Livestock breeding excrement treatment equipment

By introducing slack detection components, locking control components and liquid-sealed condensate discharge components into livestock manure treatment equipment, the problems of rubber aeration diaphragm deformation and condensate discharge were solved, and the stability and efficiency of the equipment were improved.

CN120647102AInactive Publication Date: 2025-09-16贺州市八步区莲塘镇农业服务中心
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Patent Information

Application Number
CN202510971369.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-15
Publication Date
2025-09-16
Estimated Expiration
Not applicable · inactive patent

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Abstract

The invention discloses livestock breeding excrement treatment equipment, and relates to the technical field of excrement sewage treatment. Comprising a liquid dung oxygenation part, an aeration device is installed on the liquid dung oxygenation part, and the aeration device is used for aerating fecal sewage; a relaxation detection piece is mounted on the liquid dung oxygenation part; the looseness detection piece is used for controlling gas cut-off; a row of mounting and dismounting control pieces are mounted at the bottom of the liquid dung oxygenation part; a row of locking control pieces are mounted on the liquid dung oxygenation part; the mounting and dismounting control piece is used for preventing sewage from flowing backwards; the locking control piece is matched with the mounting and dismounting control piece, so that the locking work can be automatically controlled, and a worker can be prevented from operating and replacing the aeration device when accumulated water exists in the aeration tank; the problems that according to existing livestock breeding excrement aeration treatment equipment, excessive inflation of an automatic anti-aeration membrane is not convenient, and operation and aeration disc replacement under the standard waterproof condition are not convenient are solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of excrement and sewage treatment, in particular to livestock excrement treatment equipment. Background Art

[0002] The core goal of aeration treatment of livestock manure is to accelerate aerobic microbial metabolism through artificial oxygen supply, achieving efficient deodorization, pollutant degradation and resource conversion. The rubber aeration disc benefits from its elastic structure, and the diaphragm micropores adaptively expand or contract with air pressure to match different water depths and water quality requirements. After long-term use, the rubber aeration diaphragm of current livestock manure aeration treatment equipment will cause excessive deformation due to long-term pressure and blockage, affecting the micropore diameter and reducing the aeration treatment quality. It is not convenient to automatically prevent the aeration diaphragm from excessive swelling, nor is it convenient to control the replacement of the aeration disc under waterproofing, which can easily cause backflow. It is also not convenient to automatically control the discharge of condensate seals. Traditional condensate discharge will also be mixed with gas, which will directly affect the pipeline pressure and cause pipeline surge.

[0003] To this end, we propose a livestock breeding manure processing equipment. Summary of the Invention

[0004] The purpose of the present invention is to provide a livestock manure treatment equipment to solve the problem raised in the above background technology that the current livestock manure aeration treatment equipment is not convenient for automatically preventing the aeration membrane from excessively expanding, and is not convenient for replacing the aeration disk under standardized waterproofing.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: A livestock manure treatment equipment, comprising a manure oxygenation section, an aeration device installed on the manure oxygenation section, and the aeration device is used to aerate manure sewage; a slack detection component is installed on the manure oxygenation section; the slack detection component is used to control air cut-off; a row of installation and disassembly control components are installed at the bottom of the manure oxygenation section; a row of locking control components are installed on the manure oxygenation section; the installation and disassembly control components are used to prevent sewage backflow; a liquid-sealed condensation discharge component is installed on the manure oxygenation section; the liquid-sealed condensation discharge component is used to prevent pressure relief; the manure oxygenation section comprises: an aeration main pipe and a support frame, three support frames are fixedly installed on the aeration main pipe, and two through holes are respectively provided on the three support frames; a flange is provided on the aeration main pipe; the heights of the three support frames decrease gradually.

[0006] Preferably, the manure oxygenation part further includes: branch pipes, a row of branch pipes are fixedly mounted on the aeration main pipe, and each row of branch pipes is provided with a solenoid valve; the flange at the end of the aeration main pipe is used to connect to a blower through a pipeline; each row of branch pipes is provided with an internal thread.

