Carbon neutralization device for large-scale livestock and poultry breeding environment

By designing a carbon neutralization device in a large-scale livestock and poultry breeding environment, and using water rinsing and anaerobic fermentation to treat feces, the greenhouse gas emission problems caused by incomplete feces treatment are solved, and the carbon neutrality and breeding environment is improved.

CN120052266AInactive Publication Date: 2025-05-30HUNAN AGRI UNIV
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Patent Information

Application Number
CN202510376857.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-05-30
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

During the large-scale livestock and poultry breeding process, incomplete manure treatment leads to excessive greenhouse gas emissions, affecting carbon neutrality targets.

Method used

A large-scale carbon neutralization device for livestock and poultry breeding environment is designed, including the main body of the collection device, a sealing block, a vertical hard tube, a rotating nozzle, an adjustment mechanism and a lifting mechanism, and the feces are treated through water rinsing and anaerobic fermentation to reduce carbon emissions.

Benefits of technology

Effectively clean and collect manure from farms, reduce greenhouse gas emissions, improve the sanitation and quality of the breeding environment, and achieve the goal of carbon neutrality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a large-scale livestock and poultry breeding environment carbon neutralization device, and relates to the technical field of carbon neutralization, the large-scale livestock and poultry breeding environment carbon neutralization device comprises a collection device main body, the top surface of the collection device main body is the ground of a farm, a storage cavity is formed in the collection device main body, and a plurality of conical grooves are formed in the top surface of the collection device main body; a discharging channel communicating with the storage cavity is formed in the inner wall of the bottom of the conical groove. According to the large-scale livestock and poultry breeding environment carbon neutralization device provided by the invention, through the arrangement of the collecting device main body, the plugging block, the vertical hard pipe, the rotary spray head, the adjusting mechanism and the lifting mechanism, when livestock and poultry manure is cleaned, the plugging block can be lifted firstly, and the manure on the plugging block is washed down firstly; according to the device, excrement is washed into the conical groove, then the washed excrement is washed into the conical groove and flows into the material storage cavity to be collected, and then the collected excrement is subjected to anaerobic fermentation treatment, so that carbon emission in the breeding environment is reduced, and the sanitation and quality of the breeding environment are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of carbon neutralization, and particularly to a carbon neutralization device for large-scale livestock and poultry breeding environment. Background Art

[0002] Large-scale livestock and poultry breeding refers to achieving intensive, standardized and efficient livestock and poultry breeding through scientific management and technical means under a certain scale. A large amount of greenhouse gases will be generated during the production process of large-scale livestock and poultry breeding, mainly including methane (CH4), carbon dioxide (CO2), nitrous oxide (N2O), etc.; the emissions of these gases mainly come from the following aspects: Intestinal fermentation of livestock and poultry: Ruminants (such as cows and sheep) will produce a large amount of methane during digestion. Methane is a powerful greenhouse gas, and its greenhouse effect is 25 times that of carbon dioxide; Manure treatment: A large amount of greenhouse gases will be released during the storage and treatment of livestock and poultry manure, especially nitrous oxide; Feed production and transportation: The production process of feed requires a large amount of energy, including the production of chemical fertilizers and the transportation of feed, etc., and carbon dioxide will be generated during these processes; Energy consumption: The operation of the farm requires a large amount of electricity and fuel, and the use of these energies will also lead to the emission of carbon dioxide.

[0003] Currently, the main methods for carbon neutralization of the breeding environment include gas purification, manure treatment and resource utilization, etc. Among them, the most important is that manure will release a large amount of greenhouse gases. In the farm, livestock and poultry will produce a large amount of manure. Currently, large farms have special tools for cleaning livestock and poultry manure, such as a scraper that moves slowly back and forth horizontally to scrape the livestock and poultry manure on the ground. However, in actual situations, the scraper cannot completely scrape the manure on the ground, and a large amount of manure will still remain. These manures will still produce a large amount of greenhouse gases, which will lead to global climate change. Summary of the Invention

[0004] Based on the technical problems existing in the background art, the present invention proposes a carbon neutralization device for large-scale livestock and poultry breeding environment.

