An energy-saving treatment device for deodorizing and drying quail manure sewage

By designing an energy-saving treatment device for quail manure, including a drying drum mechanism, a deodorization treatment mechanism and a swinging shading assembly, the problem of odor residue during the drying process of the manure is solved, and a better environment and health effect is achieved.

CN119594683BActive Publication Date: 2025-05-30如皋市农业机械化技术推广站
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Patent Information

Application Number
CN202510149196.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-11
Publication Date
2025-05-30
Estimated Expiration
2045-02-11

AI Technical Summary

Technical Problem

The odor generated by quail manure during drying will be carried out by heat and water vapor, causing the odor to remain around the equipment, affecting the environment of the farm and the health of the operators.

Method used

An energy-saving treatment device including a drying drum mechanism, a deodorizing treatment mechanism and a swing shading assembly is designed. The drying drum mechanism drys feces through hot air, and the deodorizing treatment mechanism uses the odor suction pipe and the treatment assembly to suck out and filter the odor. The swing blocking assembly uses the pendulum swing blocking top to prevent the feces from falling on the odor suction pipe.

Benefits of technology

It effectively reduces the odor residue during the manure drying process, improves the odor environment around the equipment, promotes the creation of a good environment in the breeding farm and the health of operators.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of fecal sewage treatment, and specifically, to an energy-saving treatment device for deodorizing and drying quail fecal sewage. It includes a placement base, on which a horizontal drying rotary drum mechanism is provided. An opening is formed on one side of the drying rotary drum mechanism. In the present invention, the fecal sewage is rotationally dried through the drying rotary drum mechanism, and the swinging shielding top shields above the odor suction pipe to prevent the falling fecal sewage from affecting the odor suction of the odor suction pipe. When the drying rotary drum mechanism drives the connecting rotating shaft and the extrusion ring to rotate, the extrusion ring forms a cyclic extrusion at the lower end of the pendulum rotating frame, driving the swinging shielding top at the upper end of the pendulum rotating frame to rotate around the positioning shaft. Then, under the action of the reset assembly, the swinging shielding top is reset, so that the entire swinging shielding top swings in a pendulum manner above the odor suction pipe, swinging and shaking off the fecal sewage adhering to the top surface of the swinging shielding top to prevent the fecal sewage from accumulating on the top surface of the swinging shielding top.
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Description

Technical Field

[0001] The present invention relates to the technical field of fecal sewage treatment, and particularly relates to an energy-saving treatment device for deodorizing and drying quail fecal sewage. Background Art

[0002] As a kind of agricultural breeding poultry, quails are generally bred on a large scale in a breeding farm. In order to increase efficiency, the breeding farm generally adopts stacked cage breeding, which can maximize breeding per unit area.

[0003] Since quails are a kind of poultry, they have a fast digestion rate and a large amount of excrement. At the same time, they are bred in large quantities in the breeding farm, resulting in a large amount of fecal sewage being collected in the breeding farm every day. These fecal sewage are generally taken away by the disposal users after being dried and then made into fertilizers and used.

[0004] Due to the space and capital limitations of the breeding farm, most of them will rotate to collect and dry the fecal sewage on the spot of the breeding farm. When drying the fecal sewage, heat and other things are needed to take away the moisture. However, the fecal sewage itself has an odor. During the drying process, since the heat takes away the moisture of the fecal sewage, the heat will stimulate the odor of the fecal sewage. At the same time, the heat and water vapor will also carry the odor out of the equipment. These odors are likely to remain on the spot, affecting the odor environment around the equipment. Summary of the Invention

[0005] The purpose of the present invention is to provide an energy-saving treatment device for deodorizing and drying quail fecal sewage. During the drying process, since the odor of the fecal sewage will be carried out by heat and water vapor, the odor is likely to remain on the spot, affecting the odor environment around the equipment, which is not conducive to creating a good environment in the breeding farm and the physical and mental health of the operating workers.

[0006] To achieve the above purpose, the present invention provides an energy-saving treatment device for deodorizing and drying quail fecal sewage, including a placement base. A horizontal drying rotary drum mechanism is arranged on the placement base. An opening is provided on one side of the drying rotary drum mechanism. A hot air blower is arranged on the side of the drying rotary drum mechanism far away from the opening. A feed inlet is arranged above the side of the drying rotary drum mechanism far away from the opening. A discharge chamber is arranged outside the side of the drying rotary drum mechanism far away from the hot air blower.