[0007] Preferably, the aeration device includes: an aeration mounting shell, a rubber aeration membrane, a guide column and a limit ring. The aeration mounting shell is provided in a row, and the structures on the aeration mounting shells in one row are the same; a threaded barrel is provided at the bottom of the aeration mounting shell; the threaded barrel at the bottom of the aeration mounting shell is threadedly connected to the branch pipe; a rubber aeration membrane is fixedly installed on the aeration mounting shell; aeration micropores are provided on the rubber aeration membrane; a guide column is fixedly installed on the bottom of the rubber aeration membrane, and the end of the guide column is an arc-shaped structure; the guide column passes through the aeration mounting shell; a limit ring is fixedly installed on the bottom of the aeration mounting shell, and a circle of grooves is provided on the limit ring; the aeration mounting shell is connected to the aeration main pipe; when the three support frames are installed on the ground, the three rubber aeration membranes are horizontal.

[0008] Preferably, the slack detection component includes: a detection mounting frame, a lifting shaft and a slack switch, the detection mounting frames are provided in a row, and the structures of the detection mounting frames in one row are the same; the detection mounting frame is provided with two through slots; the detection mounting frame is fixedly installed inside the branch pipe; the lifting shaft is slidably installed on the detection mounting frame; the lifting shaft is sleeved with a tension spring, and the tension spring on the lifting shaft is connected between the detection mounting frame and the lifting shaft; the slack switch is fixedly installed on the top of the lifting shaft; the guide column squeezes and fits the end of the slack switch; the slack switch is electrically connected to the solenoid valve provided on the branch pipe.

[0009] Preferably, the installation and disassembly control component includes: a buoyancy mounting cylinder, a buoyancy switch and a spring. The buoyancy mounting cylinder is fixedly installed at the bottom of the aeration main pipe; a hexagonal hole is provided on the buoyancy mounting cylinder; a buoyancy switch is fixedly installed inside the buoyancy mounting cylinder; a spring is sleeved inside the buoyancy mounting cylinder, and the spring is located outside the buoyancy switch.

[0010] Preferably, the installation and disassembly control component also includes: a buoyancy column and a floating block, the buoyancy column is slidably inserted into the buoyancy installation tube; the top of the buoyancy column is connected to the end of the spring; the end of the buoyancy switch is squeezed and fitted to the buoyancy column; a floating block is fixedly installed at the bottom of the buoyancy column; the thickness of the three floating blocks decreases successively.

[0011] Preferably, the locking control component includes: a limiting guide cylinder and a limiting sleeve, the limiting guide cylinder is fixedly sleeved on the branch pipe; a circle of raised strips is provided on the limiting guide cylinder; the limiting sleeve is sleeved on the limiting guide cylinder, and the limiting sleeve slides on a circle of raised teeth on the limiting guide cylinder; a circle of raised strips is provided on the top of the limiting sleeve, and the circle of raised teeth on the top of the limiting sleeve are used to insert the limiting rings respectively.

[0012] Preferably, the locking control component also includes: an electromagnet and a reset spring, the float switch is electrically connected to the electromagnet; the electromagnet is sleeved inside the limit guide cylinder; the electromagnet is used to magnetically attract the limit ring; the limit guide cylinder is sleeved with a reset spring, and the reset spring is connected between the limit guide cylinder and the limit sleeve.

[0013] Preferably, the liquid-sealed condensation discharge component includes: a liquid-sealed drain pipe and a water trough, wherein the liquid-sealed drain pipe is fixedly installed at the end of the aeration main pipe; a water trough is provided on the liquid-sealed drain pipe; a solenoid valve is provided at the bottom of the liquid-sealed drain pipe; the bottom of the liquid-sealed drain pipe is a sloped structure; and the water trough is used to circulate the condensed water in the aeration main pipe.