[0005] A carbon neutralization device for large-scale livestock and poultry breeding environment proposed by the present invention includes a main body of a collection device. The top surface of the main body of the collection device is the ground of a breeding farm. A storage chamber is opened in the main body of the collection device. A plurality of conical grooves are opened on the top surface of the main body of the collection device. A blanking channel communicating with the storage chamber is opened on the bottom inner wall of the conical groove. A blocking block capable of blocking the blanking channel is installed in the conical groove. A lifting hole is opened at the top of the blocking block. A vertical hard pipe is installed in the lifting hole. The vertical hard pipe can lift in the lifting hole. The top end of the vertical hard pipe is rotatably installed with a rotary nozzle. The rotary nozzle can be received into the lifting hole. Spray holes communicating with the inside of the rotary nozzle are opened on the outer periphery of the rotary nozzle. The axis of the spray hole does not intersect with the axis of the rotary nozzle. A flushing channel is opened in the blocking block. The flushing channel can communicate with the spray hole. The water outlet of the flushing channel is located at the bottom surface of the blocking block. An adjusting mechanism is installed at the position of the water outlet of the flushing channel. The adjusting mechanism can adjust the inclination angle of the water sprayed out from the water outlet position of the flushing channel. A lifting mechanism is installed in the blanking channel. The lifting mechanism can drive the vertical hard pipe to complete the lifting movement. The lifting mechanism can also drive the blocking block to lift.

[0006] Preferably, the adjusting mechanism includes a transverse moving frame, a blocking plate and a blocking spring. A transverse moving groove slidably matched with the transverse moving frame is opened on the top inner wall of the flushing channel. The transverse moving frame is slidably installed in the transverse moving groove. A rotating groove is penetrated through the middle of the transverse moving frame. The blocking plate is rotatably installed in the rotating groove. The blocking plate can cover the water outlet of the flushing channel. The blocking spring is located in the transverse moving groove. Two ends of the blocking spring respectively abut against the inner wall of the transverse moving groove and one side of the transverse moving frame.

[0007] Preferably, a gear is fixedly installed on the blocking plate. The gear meshes with the inner wall of the transverse moving groove.

[0008] Preferably, the lifting mechanism includes a fixed column and an electric slide rail. The fixed column is fixedly installed in the blanking channel. The diameter of the fixed column is smaller than the inner diameter of the blanking channel. A communication hole slidably matched with the vertical hard pipe is opened in the fixed column. The electric slide rail is fixedly installed in the communication hole. The vertical hard pipe is fixedly installed on the slider of the electric slide rail. The slider of the electric slide rail can drive the electric slide rail to lift in the communication hole.

[0009] Preferably, the lifting mechanism further includes a connecting cylinder and a driving spring; the top end of the connecting cylinder is fixedly connected to the bottom end of the plugging block, the circumferences of the connecting cylinder and the plugging block coincide, the top end of the fixed column is provided with an adaptation hole adapted to the connecting cylinder, the outer circumference of the connecting cylinder is circumferentially connected with a boss, the inner wall of the adaptation hole is provided with a limiting sliding groove adapted to the boss, the driving spring is located in the limiting sliding groove, and both ends of the driving spring are respectively connected to the boss and the inner wall of the end of the limiting sliding groove, and the driving spring can make the connecting cylinder tend to move upward.

[0010] Preferably, a sliding shaft is fixedly connected to the outer circumference of the boss on the connecting cylinder, and a threaded sliding groove slidably matched with the sliding shaft is provided on the inner wall of the limiting sliding groove, and the sliding shaft is slidably installed in the threaded sliding groove.

[0011] Preferably, a water injection pipe communicated with the communication hole is installed on the fixed column.

[0012] Preferably, a blanking mechanism is installed in the storage cavity, and the blanking mechanism can guide the air in the breeding environment to enter the storage cavity through the blanking channel.

