Safe disinfection channel device for poultry farm mycoplasmosis organisms
By designing a poultry farm disinfection channel device that includes an infusion manifold, atomizing nozzles, and infrared baking lamps, the problems of uneven disinfection and device corrosion in existing technologies have been solved, achieving all-round disinfection and drying, and improving the disinfection effect and device lifespan.
Patent Information
- Application Number
- CN202511102650.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-07
- Publication Date
- 2025-11-07
AI Technical Summary
Existing poultry farm disinfection methods are labor-intensive, inefficient, uneven, and have blind spots. Furthermore, traditional equipment is prone to corrosion and bacterial growth, making it difficult to completely eliminate mycoplasma viruses.
Design a disinfection channel device that includes a main infusion line, branch infusion lines, spherical atomizing nozzles, a storage tank, a booster pump, a blower, and an infrared baking lamp. The device achieves all-round disinfection and drying by atomizing and spraying peracetic acid disinfectant, combined with ventilation and high-temperature heating.
It achieves comprehensive and efficient disinfection and sterilization of poultry bodies and passageways, reduces disinfectant residue, keeps the device dry, improves disinfection effect, and extends service life.
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Figure CN120899428A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of poultry farm disinfection equipment, and particularly relates to a safe disinfection channel device for mycoplasma disease of poultry farm. BACKGROUND
[0002] In the poultry breeding industry, mycoplasma disease is one of common infectious diseases threatening the health of poultry, and the pathogen thereof can be transmitted through air, contact and other ways. Once the disease breaks out in poultry, it will cause the growth retardation of poultry, the decline of egg production, and even large-scale death in severe cases, thereby bringing huge economic losses to breeding enterprises. Therefore, effective disinfection treatment of poultry entering the poultry house is a key link for preventing and controlling the spread of mycoplasma disease.
[0003] In the prior art, the common disinfection methods of poultry farms are manual spraying of disinfectant or use of simple disinfection channels. The manual spraying method has high labor intensity, low efficiency, and limited disinfection range, and it is difficult to ensure the comprehensive coverage of the body surface of poultry and the surrounding environment, so that disinfection dead angles are prone to occur, the mycoplasma virus remains, the simple disinfection channel can realize a certain degree of automation, but the disinfection medium is not uniformly diffused, the disinfection effect is poor, and it is difficult to completely kill the stubborn mycoplasma virus. In addition, the traditional disinfection device often ignores the treatment of the inside of the channel and the related pipeline after disinfection is completed, the residual disinfectant can corrode the pipeline, affect the service life of the device, and the humid environment inside the channel is easy to breed new bacteria, which lays hidden dangers for the retransmission of mycoplasma disease.
[0004] Therefore, the present application provides a safe disinfection channel device for mycoplasma disease of poultry farm to solve the above problems. SUMMARY
[0005] The present application aims to provide a safe disinfection channel device for mycoplasma disease of poultry farm, which can comprehensively and efficiently disinfect and sterilize the body surface of poultry, and after the disinfection of poultry is completed, the inside of the disinfection channel can be fully ventilated, heated and disinfected, the foul gas generated after disinfection can be discharged in time, and the inside of the liquid supply main pipe, the plurality of liquid supply branch pipes, the plurality of spherical atomizing nozzles and the inside of the disinfection channel can be kept dry.
[0006] The above technical purpose of the application is achieved by the following technical scheme: a biological safety disinfection channel device for poultry mycoplasma disease, comprising a disinfection channel fixedly installed in a poultry house, wherein a disinfection mechanism for sterilizing poultry mycoplasmal virus is arranged on the disinfection channel, the disinfection mechanism comprises a liquid supply main pipe, a plurality of liquid supply branch pipes, a plurality of spherical atomizing nozzles, a liquid storage tank, a booster pump, a liquid suction pipe, a liquid discharge pipe, a solenoid valve one and a plurality of flow expansion assemblies, the liquid supply main pipe is hung and fixed on the top inner wall of the disinfection channel, the plurality of liquid supply branch pipes are fixedly connected to the liquid supply main pipe and symmetrically distributed in two rows, the plurality of spherical atomizing nozzles are fixedly installed on the plurality of liquid supply branch pipes and uniformly distributed, the liquid storage tank is fixedly installed on the left outer wall of the disinfection channel, the liquid storage tank is used for containing peracetic acid disinfectant, the booster pump is fixedly installed on the top of the liquid storage tank, one end of the liquid suction pipe is fixedly connected to the suction end of the booster pump, the other end of the liquid suction pipe extends into the liquid storage tank, one end of the liquid discharge pipe is fixedly connected to the discharge end of the booster pump, the other end of the liquid discharge pipe extends into the disinfection channel and is fixedly communicated with the liquid supply main pipe, the solenoid valve one is fixedly installed on the liquid discharge pipe, and the plurality of flow expansion assemblies are arranged on the liquid supply main pipe and equally spaced.