[0014] Preferably, the liquid-seal condensation discharge component includes: a buoyancy block and a liquid level switch, the buoyancy block is located inside the liquid-seal drain pipe; a gap is provided between the buoyancy block and the liquid-seal drain pipe; a liquid level switch is fixedly installed on the top of the buoyancy block, and the liquid level switch is electrically connected to the solenoid valve provided at the bottom of the liquid-seal drain pipe; the end of the liquid level switch is used to squeeze the inner wall of the aeration main pipe.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] The present invention adopts a slack detection piece in conjunction with an aeration device to ensure the aeration bubble diffusion effect of the structure, avoids the problem of the rubber aeration membrane being pulled and deformed due to long-term use, and can timely control and stop aeration, provide auxiliary prompts, and avoid excessive bubbles after the rubber aeration membrane is excessively squeezed, pulled and deformed, thereby affecting the aeration effect, thereby ensuring that the elasticity of the rubber aeration membrane meets the standards during actual use.

[0017] The use of locking control parts in conjunction with installation and disassembly control parts can realize automatic control locking work, which can prevent staff from operating and replacing the aeration device when there is water accumulation in the aeration tank, and can prevent sewage backflow caused by illegal operation. It also avoids the aeration device from being stripped and falling off due to long-term use after installation, ensuring the installation stability of the aeration device and effectively improving the operational standardization of staff.

[0018] The use of liquid-sealed condensation discharge components can achieve automatic control using buoyancy blocks and liquid level switches to retain some condensate as a liquid seal when discharging condensate, which can avoid excessive pressure fluctuations inside the aeration main pipe when discharging condensate. Manual operation of the external valve to drain the condensate will cause the drain pipe and the aeration pipe to be directly connected, and the high-pressure gas in the aeration system will escape from the drain port, causing air pressure loss and reducing aeration efficiency. At the same time, retaining a small amount of water can form a liquid-sealed barrier to block the gas leakage path. At the same time, excessive pressure fluctuations will also cause pipeline surge and damage the blower and pipeline. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the overall structure of a livestock excrement processing device of the present invention;

[0020] Figure 2 This is a cross-sectional view of the internal structure of a livestock excrement processing device of the present invention;

[0021] Figure 3 This is a schematic diagram of the bottom structure of a livestock excrement processing device of the present invention;

[0022] Figure 4 This is a schematic diagram of the structure of the manure water oxygenation unit of the present invention;

[0023] Figure 5 Schematic diagram of the aeration device structure of the present invention;

[0024] Figure 6 This is a schematic diagram of the installation position structure of the detection mounting bracket of the present invention;

[0025] Figure 7 This is a schematic structural diagram of a slack detection component of the present invention;

[0026] Figure 8 This is a schematic diagram of the locking control structure of the present invention;

[0027] Figure 9 This is a schematic diagram of the structure of the installation and disassembly control component of the present invention;

[0028] Figure 10 For the present invention Figure 2 A magnified view of the structure of region E in the middle.

[0029] In the figure: 1. Manure oxygenation part; 101. Aeration main pipe; 102. Support frame; 103. Branch pipe; 2. Aeration device; 201. Aeration mounting shell; 202. Rubber aeration membrane; 203. Guide column; 204. Limiting ring; 3. Slack detection part; 301. Detection mounting frame; 302. Lifting shaft; 303. Slack switch; 4. Installation and disassembly control part; 401. Buoyancy mounting cylinder; 402. Buoyancy switch; 403. Spring; 404. Buoyancy column; 405. Floating block; 5. Locking control part; 501. Limiting guide cylinder; 502. Limiting sleeve; 503. Electromagnet; 504. Reset spring; 6. Liquid seal condensation discharge part; 601. Liquid seal drain pipe; 602. Water trough; 603. Buoyancy block; 604. Liquid level switch. DETAILED DESCRIPTION

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0031] Example 1: Please refer to Figures 1 to 10 As shown:

[0032] The present invention provides a technical solution: a livestock manure treatment equipment, comprising a manure oxygenation part 1, an aeration device 2 is installed on the manure oxygenation part 1, the aeration device 2 is used to aerate manure sewage; a slack detection part 3 is installed on the manure oxygenation part 1; the slack detection part 3 is used to control gas cut-off; a row of installation and disassembly control parts 4 are installed at the bottom of the manure oxygenation part 1; a row of locking control parts 5 are installed on the manure oxygenation part 1; the installation and disassembly control parts 4 are used to prevent sewage backflow; a liquid-sealed condensation discharge part 6 is installed on the manure oxygenation part 1; the liquid-sealed condensation discharge part 6 is used to prevent pressure relief; the manure oxygenation part 1 comprises: an aeration main pipe 101 and a support frame 102, three support frames 102 are fixedly installed on the aeration main pipe 101, and the three support frames 102 are respectively provided with two through holes; a flange is provided on the aeration main pipe 101; the heights of the three support frames 102 decrease gradually.

[0033] Among them, the manure oxygenation part 1 also includes: branch pipes 103, a row of branch pipes 103 are fixedly installed on the aeration main pipe 101, and a row of branch pipes 103 are respectively provided with solenoid valves; the flange at the end of the aeration main pipe 101 is used to connect the blower through the pipeline; a row of branch pipes 103 are respectively provided with internal threads; the aeration device 2 includes: an aeration mounting shell 201, a rubber aeration membrane 202, a guide column 203 and a limit ring 204, the aeration mounting shell 201 is provided with a row, and the structures on a row of aeration mounting shells 201 are the same; a threaded barrel is provided at the bottom of the aeration mounting shell 201; the threaded barrel at the bottom of the aeration mounting shell 201 is threadedly connected to the branch pipe 103; a rubber aeration membrane 202 is fixedly installed on the aeration mounting shell 201 2; The rubber aeration membrane 202 is provided with aeration micropores; A guide column 203 is fixedly installed at the bottom of the rubber aeration membrane 202, and the end of the guide column 203 is an arc-shaped structure; The guide column 203 passes through the aeration mounting shell 201; A limit ring 204 is fixedly installed at the bottom of the aeration mounting shell 201, and a circle of grooves is provided on the limit ring 204; The aeration mounting shell 201 is connected to the aeration main pipe 101; When the three support frames 102 are installed on the ground, the three rubber aeration membranes 202 are horizontal; The slack detection part 3 includes: a detection mounting frame 301, a lifting shaft 302 and a slack switch 303, and the detection mounting frame 301 is provided in a row, and the structures on the row of detection mounting frames 301 are the same; The detection mounting frame 301 is provided Two through slots; a detection mounting bracket 301 is fixedly installed inside the branch pipe 103; a lifting shaft 302 is slidably installed on the detection mounting bracket 301; a tension spring is sleeved on the lifting shaft 302, and the tension spring on the lifting shaft 302 is connected between the detection mounting bracket 301 and the lifting shaft 302; a relaxation switch 303 is fixedly installed on the top of the lifting shaft 302; the guide column 203 squeezes and fits the end of the relaxation switch 303; the relaxation switch 303 is electrically connected to the solenoid valve provided on the branch pipe 103, and the use of the relaxation detection member 3 in conjunction with the aeration device 2 can ensure the aeration bubble diffusion effect of this structure, avoid the problem of the rubber aeration membrane 202 being pulled and deformed due to long-term use and long-term pressure. And timely control to stop aeration, assist in prompting, and avoid excessive bubbles after the rubber aeration membrane 202 is excessively squeezed, pulled and deformed, which affects the aeration effect, ensures that the elasticity of the rubber aeration membrane 202 meets the standard during actual use, and can ensure that the maximum expansion amount meets the standard, and assists in reducing the hidden dangers caused by rubber aging. Once the rubber aeration membrane 202 is expanded by the force of wind for a long time and gradually ages and expands and deforms, the area of ​​the rubber aeration membrane 202 increases excessively. When the bulging deformation is excessive, the tension spring on the lifting shaft 302 is completely contracted. At this time, the relaxation switch 303 is no longer squeezed by the guide column 203, and the solenoid valve on the branch pipe 103 can be controlled to close, so as to stop the air supply and prompt the staff to replace and repair it in time.