[0013] Preferably, the blanking mechanism includes a bottom plate, a motor and a fan blade; the bottom plate is fixedly installed on the top inner wall of the storage cavity, and a plurality of guiding grooves are penetrated through the bottom plate, and the number of the guiding grooves is the same as and corresponds to the number of the conical grooves one by one; The motor is fixedly installed at the bottom end of the fixed column, and the fan blade is fixedly installed on the output shaft of the motor.

[0014] Preferably, a discharge pipe communicated with the storage cavity is installed on the side surface of the collection device main body; a limiting convex button is fixedly installed at the top end of the rotary spray head.

[0015] The large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention has the following beneficial effects: by arranging the collection device main body, the plugging block, the vertical hard pipe, the rotary spray head, the adjustment mechanism and the lifting mechanism, when cleaning the feces of livestock and poultry, the plugging block can be lifted first, the feces on the plugging block can be washed down first, and then the washed-down feces can be washed into the conical groove and flow into the storage cavity for collection, and then the collected feces are subjected to anaerobic fermentation treatment, reducing carbon emissions in the breeding environment and improving the hygiene and quality of the breeding environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic diagram of the overall structure of a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 2 is a sectional view of a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 3Partial cross-sectional view of the top of the collection device main body in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 4 Cross-sectional view of a single conical groove on the collection device main body in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 5 Structural schematic diagram of a vertical rigid pipe, a rotary nozzle and a limit knob in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 6 Cross-sectional view of the position of the injection hole in the rotary nozzle in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 7 Cross-sectional view of a vertical rigid pipe and a plugging block in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 8 Cross-sectional view of a plugging block and a connecting cylinder in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention; Figure 9 A large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention Figure 8 Enlarged view of part A; Figure 10 Structural schematic diagram of a transverse moving frame, a plugging plate and a gear in a large-scale livestock and poultry breeding environment carbon neutralization device proposed by the present invention.

[0017] In the figure: 1. Collection device main body; 2. Plugging block; 3. Vertical rigid pipe; 4. Rotary nozzle; 5. Flushing channel; 6. Limit knob; 7. Injection hole; 8. Transverse moving frame; 9. Plugging plate; 10. Plugging spring; 11. Gear; 12. Fixed column; 13. Electric slide rail; 14. Connecting cylinder; 15. Driving spring; 16. Slide shaft; 17. Water injection pipe; 18. Bottom plate; 19. Motor; 20. Fan blade; 21. Discharge pipe. Detailed implementation mode

[0018] Refer to Figures 1 - 10, the present invention provides a carbon neutralization device for large-scale livestock and poultry breeding environment, which includes a main body 1 of the collection device. The top surface of the main body 1 of the collection device is the ground of the breeding farm. A storage cavity is formed in the main body 1 of the collection device. A discharge pipe 21 communicated with the storage cavity is installed on the side surface of the main body 1 of the collection device. A plurality of conical grooves are formed on the top surface of the main body 1 of the collection device. A feeding channel communicated with the storage cavity is formed on the bottom inner wall of the conical groove. A blocking block 2 capable of blocking the feeding channel is installed in the conical groove. When the blocking block 2 blocks the feeding channel, the top surface of the blocking block 2 is flush with the top surface of the main body 1 of the collection device. A lifting hole is formed at the top of the blocking block 2. A vertical hard pipe 3 is installed in the lifting hole. The vertical hard pipe 3 can lift in the lifting hole. The top end of the vertical hard pipe 3 is rotatably installed with a rotary spray head 4. The top end of the rotary spray head 4 is fixedly installed with a limiting convex button 6. The rotary spray head 4 can be received into the lifting hole. Spray holes 7 communicated with the inside of the rotary spray head 4 are formed on the outer periphery of the rotary spray head 4. The axis of the spray hole 7 does not intersect with the axis of the rotary spray head 4. Normally, the vertical hard pipe 3 and the rotary spray head 4 are retracted into the lifting hole, and the limiting convex button 6 presses against the top surface of the blocking block 2, which can block the top opening of the lifting hole and reduce the blockage caused by feces entering the lifting hole. During cleaning, the rotary spray head 4 extends out of the lifting hole, and at the same time, the blocking block 2 is lifted. Water is sprayed out from the spray hole 7. After the water is sprayed out from the spray hole 7, the generated reaction force will drive the rotary spray head 4 to rotate on the vertical hard pipe 3, which can comprehensively wash the top surface of the blocking block 2. After the feces on the top surface of the blocking block 2 are washed down, the washed-down feces fall into the conical groove. Under the action of gravity, the feces and water flow downward along the conical surface of the conical groove, and then fall into the storage cavity through the feeding channel, so as to clean and collect the feces. Then, the feces in the storage cavity are discharged through the discharge pipe 21 for anaerobic fermentation treatment to generate biogas, which is used for power generation or heating, so as to realize the recycling of energy.