[0007] Further, the outer pipe wall of the liquid supply main pipe is fixedly sleeved with a hanger one and a hanger two, and the top ends of the hanger one and the hanger two are fixedly connected to the top inner wall of the disinfection channel.
[0008] Further, the flow expansion assembly comprises a vertical shaft, a plurality of push plates and a fan blade, the vertical shaft is rotatably installed in the liquid supply main pipe, the plurality of push plates are fixedly installed on the vertical shaft and equally spaced annularly distributed, and the bottom end of the vertical shaft extends out of the liquid supply main pipe.
[0009] Further, the bottom of the liquid supply main pipe is provided with a through hole, a sealing bearing is fixedly sleeved on the vertical shaft, and the outer ring of the sealing bearing is fixedly connected to the inner wall of the through hole.
[0010] Further, the outer pipe wall of the liquid supply branch pipe is fixedly sleeved with a pipe clamp, and one end of the pipe clamp is fixedly connected to the inner wall of one side of the disinfection channel.
[0011] Further, the top of the liquid storage tank is provided with a liquid adding hole, an end cover is threadedly installed in the liquid adding hole, and an observation window is fixedly installed on the front side wall of the liquid storage tank.
[0012] Further, a blower is fixedly installed on the right outer wall of the disinfection channel, a suction pipe is fixedly connected to the suction end of the blower, an air outlet pipe is fixedly connected to the discharge end of the blower, a solenoid valve two is fixedly installed on the air outlet pipe, and one end of the air outlet pipe away from the blower extends into the disinfection channel and is fixedly communicated with the liquid supply main pipe.
[0013] The further setting of the present application is that the right side of the disinfection channel is fixedly communicated with a dirty gas exhaust pipe, and an electromagnetic valve three is fixedly installed on the dirty gas exhaust pipe.
[0014] The further setting of the present application is that the front side wall of the disinfection channel is provided with an inlet, the rear side wall of the disinfection channel is provided with an outlet, the front side outer wall and the rear side outer wall of the disinfection channel are both fixedly installed with a base, the two bases are both fixedly installed with a hydraulic cylinder, the output shaft ends of the two hydraulic cylinders are both fixedly installed with a connecting plate, the two connecting plates are both fixedly installed with a door, the two doors are respectively slidably attached to the front side outer wall and the rear side outer wall of the disinfection channel, the vertical sectional dimension of the inlet is the same as that of the outlet, the vertical sectional dimension of the door is larger than that of the inlet, and the two side inner walls of the disinfection channel are both fixedly installed with a plurality of infrared baking lamps which are uniformly distributed.
[0015] The further setting of the present application is that the bottom two side outer walls of the disinfection channel are both fixedly installed with a plurality of assembly ears which are uniformly arranged, and a plurality of ground nails are movably inserted into the assembly ears.
[0016] The present application includes at least one of the following beneficial technical effects:
[0017] 1. The disinfection mechanism can be used to spray misty peracetic acid disinfectant into the disinfection channel uniformly, and poultry can enter and exit the disinfection channel through the inlet and outlet, so that the mycoplasma disease on the surface of the poultry can be disinfected and sterilized efficiently.
[0018] 2. The cooperation of the base, the hydraulic cylinder, the connecting plate and the door can effectively shield the inlet and outlet, so that dust and sundries cannot enter the disinfection channel.