[0034] Among them, the installation and disassembly control component 4 includes: a buoyancy installation cylinder 401, a buoyancy switch 402 and a spring 403. The buoyancy installation cylinder 401 is fixedly installed at the bottom of the aeration main pipe 101; a hexagonal hole is provided on the buoyancy installation cylinder 401; a buoyancy switch 402 is fixedly installed inside the buoyancy installation cylinder 401; a spring 403 is sleeved inside the buoyancy installation cylinder 401, and the spring 403 is located outside the buoyancy switch 402; the installation and disassembly control component 4 also includes: a buoyancy column 404 and a floating block 405. The buoyancy column 404 is slidably plugged into the buoyancy installation cylinder 401; the top of the buoyancy column 404 is connected to the spring 40 3 ends; the end of the buoyancy switch 402 is squeezed and fitted with the buoyancy column 404; a floating block 405 is fixedly installed at the bottom of the buoyancy column 404; the thickness of the three floating blocks 405 decreases in sequence; the locking control member 5 includes: a limiting guide cylinder 501 and a limiting sleeve 502, the limiting guide cylinder 501 is fixedly sleeved on the branch pipe 103; a circle of raised strips is provided on the limiting guide cylinder 501; the limiting sleeve 502 is sleeved on the limiting guide cylinder 501, and the limiting sleeve 502 slides on a circle of raised teeth on the limiting guide cylinder 501; a circle of raised strips is provided on the top of the limiting sleeve 502, and the circle of raised teeth on the top of the limiting sleeve 502 are respectively Used to insert the limit ring 204; the locking control part 5 also includes: an electromagnet 503 and a reset spring 504, and the buoyancy switch 402 is electrically connected to the electromagnet 503; the limit guide cylinder 501 is internally sleeved with an electromagnet 503; the electromagnet 503 is used to magnetically attract the limit ring 204; the limit guide cylinder 501 is sleeved with a reset spring 504, and the reset spring 504 is connected between the limit guide cylinder 501 and the limit sleeve 502. The use of the locking control part 5 in conjunction with the installation and disassembly control part 4 can realize automatic control of the locking work, which can avoid the staff from operating and replacing the aeration device when there is water in the aeration tank 2. It can prevent sewage backflow caused by illegal operation, and also prevent the aeration device 2 from being stripped and falling off during long-term use after installation, ensuring the installation stability of the aeration device 2, and effectively improving the operational standardization of the staff. Once there is sewage liquid level in the aeration tank, the sewage buoyancy control float 405 rises, driving the buoyancy column 404 to move up and squeeze the buoyancy switch 402, compressing the spring 403. At this time, the buoyancy switch 402 can control the electromagnet 503 to magnetically attract the limit ring 204. The circle of raised teeth on the top of the limit sleeve 502 is used to insert the limit ring 204 for limiting, and cannot be tightened or disassembled.