[0007] A deodorizing treatment mechanism, which includes an odor suction pipe, a treatment component and a swing shielding component. One end of the odor suction pipe is inserted into the inner side of the drying rotary drum mechanism. The treatment component is arranged in the discharge chamber and is connected to the odor suction pipe, so that the odor sucked out in the odor suction pipe enters the treatment component to complete deodorization and filtration. The swing shielding component is arranged between the drying rotary drum mechanism and the odor suction pipe.

[0008] As a further improvement of the present technical solution, the swing shielding assembly includes a connecting rotating shaft, a pressing ring, a pendulum driving frame, a swing shielding top and a reset assembly. A support frame is provided in the center inside the drying drum mechanism. One end of the connecting rotating shaft is connected to the support frame, and the other end passes through the opening of the drying drum mechanism. The pressing ring is sleeved on the shaft body of the connecting rotating shaft passing through the opening of the drying drum mechanism. The pendulum driving frame is arranged on the odor suction pipe. The swing shielding top surrounds the pipe body of the odor suction pipe inside the drying drum mechanism, and the swing shielding top is connected to the top end of the pendulum driving frame. The pressing ring acts on the frame body part of the pendulum driving frame inside the odor suction pipe. The reset assembly is arranged between the pendulum driving frame and the swing shielding top.

[0009] As a further improvement of the present technical solution, the swing shielding top is an arc top and is arranged directly above the odor suction pipe in a surrounding manner. The top end of the swing shielding top is an inclined surface with a right angle.

[0010] As a further improvement of the present technical solution, the pendulum driving frame includes a positioning shaft and a pendulum rotating frame. The positioning shaft is horizontally and fixedly arranged above the odor suction pipe. The pendulum rotating frame is rotatably installed on the positioning shaft, and the lower end frame body of the pendulum rotating frame passes through the pipe wall of the odor suction pipe. The top end of the pendulum rotating frame is fixedly connected to the swing shielding top, and the lower end of the pendulum rotating frame is located on the rotation path of the pressing ring;

[0011] Wherein, a protrusion is arranged on the outer side of the pressing ring, and the bottom end of the pendulum rotating frame is located on the rotation path of the protrusion on the outer side of the pressing ring.

[0012] As a further improvement of the present technical solution, the reset assembly includes a rotating ring and a reset spring. The rotating ring is arranged outside the positioning shaft, and the upper end of the rotating ring is connected to the swing shielding top. The reset spring is arranged at the connection between the rotating ring and the positioning shaft.

[0013] As a further improvement of the present technical solution, a plurality of holes are opened on the odor suction pipe. The treatment assembly includes a lead-out channel, a deodorization filter and an air suction fan. The lead-out channel is arranged at the end of the odor suction pipe, and the lead-out channel is located inside the discharge chamber. The deodorization filter is arranged inside the discharge chamber and is communicated with the lead-out channel. The air suction fan is arranged at one end of the lead-out channel far from the odor suction pipe.

[0014] As a further improvement of the present technical solution, the deodorization filter includes a communication pipe and a deodorization filter box. Two communication pipes are in a group and are respectively arranged at both ends of the deodorization filter box. The communication pipes are respectively connected to the two channel side walls of the lead-out channel. An inner shielding plate is arranged between the two channels of the lead-out channel connected to the communication pipe.

[0015] As a further improvement of the technical solution, the export channel is a bent U-shaped pipe. Two deodorizing filters are grouped together. One is arranged at the bent connection between the export channel and the odor suction pipe, and the other group is arranged between the U-shaped openings of the export channel.

[0016] Compared with the prior art, the present invention provides an energy-saving treatment device for deodorizing and drying quail manure, which has the following beneficial effects:

[0017] In the present invention, the manure is rotationally dried through the drying drum mechanism. The swinging baffle top shields above the odor suction pipe to prevent the falling manure from affecting the odor suction of the odor suction pipe. When the drying drum mechanism drives the connecting rotating shaft and the extrusion ring to rotate, the extrusion ring forms a cyclic extrusion at the lower end of the pendulum rotating frame, driving the swinging baffle top at the upper end of the pendulum rotating frame to rotate around the positioning shaft. Then, through the action of the reset assembly, the swinging baffle top is reset, so that the entire swinging baffle top swings in a pendulum manner above the odor suction pipe, swinging and shaking off the manure adhered to the top surface of the swinging baffle top, preventing the manure from accumulating on the top surface of the swinging baffle top and affecting the shielding effect of the swinging baffle top on the odor suction pipe, and at the same time reducing the residue of the manure. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0019] Figure 2 is a schematic diagram of the overall structure after separation in the discharge chamber of the present invention;