[0019] 3. The cooperation of the air blower, the air suction pipe, the air outlet pipe, the electromagnetic valve two, the dirty gas exhaust pipe and the electromagnetic valve three can ventilate the disinfection channel after the disinfection of the poultry, so that the dirty gas generated after the disinfection can be discharged in time, the harmful gas in the disinfection channel can be reduced, and the disinfectant remaining in the liquid supply main pipe, the plurality of liquid supply branch pipes and the plurality of spherical atomizing nozzles can be blown out by the airflow, so that the liquid supply main pipe, the plurality of liquid supply branch pipes and the plurality of spherical atomizing nozzles can be kept dry.
[0020] 4. The plurality of infrared baking lamps can be used to heat and disinfect the disinfection channel after the disinfection of the poultry, so that the bacteria protein can be denatured by high temperature, the disinfection effect can be improved, and the disinfection channel can be kept dry for the next use. BRIEF DESCRIPTION OF DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative effort based on these drawings.
[0022] Figure 1 is a front view of the structural schematic diagram of the embodiment.
[0023] Figure 2 is a bottom view of the structural schematic diagram of the embodiment.
[0024] Figure 3 is a front view of the sectional structural schematic diagram of the embodiment.
[0025] Figure 4 is a partial structural schematic diagram of the first perspective of the embodiment.
[0026] Figure 5 is a partial structural schematic diagram of the second perspective of the embodiment.
[0027] Figure 6 is a structural schematic diagram of the flow expansion assembly in the embodiment.
[0028] In the figure, 1 is a disinfection channel; 2 is a total infusion pipe; 3 is a branch infusion pipe; 4 is a spherical atomizing nozzle; 5 is a liquid storage tank; 6 is a booster pump; 7 is a liquid suction pipe; 8 is a liquid discharge pipe; 9 is an electromagnetic valve one; 10 is a hanger one; 11 is a flow expansion assembly; 111 is a vertical shaft; 112 is a push plate; 113 is a fan blade; 114 is a sealing bearing; 12 is a hanger two; 13 is a pipe clamp; 14 is an end cover; 15 is an observation window; 16 is a blower; 17 is an air suction pipe; 18 is an air outlet pipe; 19 is an electromagnetic valve two; 20 is a dirty air discharge pipe; 21 is an electromagnetic valve three; 22 is an inlet; 23 is an outlet; 24 is a pad seat; 25 is a hydraulic cylinder; 26 is a connecting plate; 27 is a door; 28 is an infrared baking lamp; 29 is an assembly lug; and 30 is a ground nail. DETAILED DESCRIPTION
[0029] The technical solutions of the present application will be described clearly and completely in combination with specific embodiments. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present application.
[0030] Reference Figures 1-6The application provides a safe disinfection channel device for poultry mycoplasma disease, which comprises a disinfection channel 1 fixedly installed in a poultry house. The disinfection channel 1 is made of transparent tempered glass. The disinfection channel 1 made of transparent tempered glass not only ensures the overall structure to be firm and durable, but also facilitates the staff to observe the internal disinfection condition. The disinfection channel 1 is provided with a disinfection mechanism for sterilizing poultry mycoplasma virus. The disinfection mechanism comprises a liquid supply main pipe 2, a plurality of liquid supply branch pipes 3, a plurality of spherical atomizing nozzles 4, a liquid storage tank 5, a booster pump 6, a liquid suction pipe 7, a liquid discharge pipe 8, an electromagnetic valve one 9 and a plurality of flow expansion assemblies 11. The liquid supply main pipe 2 is suspended and fixed to the top inner wall of the disinfection channel 1. The plurality of liquid supply branch pipes 3 are fixedly connected to the liquid supply main pipe 2 and symmetrically distributed in two rows. The plurality of spherical atomizing nozzles 4 are fixedly installed on the plurality of liquid supply branch pipes 3 and uniformly distributed. The liquid storage tank 5 is fixedly installed on the left outer wall of the disinfection channel 1. The liquid storage tank 5 is used for containing peracetic acid disinfectant. The concentration of the peracetic acid disinfectant is 0.1%-0.5%. The booster pump 6 is fixedly installed on the top of the liquid storage tank 5. One end of the liquid suction pipe 7 is fixedly connected to the suction end of the booster pump 6. The other end of the liquid suction pipe 7 extends into the liquid storage tank 5. One end of the liquid discharge pipe 8 is fixedly connected to the discharge end of the booster pump 6. The other end of the liquid discharge pipe 8 extends into the disinfection channel 1 and is fixedly communicated with the liquid supply main pipe 2. The electromagnetic valve one 9 is fixedly installed on the liquid discharge pipe 8. The plurality of flow expansion assemblies 11 are arranged on the liquid supply main pipe 2 and equally spaced. The disinfectant used is the peracetic acid disinfectant with the concentration of 0.1%-0.5%. The disinfectant is sprayed in the disinfection channel 1 after being atomized by the plurality of spherical atomizing nozzles 4. The poultry body surface and the inside of the disinfection channel 1 can be fully contacted with the disinfectant. The mycoplasma virus can be accurately killed.