[0019] As Figure 2 , Figure 3 and Figure 4As shown, a flushing channel 5 is provided in the plugging block 2. The flushing channel 5 can be communicated with the injection holes 7. The water outlet of the flushing channel 5 is located at the bottom surface of the plugging block 2. An adjusting mechanism is installed at the position of the water outlet of the flushing channel 5. The adjusting mechanism can adjust the inclination angle of the water sprayed out from the water outlet position of the flushing channel 5. A lifting mechanism is installed in the feeding channel. The lifting mechanism can drive the vertical hard pipe 3 to complete the lifting movement, and the lifting mechanism can also drive the plugging block 2 to lift. In actual situations, feces will remain on the inner wall of the conical surface of the conical groove. Therefore, the rotary nozzle 4 is retracted into the lifting hole, so that the water sprayed out from the injection holes 7 enters the flushing channel 5, and then the adjusting mechanism adjusts the direction of the water sprayed out from the flushing channel 5, so that the water can comprehensively flush the inner wall of the conical groove, making the inner wall of the conical groove cleaned and reducing the feces residue. When the plugging block 2 plugs the feeding channel, it can ensure that the bottom surface of the plugging block 2 is in contact with the inner wall of the conical groove, ensuring its sealing, and also ensuring that the plugging block 2 is flush with the top surface of the collection device main body 1, facilitating the walking of livestock and poultry.

[0020] As Figure 4 , Figure 7 , Figure 8 , Figure 9 and Figure 10As shown in [relevant figures], the adjustment mechanism includes a transverse movement frame 8, a sealing plate 9 and a sealing spring 10; a transverse movement groove that slidably cooperates with the transverse movement frame 8 is provided on the top inner wall of the flushing channel 5. The transverse movement frame 8 is slidably installed in the transverse movement groove. A rotation groove is penetrated through the middle of the transverse movement frame 8. The sealing plate 9 is rotatably installed in the rotation groove. The sealing plate 9 can cover the water outlet of the flushing channel 5. The sealing spring 10 is located in the transverse movement groove. The two ends of the sealing spring 10 respectively abut against the inner wall of the transverse movement groove and one side of the transverse movement frame 8. A gear 11 is fixedly installed on the sealing plate 9. The gear 11 meshes with the inner wall of the transverse movement groove. When water enters the flushing channel 5, the water flow impacts on the sealing plate 9, which will impact the sealing plate 9. The sealing plate 9 moves and rotates under the impact of the water flow. When the sealing plate 9 moves, it will drive the transverse movement frame 8 to move synchronously. When the sealing plate 9 and the transverse movement frame 8 move, the sealing plate 9 will also rotate. Since the gear 11 meshes with the inner wall of the transverse movement groove, when the sealing plate 9 moves, the sealing plate 9 will rotate correspondingly. The water impacts on the sealing plate 9, and the water will flow along the inclined surface of the sealing plate 9 and impact on the inner wall of the conical groove for flushing, so as to flush the feces in the conical groove clean. It is also possible to adjust the water flow impact force so that the sealing plate 9 rotates to an appropriate angle, so that the water flow flushes the top surface of the collection device main body 1, and can flush the feces comprehensively, reducing feces residue; when the flushing stops, under the rebounding action of the sealing spring 10, the sealing spring 10 pushes the transverse movement frame 8 to slide back to its original position. The transverse movement frame 8 drives the sealing plate 9 to move synchronously. Due to the meshing of the gear 11 and the inner wall of the transverse movement groove, the sealing plate 9 rotates back to its original position. The sealing plate 9 blocks the water outlet of the flushing channel 5, and at the same time the sealing plate 9 is received into the sealing block 2.