[0020] Figure 3 is a schematic diagram of the structure of the drying drum mechanism after being half-sectioned in the present invention;

[0021] Figure 4 is a schematic diagram of the internal structure distribution after partial half-sectioning of the drying drum mechanism in the present invention;

[0022] Figure 5 is Figure 4 an enlarged view of the structure at A in

[0023] Figure 6 is a schematic diagram of the structure distribution of the treatment assembly in the present invention;

[0024] Figure 7 is a schematic diagram of the structure distribution of the odor suction pipe, treatment assembly, swinging baffle top and pendulum drive frame in the present invention;

[0025] Figure 8 is a cross-sectional view of the overall structure of the present invention.

[0026] In the figure: 1. Installation base; 2. Drying rotary drum mechanism; 3. Hot air blower; 4. Feed inlet; 5. Discharge chamber; 6. Deodorization treatment mechanism; 61. Odor suction pipe; 62. Treatment assembly; 621. Export channel; 622. Deodorization filter; 623. Suction fan; 63. Swing shielding assembly; 631. Connecting rotating shaft; 632. Extrusion ring; 633. Swing shielding top; 7. Pendulum drive frame; 701. Positioning shaft; 702. Pendulum rotating frame; 8. Reset assembly; 801. Rotating ring; 802. Reset spring. Detailed implementation manners

[0027] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0028] Refer to Figure 1-8 , an energy-saving treatment device for deodorizing and drying quail manure. In order to suck out odors in the drying equipment and perform deodorization treatment, and at the same time prevent the manure dropped during the rotary drying process of the drying equipment from affecting the work of the odor suction equipment and ensure the smooth suction of odors, an installation base 1 is provided here. A horizontal drying rotary drum mechanism 2 is provided on the installation base 1. The drying rotary drum mechanism 2 is a cylindrical drying equipment driven by a motor. An opening is provided on one side of the drying rotary drum mechanism 2. A guide plate for guiding the manure to be exported from the opening is provided on the inner side wall of the drying rotary drum mechanism 2. A hot air blower 3 is provided on the side of the drying rotary drum mechanism 2 far from the opening, and hot air for drying can be introduced into the inside of the drying rotary drum mechanism 2 through the hot air blower 3. A feed inlet 4 is provided above the side of the drying rotary drum mechanism 2 far from the opening, and manure and the like can be introduced into the drying rotary drum mechanism 2 through the feed inlet 4. A discharge chamber 5 is provided outside the side of the drying rotary drum mechanism 2 far from the hot air blower 3. A guide inclined platform is provided at the connection between the discharge chamber 5 and the drying rotary drum mechanism 2, so that the dried manure exported from the drying rotary drum mechanism 2 can slide out laterally;

[0029] The deodorization treatment mechanism 6 includes an odor suction pipe 61, a treatment assembly 62 and a swing shielding assembly 63. One end of the odor suction pipe 61 is inserted into the inside of the drying rotary drum mechanism 2. The treatment assembly 62 is arranged in the discharge chamber 5, and the treatment assembly 62 is connected to the odor suction pipe 61, so that the odor sucked out in the odor suction pipe 61 enters the treatment assembly 62 to complete deodorization filtration. The swing shielding assembly 63 is arranged between the drying rotary drum mechanism 2 and the odor suction pipe 61.