[0035] Example 2, based on Example 1, the liquid-sealed condensation discharge member 6 includes: a liquid-sealed drain pipe 601 and a water groove 602, the liquid-sealed drain pipe 601 is fixedly installed at the end of the aeration main pipe 101; a water groove 602 is opened on the liquid-sealed drain pipe 601; a solenoid valve is provided at the bottom of the liquid-sealed drain pipe 601; the bottom of the liquid-sealed drain pipe 601 is a sloped structure; the water groove 602 is used to circulate the condensed water in the aeration main pipe 101; the liquid-sealed condensation discharge member 6 includes: a buoyancy block 603 and a liquid level switch 604, the buoyancy block 603 Located inside the liquid seal drain pipe 601; a gap is provided between the buoyancy block 603 and the liquid seal drain pipe 601; a liquid level switch 604 is fixedly installed on the top of the buoyancy block 603, and the liquid level switch 604 is electrically connected to the solenoid valve provided at the bottom of the liquid seal drain pipe 601; the end of the liquid level switch 604 is used to squeeze the inner wall of the aeration main pipe 101, and the liquid seal condensation discharge member 6 can realize the automatic control of the buoyancy block 603 and the liquid level switch 604 when discharging the condensed water, retaining part of the condensed water as a liquid seal, which can avoid the inside of the aeration main pipe 101 when discharging the condensed water. If the pressure fluctuation is too large, manually operating the external valve to drain the condensate will cause the drain pipe and the aeration pipe to be directly connected. The high-pressure gas in the aeration system will escape from the drain port, causing air pressure loss and reducing aeration efficiency. At the same time, a small amount of water can form a liquid seal barrier to block the gas leakage path. At the same time, excessive pressure fluctuations can also cause pipeline surge and damage the blower and pipeline. When the liquid level inside the liquid seal drain pipe 601 exceeds the standard, the buoyancy block 603 pushes the liquid level switch 604 to squeeze the inner wall of the aeration main pipe 101 under the action of buoyancy. At this time, the bottom of the liquid seal drain pipe 601 is The solenoid valve can be opened to discharge condensed water. As the condensed water is discharged, the liquid level inside the liquid-sealed drain pipe 601 drops, and the buoyancy block 603 drives the liquid level switch 604 to move downward and is no longer squeezed, thereby controlling the solenoid valve at the bottom of the liquid-sealed drain pipe 601 to close and stop the discharge. Because the liquid level switch 604 requires a certain amount of buoyancy to be squeezed, a certain amount of stroke is required when the liquid level switch 604 is not squeezed and is reset. When the condensed water is discharged, it will be discharged quickly under the action of the air pressure inside the aeration main pipe 101, ensuring that the condensed water level is normal and there is no air pressure leakage.

[0036] The working principle of this embodiment is as follows: First, when installing the aeration main pipe 101, the through hole on the support frame 102 is installed at the bottom of the aeration tank through the bolts, and the height of the three support frames 102 is gradually reduced to realize the inclined installation of the aeration main pipe 101, so that the condensed water is collected in the liquid seal drain pipe 601. When the liquid level inside the liquid seal drain pipe 601 exceeds the standard, the buoyancy block 603 pushes the liquid level switch 604 to squeeze the inner wall of the aeration main pipe 101 under the action of buoyancy. At this time, the solenoid valve at the bottom of the liquid seal drain pipe 601 can be opened to discharge the condensed water. As the condensed water is discharged, the liquid level inside the liquid seal drain pipe 601 drops, and the buoyancy block 603 drives the liquid level switch 604 to move downward and is no longer squeezed, so that the solenoid valve at the bottom of the liquid seal drain pipe 601 can be controlled to close, thereby stopping the discharge and ensuring that the condensed water level is normal and there is no air pressure leakage. The flange at the end 1 is used to connect the pipe with bolts and then connect to the blower. As the air pressure is supplied, a row of rubber aeration membranes 202 will be expanded by the air pressure and aerated through the micropores. At this time, the area of ​​the rubber aeration membrane 202 expands normally, driving the guide column 203 to move upward. When the amount of upward movement of the guide column 203 is normal, that is, when the expansion deformation of the rubber aeration membrane 202 is normal, the lifting shaft 302 can be pulled to drive the relaxation switch 303 to fit and squeeze the end of the guide column 203 in conjunction with the tension spring on the lifting shaft 302. When the area of ​​the rubber aeration membrane 202 increases excessively and the bulging deformation is excessive, the tension spring on the lifting shaft 302 is completely contracted. At this time, the relaxation switch 303 is no longer squeezed by the guide column 203, and the solenoid valve on the branch pipe 103 can be controlled to close, thereby stopping the air supply and prompting the staff to replace and repair it in time.

