both sides of the photovoltaic support (1003), and are respectively provided with independent photovoltaic panels (1005).
8. The photovoltaic-based river garbage drying, storage and processing device according to claim 7 is characterized in that: An opening is provided on one side of the collection shell (903), and the opening faces the direction of the conveyor belt (901). A guide plate is provided at the opening position of the collection shell (903), and the guide plate contacts the outer side surface of the conveyor belt (901).
Citation Information
Patent Citations
River garbage treatment device for environmental protection
CN220868154U