[0031] In the embodiment, the outer pipe wall of the liquid supply main pipe 2 is fixedly sleeved with a hanger one 10 and a hanger two 12. The top ends of the hanger one 10 and the hanger two 12 are fixedly connected to the top inner wall of the disinfection channel 1. The design of the hanger one 10 and the hanger two 12 ensures the stability of the liquid supply main pipe 2 during use, so as to avoid the influence of shaking on the spraying effect.
[0032] In the embodiment, the flow expansion assembly 11 is used for increasing the diffusion range of the fog-shaped peracetic acid disinfectant in the disinfection channel 1. The flow expansion assembly 11 comprises a vertical shaft 111, a plurality of push plates 112 and a fan blade 113. The vertical shaft 111 is rotatably installed in the liquid supply main pipe 2. The plurality of push plates 112 are fixedly installed on the vertical shaft 111 and equally spaced annularly. The bottom end of the vertical shaft 111 extends out of the liquid supply main pipe 2. The fan blade 113 is fixedly installed on the bottom end of the vertical shaft 111. The liquid flowing in the liquid supply main pipe 2 drives the push plate 112 and the vertical shaft 111 to rotate, so as to make the fan blade 113 rotate. The diffusion range of the fog-shaped peracetic acid disinfectant is increased. The fog-shaped peracetic acid disinfectant is more uniformly distributed in the disinfection channel 1. The disinfection coverage is further improved.
[0033] In the embodiment, the bottom of the infusion main pipe 2 is provided with a through hole, a sealing bearing 114 is fixedly sleeved on the vertical shaft 111, the outer ring of the sealing bearing 114 is fixedly connected with the inner wall of the through hole, and the design of the sealing bearing 114 can ensure the smoothness of the rotation of the vertical shaft 111 and prevent peracetic acid disinfectant from leaking out from the gap between the vertical shaft 111 and the through hole.
[0034] In the embodiment, the outer pipe wall of the infusion branch pipe 3 is fixedly sleeved with a pipe clamp 13, one end of the pipe clamp 13 is fixedly connected with the inner wall of one side of the disinfection channel 1, and the design of the pipe clamp 13 ensures the stability of the infusion branch pipe during use and avoids affecting the spraying effect due to shaking.
[0035] In the embodiment, the top of the liquid storage tank 5 is provided with a liquid adding hole for adding peracetic acid disinfectant into the liquid storage tank 5, the end cover 14 is threadedly installed in the liquid adding hole for sealing the liquid adding hole, and the observation window 15 is fixedly installed on the front side wall of the liquid storage tank 5 for observing the liquid level in the liquid storage tank 5.
[0036] In the embodiment, the air blower 16 is fixedly installed on the right side outer wall of the disinfection channel 1, the air suction pipe 17 is fixedly connected with the suction end of the air blower 16, the air outlet pipe 18 is fixedly connected with the discharge end of the air blower 16, the electromagnetic valve two 19 is fixedly installed on the air outlet pipe 18, the air outlet pipe 18 extends into the disinfection channel 1 from the end away from the air blower 16 and is fixedly communicated with the infusion main pipe 2, the dirty gas discharge pipe 20 is fixedly communicated with the right side of the disinfection channel 1, the electromagnetic valve three 21 is fixedly installed on the dirty gas discharge pipe 20, after the disinfection of poultry is completed, the disinfection channel 1 can be ventilated and the dirty gas generated after disinfection can be discharged in time, which greatly reduces the residue of harmful gas in the disinfection channel 1, the end of the air suction pipe 17 away from the air blower 16 and the end of the dirty gas discharge pipe 20 away from the disinfection channel 1 both extend outside the poultry house, and the dust filter net is fixedly installed on the end of the air suction pipe 17 away from the air blower 16.