[0037] When the aeration device 2 needs to be replaced, the sewage in the aeration tank needs to be drained. At this time, there will be no sewage in the aeration tank to provide buoyancy for the float 405. At this time, the buoyancy switch 402 will not be pressurized, and the electromagnet 503 can be controlled to cut off the power. At this time, under the pull of the reset spring 504, the raised teeth on the limit sleeve 502 and the limit ring 204 are separated, and the limit ring 204 is no longer limited. At this time, the aeration mounting shell 201 can be rotated normally for disassembly. Similarly, once there is sewage liquid level in the aeration tank, the sewage buoyancy control float 405 rises, driving the buoyancy column 404 to move up and squeeze the buoyancy switch 402, compressing the spring 403. At this time, the buoyancy switch 402 can control the electromagnet 503 to magnetically attract the limit ring 204, and the circle of raised teeth on the top of the limit sleeve 502 is used to insert into the grooves on the limit ring 204 for limitation.

[0038] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0039] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A livestock manure treatment device, comprising a manure water oxygenation unit (1), wherein an aeration device (2) is installed on the manure water oxygenation unit (1), characterized in that: The aeration device (2) is used to aerate fecal wastewater; a slack detection component (3) is installed on the fecal wastewater oxygenation part (1); the slack detection component (3) is used to control air shutoff; A row of mounting and disassembly control members (4) are installed at the bottom of the manure and water oxygenation section (1); a row of locking control members (5) are installed on the manure and water oxygenation section (1); the mounting and disassembly control members (4) are used to prevent sewage backflow; A liquid-sealed condensation discharge member (6) is installed on the manure water oxygenation portion (1); the liquid-sealed condensation discharge member (6) is used to prevent pressure release; The manure oxygenation part (1) comprises: an aeration main pipe (101) and a support frame (102); three support frames (102) are fixedly mounted on the aeration main pipe (101), and the three support frames (102) are respectively provided with two through holes; a flange is provided on the aeration main pipe (101); and the heights of the three support frames (102) decrease gradually.

2. The livestock excrement treatment equipment according to claim 1, characterized in that: The manure oxygenation part (1) further comprises: a branch pipe (103); a row of branch pipes (103) is fixedly mounted on the aeration main pipe (101), and each row of branch pipes (103) is provided with a solenoid valve; a flange at the end of the aeration main pipe (101) is used for connecting to a blower through a pipeline; and each row of branch pipes (103) is provided with an internal thread.

3. The livestock excrement processing equipment according to claim 2, characterized in that: The aeration device (2) comprises: an aeration installation shell (201), a rubber aeration membrane (202), a guide column (203) and a limiting ring (204); the aeration installation shell (201) is provided in a row, and the structures of the aeration installation shells (201) in the row are the same; a threaded barrel is provided at the bottom of the aeration installation shell (201); the threaded barrel at the bottom of the aeration installation shell (201) is threadedly connected to the branch pipe (103); a rubber aeration membrane (202) is fixedly installed on the aeration installation shell (201); the rubber aeration membrane (202) ) is provided with aeration micropores; a guide column (203) is fixedly installed at the bottom of the rubber aeration membrane (202), and the end of the guide column (203) is an arc-shaped structure; the guide column (203) passes through the aeration installation shell (201); a limiting ring (204) is fixedly installed at the bottom of the aeration installation shell (201), and a circle of grooves is provided on the limiting ring (204); the aeration installation shell (201) is connected to the aeration main pipe (101); when the three support frames (102) are installed on the ground, the three rubber aeration membranes (202) are horizontal.