[0021] As Figure 3 , Figure 4 and Figure 7 shown, the lifting mechanism includes a fixed column 12 and an electric slide rail 13; the fixed column 12 is fixedly installed in the feeding channel through a bracket. The diameter of the fixed column 12 is smaller than the inner diameter of the feeding channel. A communication hole that slidably cooperates with the vertical hard pipe 3 is provided in the fixed column 12. The electric slide rail 13 is fixedly installed in the communication hole. The vertical hard pipe 3 is fixedly installed on the slider of the electric slide rail 13. The slider of the electric slide rail 13 can drive the electric slide rail 13 to move up and down in the communication hole. When operating the lifting of the vertical hard pipe 3, the electric slide rail 13 works. The electric slide rail 13 drives the vertical hard pipe 3 to move up and down in the communication hole. When the vertical hard pipe 3 rises, the vertical hard pipe 3 pushes the rotary nozzle 4 to rise synchronously until the rotary nozzle 4 extends out from the top surface of the sealing block 2 until the water outlet of the spray hole 7 is exposed to the outside. Water is sprayed out from the spray hole 7, so that the water flushes the top surface of the sealing block 2. At the same time, the reaction force generated by the water spray can drive the rotary nozzle 4 to rotate.

[0022] As Figure 3 ,Figure 4 , Figure 7 and Figure 8 As shown in Figure 7 and Figure 8 , the lifting mechanism further includes a connecting cylinder 14 and a driving spring 15; the top end of the connecting cylinder 14 is fixedly connected to the bottom end of the plugging block 2, the circumferences of the connecting cylinder 14 and the plugging block 2 coincide, the top end of the fixed column 12 is provided with an adaptation hole adapted to the connecting cylinder 14, the outer circumference of the connecting cylinder 14 is circumferentially connected with a boss, the inner wall of the adaptation hole is provided with a limiting chute adapted to the boss, the driving spring 15 is located in the limiting chute, and both ends of the driving spring 15 are respectively connected to the boss and the inner wall of the end of the limiting chute. The driving spring 15 can make the connecting cylinder 14 tend to move upward. Figure 7 In Figure 7 , the driving spring 15 is always in a stretched state. The driving spring 15 pulls the boss upward, so that the connecting cylinder 14 can move upward. In actual situations, it is necessary to centrally process the feces washed down from the top surface of the plugging block 2. It is necessary to drive the plugging block 2 to rise, so that the feces are washed into the conical groove by the water flow, and then the feces flow into the blanking channel along with the water flow and then into the storage cavity, realizing the collection of feces. At the same time, it can clean the ground cleanliness of the breeding environment, improve the quality of the breeding environment, improve the comfort of livestock and poultry, and reduce the carbon content and odor in the breeding environment. When adjusting the rise of the plugging block 2, the electric slide rail 13 works to drive the vertical hard pipe 3 and the rotary nozzle 4 to rise. When the rotary nozzle 4 rises, it will drive the limit convex button 6 to rise synchronously. After the limit convex button 6 rises, the plugging block 2 is not pressed by the limit convex button 6. Under the pulling action of the driving spring 15, the connecting cylinder 14 and the plugging block 2 rise synchronously until the plugging block 2 rises to the highest position. Then the vertical hard pipe 3 continues to move upward until the rotary nozzle 4 protrudes outside the plugging block 2, realizing the flushing of the top surface of the plugging block 2. The flushed feces fall into the conical groove or the top surface of the collection device main body 1. Then drive the vertical hard pipe 3 and the rotary nozzle 4 to descend, so that the rotary nozzle 4 retracts into the lifting hole of the plugging block 2 until the limit convex button 6 abuts against the top surface of the plugging block 2. The water in the spray hole 7 enters the flushing channel 5, and then by adjusting the height of the rotary nozzle 4 and the cooperation of the rebound action of the driving spring 15, the plugging block 2 is kept at a certain height, so that the water sprays out from the flushing channel 5, adjusting the impact force of the water flow, adjusting the angle and height of the sprayed water flow, and flushing the feces in the conical groove and on the top surface of the collection device main body 1, making the flushing more thorough and reducing the feces residue. In addition, in actual situations, water can be introduced into each plugging block 2 separately for regional water supply, reducing the generation of water impact on each other, so that the water can wash the feces on the top surface of the collection device main body 1 into the conical groove and flow into the storage cavity.