[0037] In this embodiment, the front side wall of the disinfection channel 1 is provided with an inlet 22, and the rear side wall of the disinfection channel 1 is provided with an outlet 23. The inlet 22 is designed to facilitate the poultry to enter the disinfection channel 1, and the outlet 23 is designed to facilitate the poultry to exit the disinfection channel 1. The front side outer wall and the rear side outer wall of the disinfection channel 1 are both fixedly installed with a seat 24. The two seats 24 are both fixedly installed with a hydraulic cylinder 25. The output shaft end of the two hydraulic cylinders 25 is fixedly installed with a connecting plate 26. The two connecting plates 26 are both fixedly installed with a door 27. The two doors 27 are respectively in sliding fit with the front side outer wall and the rear side outer wall of the disinfection channel 1. The vertical sectional dimension of the inlet 22 and the outlet 23 is the same, and the vertical sectional dimension of the door 27 is greater than that of the inlet 22. The door 27 can be controlled to vertically ascend by the hydraulic cylinder 25. When the poultry is disinfected, the two doors 27 are controlled to ascend, so that the inlet 22 and the outlet 23 are opened. When the disinfection channel 1 is not used, the two doors 27 can effectively shield the inlet 22 and the outlet 23, respectively, to avoid dust and sundries from entering the disinfection channel 1. The two side inner walls of the disinfection channel 1 are both fixedly installed with a plurality of uniformly distributed infrared baking lamps 28. The plurality of infrared baking lamps 28 are designed to comprehensively heat and disinfect the inside of the disinfection channel 1 after the disinfection of the poultry is completed by a physical heating disinfection method. Through high temperature, the bacterial protein is denatured, and the disinfection effect is greatly improved, so as to facilitate the next use of the disinfection channel 1.
[0038] In this embodiment, a plurality of uniformly arranged assembly ears 29 are fixedly installed on the bottom two side outer walls of the disinfection channel 1. A ground nail 30 is movably inserted into each of the plurality of assembly ears 29. The assembly ears 29 and the ground nails 30 are designed to ensure the stability of the disinfection channel 1 installed and fixed on the ground of the poultry house, prevent displacement or tilting during use, and improve the safety of the overall structure.
[0039] In this embodiment, the line connection mode and the control mode of the booster pump 6, the electromagnetic valve one 9, the air blower 16, the electromagnetic valve two 19, the electromagnetic valve three 21, the hydraulic cylinder 25, and the infrared baking lamp 28 belong to mature technologies in the field, and therefore will not be described herein.
[0040] Through the above structure, the use principle of the mycoplasma disease biological safety disinfection channel device provided by the present application is as follows:
[0041] When the poultry needs to be disinfected, the corresponding door 27 is driven to rise by the two hydraulic cylinders 25, the inlet 22 and the outlet 23 are opened, the poultry enters the disinfection channel 1 from the inlet 22, and the poultry can enter the disinfection channel 1 from the inlet 22 by artificial driving.