4. The livestock excrement processing equipment according to claim 3, characterized in that: The slack detection member (3) comprises: a detection mounting frame (301), a lifting shaft (302) and a slack switch (303); the detection mounting frame (301) is provided in a row, and the structures of the detection mounting frames (301) in the row are the same; the detection mounting frame (301) is provided with two through slots; the detection mounting frame (301) is fixedly installed inside the branch pipe (103); the lifting shaft (302) is slidably installed on the detection mounting frame (301); a tension spring is sleeved on the lifting shaft (302), and the tension spring on the lifting shaft (302) is connected between the detection mounting frame (301) and the lifting shaft (302); the slack switch (303) is fixedly installed on the top of the lifting shaft (302); the guide column (203) presses and fits the end of the slack switch (303); the slack switch (303) is electrically connected to the solenoid valve provided on the branch pipe (103).

5. The livestock excrement processing equipment according to claim 3, characterized in that: The installation and disassembly control component (4) comprises: a buoyancy installation cylinder (401), a buoyancy switch (402) and a spring (403); the buoyancy installation cylinder (401) is fixedly installed at the bottom of the aeration main pipe (101); a hexagonal hole is provided on the buoyancy installation cylinder (401); the buoyancy switch (402) is fixedly installed inside the buoyancy installation cylinder (401); the spring (403) is sleeved inside the buoyancy installation cylinder (401), and the spring (403) is located outside the buoyancy switch (402).

6. The livestock excrement processing equipment according to claim 5, characterized in that: The installation and disassembly control component (4) further comprises: a buoyancy column (404) and a floating block (405), wherein the buoyancy column (404) is slidably plugged into the buoyancy installation cylinder (401); the top of the buoyancy column (404) is connected to the end of the spring (403); the end of the buoyancy switch (402) is pressed and fitted to the buoyancy column (404); the bottom of the buoyancy column (404) is fixedly mounted with a floating block (405); and the thickness of the three floating blocks (405) decreases in sequence.

7. The livestock excrement processing equipment according to claim 5, characterized in that: The locking control member (5) comprises: a limiting guide cylinder (501) and a limiting sleeve (502); the limiting guide cylinder (501) is fixedly sleeved on the branch pipe (103); a circle of raised strips is provided on the limiting guide cylinder (501); the limiting sleeve (502) is sleeved on the limiting guide cylinder (501), and the limiting sleeve (502) slides on a circle of raised teeth on the limiting guide cylinder (501); a circle of raised strips is provided on the top of the limiting sleeve (502), and the circle of raised teeth on the top of the limiting sleeve (502) are respectively used to insert the limiting ring (204).

8. The livestock excrement processing equipment according to claim 7, characterized in that: The locking control member (5) further comprises: an electromagnet (503) and a reset spring (504); the buoyancy switch (402) is electrically connected to the electromagnet (503); the electromagnet (503) is sleeved inside the limiting guide cylinder (501); the electromagnet (503) is used to magnetically attract the limiting ring (204); the limiting guide cylinder (501) is sleeved with a reset spring (504), and the reset spring (504) is connected between the limiting guide cylinder (501) and the limiting sleeve (502).

9. The livestock excrement processing equipment according to claim 1, characterized in that: The liquid-sealed condensation discharge member (6) comprises: a liquid-sealed drain pipe (601) and a water trough (602); the liquid-sealed drain pipe (601) is fixedly mounted on the end of the aeration main pipe (101); a water trough (602) is provided on the liquid-sealed drain pipe (601); a solenoid valve is provided at the bottom of the liquid-sealed drain pipe (601); the bottom of the liquid-sealed drain pipe (601) is a sloped structure; and the water trough (602) is used to circulate condensed water in the aeration main pipe (101).

10. The livestock excrement processing equipment according to claim 9, characterized in that: The liquid-sealed condensation drain member (6) comprises: a buoyancy block (603) and a liquid level switch (604); the buoyancy block (603) is located inside the liquid-sealed drain pipe (601); a gap is provided between the buoyancy block (603) and the liquid-sealed drain pipe (601); a liquid level switch (604) is fixedly mounted on the top of the buoyancy block (603), and the liquid level switch (604) is electrically connected to a solenoid valve provided at the bottom of the liquid-sealed drain pipe (601); and the end of the liquid level switch (604) is used to squeeze the inner wall of the aeration main pipe (101).