[0023] As Figure 3 , Figure 4 , Figure 7 and Figure 8As shown in the figure, a sliding shaft 16 is fixedly connected to the outer periphery of the convex platform on the connecting cylinder 14. A threaded chute that slidably cooperates with the sliding shaft 16 is provided on the inner wall of the limit chute. The sliding shaft 16 is slidably installed in the threaded chute. In actual situations, the flushing channels 5 are arranged in a circular array, but it is impossible to achieve comprehensive flushing. Therefore, it is necessary to drive the blocking block 2 to rotate, so that the water column ejected from the flushing channels 5 makes a circular motion. When the blocking block 2 moves up and down, the sliding shaft 16 will slide along the threaded chute, causing the blocking block 2 to perform a spiral up-and-down motion, thereby realizing rotational flushing, which can wash the feces in the conical groove and on the top surface of the collection device main body 1, making the flushing effect better.

[0024] As Figure 3 , Figure 4 and Figure 7 shown in the figure, a water injection pipe 17 communicating with the communication hole is installed on the fixed column 12. Water is injected into the communication hole through the water injection pipe 17, and then the water enters the vertical hard pipe 3 from the bottom opening of the vertical hard pipe 3 to realize the flushing operation of the conical groove and the top surface of the collection device main body 1.

[0025] As Figure 2 , Figure 3 , Figure 4 and Figure 7 shown in the figure, a blanking mechanism is installed in the storage cavity. The blanking mechanism can guide the air in the breeding environment to enter the storage cavity through the blanking channel. In actual operation, mainly through the action of water flow and gravity, the feces washed into the conical groove flow into the storage cavity. The blanking mechanism includes a bottom plate 18, a motor 19 and a fan blade 20; the bottom plate 18 is fixedly installed on the top inner wall of the storage cavity. A plurality of guiding grooves are penetrated on the bottom plate 18. The number of guiding grooves is the same as and corresponds one by one to the number of conical grooves. The motor 19 is fixedly installed at the bottom end of the fixed column 12, and the fan blade 20 is fixedly installed on the output shaft of the motor 19. When the motor 19 works, the motor 19 drives the fan blade 20 to rotate. The fan blade 20 rotates to form a flowing air current, so that the air current flows from top to bottom, which will drive the feces and water in the conical groove to flow into the storage cavity, improving the collection and treatment of feces.

[0026] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.

Claims

1. A carbon neutralization device for large-scale livestock and poultry breeding environment, characterized in that: The invention comprises a collecting device body (1), the top surface of the collecting device body (1) is the ground of a breeding farm, a material storage cavity is provided in the collecting device body (1), a plurality of conical grooves are provided in the top surface of the collecting device body (1), a material discharge channel connected to the material storage cavity is provided on the bottom inner wall of the conical groove, a blocking block (2) capable of blocking the material discharge channel is installed in the conical groove, a lifting hole is provided on the top of the blocking block (2), a vertical hard pipe (3) is installed in the lifting hole, the vertical hard pipe (3) can be lifted and lowered in the lifting hole, a rotating nozzle (4) is rotatably installed at the top end of the vertical hard pipe (3), the rotating nozzle (4) can be received in the lifting hole, a spray hole (7) connected to the rotating nozzle (4) is provided on the outer periphery of the rotating nozzle (4), and the axis of the spray hole (7) does not intersect with the axis of the rotating nozzle (4); A flushing channel (5) is provided in the blocking block (2), the flushing channel (5) being able to communicate with the injection hole (7), the water outlet of the flushing channel (5) being located on the bottom surface of the blocking block (2), and an adjustment mechanism being installed at the water outlet of the flushing channel (5), the adjustment mechanism being able to adjust the inclination angle of water injected at the water outlet of the flushing channel (5); A lifting mechanism is installed in the material discharge channel, and the lifting mechanism can drive the vertical hard pipe (3) to complete the lifting movement. The lifting mechanism can also drive the blocking block (2) to complete the lifting movement.