[0042] During the poultry continuously entering the disinfection channel 1, by controlling the booster pump 6 to operate and opening the electromagnetic valve one 9, ensuring that the electromagnetic valve two 19 and the electromagnetic valve three 21 are in the closed state, at this time, 0.1%-0.5% of peracetic acid disinfectant is extracted from the liquid storage tank 5 through the liquid suction pipe 7, and is delivered to the liquid delivery main pipe 2 through the liquid discharge pipe 8, when the disinfectant flows in the liquid delivery main pipe 2, it can push the push plate 112 in the flow expansion assembly 11 to rotate, and in turn drive the vertical shaft 111 and the fan blade 113 at the bottom to rotate, at the same time, the disinfectant is branched by the plurality of liquid delivery branch pipes 3, and is atomized and sprayed out by the plurality of spherical atomizing nozzles 4, the rotation of the fan blade 113 further expands the diffusion range of the mist disinfectant, ensuring that it uniformly covers the poultry body surface and every corner inside the disinfection channel 1, and through chemical action, the structure of mycoplasma virus carried on the poultry body surface is destroyed, realizing the overall and efficient mycoplasma disinfection and sterilization effect on the poultry body surface, as the poultry continuously enter the disinfection channel, the poultry after disinfection and sterilization will come out from the outlet 23;
[0043] After the disinfection work is completed, the electromagnetic valve one 9 is closed, the booster pump 6 stops working, then the two hydraulic cylinders 25 are controlled to extend and operate, that is, the connecting plate 26 and the blocking door 27 are vertically lowered, that is, the inlet 22 and the outlet 23 are closed, then the electromagnetic valve two 19 and the electromagnetic valve three 21 are opened, and the air blower 16 is controlled to operate, the external fresh air is sucked in through the air suction pipe 17, and is sent into the liquid delivery main pipe 2 through the air outlet pipe 18, and is discharged through the spherical atomizing nozzles 4 on the plurality of liquid delivery branch pipes 3, that is, the fresh air can be diffused to the entire disinfection channel 1, at the same time, the airflow can blow out the disinfectant remaining in the liquid delivery main pipe 2, the plurality of liquid delivery branch pipes 3 and the plurality of spherical atomizing nozzles 4, so that the inside of the liquid delivery main pipe 2, the plurality of liquid delivery branch pipes 3 and the plurality of spherical atomizing nozzles 4 remains dry, the residual disinfectant gas and dirty gas in the disinfection channel 1 are discharged through the dirty gas discharge pipe 20, that is, the ventilation of the inside of the disinfection channel 1 is realized, and the influence of harmful gas on the subsequent entering poultry is reduced;
[0044] During the ventilation process of the inside of the disinfection channel 1, the plurality of infrared baking lamps 28 are opened, the temperature in the disinfection channel 1 is increased through physical heating, the high temperature denatures the protein of the residual bacteria and inactivates the enzyme, at the same time, the inside of the disinfection channel 1 is heated and dried, ensuring that the inside of the disinfection channel 1 is sterile, so as to facilitate the next use, after the ventilation and sterilization of the inside of the disinfection channel 1 are completed, the electromagnetic valve two 19 and the electromagnetic valve three 21 are closed, and the plurality of infrared baking lamps 28 are closed, and the air blower 16 stops operating.
[0045] The above describes in detail the biological safety disinfection channel device for poultry mycoplasma disease provided by the application. The principles and implementation manners of the application are described by using specific examples, and the above examples are only used to help understand the method of the application and its core idea. It should be pointed out that, for ordinary skilled persons in the technical field, some improvements and modifications can be made to the application without departing from the principles of the application, and these improvements and modifications also fall within the protection scope of the claims of the application.
Claims
1. A biosafe disinfection tunnel device for Mycoplasma gallisepticum disease, characterized in that, The utility model provides a disinfection channel (1) is fixedly installed in poultry house, disinfection channel (1) is provided with disinfection mechanism for poultry mycoplasma virus sterilization treatment, disinfection mechanism includes infusion main pipe (2), a plurality of infusion branch pipe (3), a plurality of spherical atomizing nozzle (4), liquid storage tank (5), booster pump (6), liquid suction pipe (7), liquid discharge pipe (8), electromagnetic valve one (9) and multiple groups of flow spreading assembly (11), infusion main pipe (2) is suspended and is fixed on the top inner wall of disinfection channel (1), a plurality of infusion branch pipe (3) are fixedly connected on infusion main pipe (2) and are symmetrically distributed in two rows, a plurality of spherical atomizing nozzle (4) are fixedly installed on a plurality of infusion branch pipe (3) and are evenly distributed, liquid storage tank (5) is fixedly installed on the left outer wall of disinfection channel (1), liquid storage tank (5) is used for containing peracetic acid disinfectant, booster pump (6) is fixedly installed on the top of liquid storage tank (5), one end of liquid suction pipe (7) is fixedly connected with the suction end of booster pump (6), the other end of liquid suction pipe (7) extends into liquid storage tank (5), one end of liquid discharge pipe (8) is fixedly connected with the discharge end of booster pump (6), the other end of liquid discharge pipe (8) extends into disinfection channel (1) and is fixedly communicated with infusion main pipe (2), electromagnetic valve one (9) is fixedly installed on liquid discharge pipe (8), multiple groups of flow spreading assembly (11) are arranged on infusion main pipe (2) and are equally spaced.