2. A carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 1, characterized in that: The regulating mechanism comprises a transverse moving frame (8), a blocking plate (9) and a blocking spring (10); the top inner wall of the flushing channel (5) is provided with a transverse moving groove which is slidably matched with the transverse moving frame (8); the transverse moving frame (8) is slidably mounted in the transverse moving groove; a rotation groove is penetrated through the middle of the transverse moving frame (8); the blocking plate (9) is rotatably mounted in the rotation groove; the blocking plate (9) can cover the water outlet of the flushing channel (5); the blocking spring (10) is located in the transverse moving groove; and the two ends of the blocking spring (10) are respectively abutted against the inner wall of the transverse moving groove and one side of the transverse moving frame (8).

3. A carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 2, characterized in that: A gear (11) is fixedly mounted on the blocking plate (9), and the gear (11) is meshed with the inner wall of the transverse movement groove.

4. The carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 1 is characterized in that: The lifting mechanism comprises a fixed column (12) and an electric slide rail (13); the fixed column (12) is fixedly installed in a material discharge channel, the diameter of the fixed column (12) is smaller than the inner diameter of the material discharge channel, a connecting hole for slidingly cooperating with a vertical hard pipe (3) is provided in the fixed column (12), the electric slide rail (13) is fixedly installed in the connecting hole, the vertical hard pipe (3) is fixedly installed on a slider of the electric slide rail (13), and the slider of the electric slide rail (13) can drive the electric slide rail (13) to move up and down in the connecting hole.

5. A carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 4, characterized in that: The lifting mechanism further comprises a connecting tube (14) and a driving spring (15); the top end of the connecting tube (14) is fixedly connected to the bottom end of the blocking block (2); the circumference of the connecting tube (14) coincides with the circumference of the blocking block (2); the top end of the fixing column (12) is provided with an adapting hole adapted to the connecting tube (14); the outer circumference of the connecting tube (14) is connected to a boss; the inner wall of the adapting hole is provided with a limiting slide groove adapted to the boss; the driving spring (15) is located in the limiting slide groove; the two ends of the driving spring (15) are respectively connected to the boss and the inner wall of the end of the limiting slide groove; the driving spring (15) can make the connecting tube (14) tend to move upward.

6. A carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 5, characterized in that: A sliding shaft (16) is fixedly connected to the outer periphery of the upper boss of the connecting tube (14), a threaded sliding groove slidably matched with the sliding shaft (16) is provided on the inner wall of the limiting sliding groove, and the sliding shaft (16) is slidably mounted in the threaded sliding groove.

7. The carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 4 is characterized in that: A water injection pipe (17) connected to the communication hole is installed on the fixed column (12).

8. The carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 1 is characterized in that: A feeding mechanism is installed in the storage cavity, and the feeding mechanism can guide the air in the breeding environment to enter the storage cavity through the feeding channel.

9. A carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 8, characterized in that: The material unloading mechanism comprises a bottom plate (18), a motor (19) and a fan blade (20); the bottom plate (18) is fixedly mounted on the top inner wall of the material storage chamber, and a plurality of guide grooves are formed through the bottom plate (18), wherein the number of the guide grooves is the same as the number of the conical grooves and corresponds to each other. The motor (19) is fixedly mounted on the bottom end of the fixed column (12), and the fan blade (20) is fixedly mounted on the output shaft of the motor (19).

10. The carbon neutralization device for large-scale livestock and poultry breeding environment according to claim 1 is characterized in that: A discharge pipe (21) communicating with the material storage chamber is installed on the side of the collecting device body (1); a limit knob (6) is fixedly installed on the top of the rotating nozzle (4).