2. A biosafe disinfection tunnel device for Mycoplasma gallisepticum disease according to claim 1, characterized in that: The outer tube wall of the infusion main pipe (2) is fixedly sleeved with a hanger one (10) and a hanger two (12), the top ends of the hanger one (10) and the hanger two (12) are fixedly connected with the top inner wall of the disinfection channel (1).
3. A biosafe disinfection tunnel device for Mycoplasma gallisepticum disease according to claim 1, characterized in that: The flow spreading assembly (11) includes a vertical shaft (111), a plurality of push plates (112), and a fan blade (113). The vertical shaft (111) is rotatably installed in the infusion main pipe (2). The plurality of push plates (112) are fixedly arranged on the vertical shaft (111) in an equally spaced ring shape. The bottom end of the vertical shaft (111) extends out of the infusion main pipe (2). The fan blade (113) is fixedly installed on the bottom end of the vertical shaft (111).
4. A biosafe disinfection tunnel device for Mycoplasma gallisepticum according to claim 3, characterized in that: A through hole is formed in the bottom of the infusion main pipe (2). A sealing bearing (114) is fixedly sleeved on the vertical shaft (111). The outer ring of the sealing bearing (114) is fixedly connected with the inner wall of the through hole.
5. A bio-safe disinfection tunnel apparatus for Mycoplasma gallisepticum according to claim 1, wherein: A pipe clamp (13) is fixedly sleeved on the outer tube wall of the infusion branch pipe (3). One end of the pipe clamp (13) is fixedly connected with the inner wall of one side of the disinfection channel (1).
6. A bio-safe disinfection tunnel apparatus for Mycoplasma gallisepticum according to claim 1, wherein: A liquid adding hole is formed in the top of the liquid storage tank (5). An end cover (14) is threadedly installed in the liquid adding hole. An observation window (15) is fixedly installed on the front side wall of the liquid storage tank (5).
7. A bio-safe disinfection tunnel apparatus for Mycoplasma gallisepticum according to claim 1, wherein: The right side outer wall of the disinfection channel (1) is fixedly installed with a air blower (16), the suction end of the air blower (16) is fixedly connected with a air suction pipe (17), the discharge end of the air blower (16) is fixedly connected with a air discharge pipe (18), the air discharge pipe (18) is fixedly installed with a electromagnetic valve two (19), the end of the air discharge pipe (18) away from the air blower (16) extends into the disinfection channel (1) and is fixedly communicated with the infusion main pipe (2).
8. A biosafe disinfection tunnel device for Mycoplasma gallisepticum according to claim 7, characterized in that: The right side of the disinfection channel (1) is fixedly communicated with a dirty gas discharge pipe (20), the dirty gas discharge pipe (20) is fixedly installed with a electromagnetic valve three (21).
9. A bio-safe disinfection tunnel apparatus for Mycoplasma gallisepticum according to claim 1, wherein: The front side wall of the disinfection channel (1) is provided with an inlet (22), the rear side wall of the disinfection channel (1) is provided with an outlet (23), the front side outer wall and the rear side outer wall of the disinfection channel (1) are fixedly installed with a pad seat (24), the pad seat (24) is fixedly installed with a hydraulic cylinder (25), the output shaft end of the hydraulic cylinder (25) is fixedly installed with a connecting plate (26), the connecting plate (26) is fixedly installed with a door (27), the door (27) is slidably attached to the front side outer wall and the rear side outer wall of the disinfection channel (1), the vertical section size of the inlet (22) and the outlet (23) is same, the vertical section size of the door (27) is greater than the vertical section size of the inlet (22), the two side inner walls of the disinfection channel (1) are fixedly installed with a plurality of infrared baking lamps (28) which are uniformly distributed.
10. A bio-safe disinfection tunnel apparatus for Mycoplasma gallisepticum according to claim 1, wherein: The bottom two side outer walls of the disinfection channel (1) are fixedly installed with a plurality of assembly ears (29) which are uniformly arranged, the assembly ear (29) is movably inserted with a ground nail (30).