[0030] The swing shielding assembly 63 includes a connecting rotating shaft 631, a pressing ring 632, a pendulum drive frame 7, a swing shielding top 633 and a reset assembly 8. A support frame is provided in the center inside the drying drum mechanism 2. One end of the connecting rotating shaft 631 is connected to the support frame, and the other end passes through the opening of the drying drum mechanism 2. The pressing ring 632 is sleeved on the shaft body of the connecting rotating shaft 631 passing through the opening of the drying drum mechanism 2. The pendulum drive frame 7 is arranged on the odor suction pipe 61. The swing shielding top 633 surrounds the pipe body of the odor suction pipe 61 located inside the drying drum mechanism 2, and the swing shielding top 633 is connected to the top end of the pendulum drive frame 7. The pressing ring 632 acts on the frame part of the pendulum drive frame 7 located inside the odor suction pipe 61. The reset assembly 8 is arranged between the pendulum drive frame 7 and the swing shielding top 633, so that when the pressing ring 632 rotates along with the drying drum mechanism 2 and the connecting rotating shaft 631, it can cyclically press the lower end of the pendulum drive frame 7, so that the upper end of the pendulum drive frame 7 can drive the swing shielding top 633 to rotate. At the same time, under the action of the reset assembly 8, the swing shielding top 633 is reset. Through the combined action of the pressing ring 632 and the reset assembly 8, the swing shielding top 633 makes a cyclic pendulum above the odor suction pipe 61.

[0031] As Figure 4 and Figure 5 shown, it is possible to use the swing shielding top 633 to shield the dried manure falling inside the drying drum mechanism 2 above the odor suction pipe 61. At the same time, along with the cyclic pendulum of the swing shielding top 633, the manure on the top surface of the swing shielding top 633 can be shaken off.

[0032] The swing shielding top 633 is an arc top and is arranged around the odor suction pipe 61 directly above. The top end of the swing shielding top 633 is an inclined surface with a right angle. When the manure inside the drying drum mechanism 2 is rotating and drying, since the manure is likely to fall from top to bottom, in order to shield the odor suction pipe 61 below and prevent the manure from falling on the odor suction pipe 61 and affecting the suction of odor by the odor suction pipe 61, at the same time, the right-angle inclined surface at the top end of the swing shielding top 633 can prevent the manure from remaining.

[0033] The pendulum drive frame 7 includes a positioning shaft 701 and a pendulum rotating frame 702. The positioning shaft 701 is horizontally and fixedly arranged above the odor suction pipe 61. The pendulum rotating frame 702 is rotatably installed on the positioning shaft 701, and the lower frame body of the pendulum rotating frame 702 passes through the pipe wall of the odor suction pipe 61. The top end of the pendulum rotating frame 702 is fixedly connected to the swing shielding top 633, and the lower end of the pendulum rotating frame 702 is located on the rotation path of the pressing ring 632;

[0034] Wherein, a protrusion is provided on the outer side of the extrusion ring 632, and the bottom end of the pendulum rotating frame 702 is located on the rotation path of the protrusion on the outer side of the extrusion ring 632. When the extrusion ring 632 rotates, the protruding part squeezes the lower end of the pendulum rotating frame 702 to rotate. As the extrusion ring 632 and the pendulum rotating frame 702 rotate, the protruding part of the extrusion ring 632 will no longer squeeze the pendulum rotating frame 702.

[0035] The reset assembly 8 includes a rotating ring 801 and a reset spring 802. The rotating ring 801 is arranged outside the positioning shaft 701, and the upper end of the rotating ring 801 is connected to the swing shielding top 633. The reset spring 802 is arranged at the connection between the rotating ring 801 and the positioning shaft 701. When the pendulum rotating frame 702 and the swing shielding top 633 rotate synchronously outside the positioning shaft 701, the rotating ring 801 can be driven to rotate outside the positioning shaft 701 and twist the reset spring 802. When the extrusion ring 632 rotates to no longer squeeze the lower end of the swing shielding top 633, the torsion of the reset spring 802 can drive the rotating ring 801 and the swing shielding top 633 to reset.

[0036] In addition, the right-angled inclined surface at the top of the swing shielding top 633 can prevent fecal contamination from remaining. However, since the fecal contamination contains moisture before drying, it is still easy to stick to the top surface of the swing shielding top 633. By driving the pendulum swing of the swing shielding top 633, the fecal contamination sticking to the top surface of the swing shielding top 633 can be swung off, ensuring the shielding ability of the top surface of the swing shielding top 633.

[0037] A plurality of holes are formed in the odor suction pipe 61. The treatment assembly 62 includes an outlet channel 621, a deodorization filter 622, and an air suction fan 623. The outlet channel 621 is arranged at the end of the odor suction pipe 61, and the outlet channel 621 is located inside the discharge chamber 5. The deodorization filter 622 is arranged in the discharge chamber 5, and the deodorization filter 622 communicates with the outlet channel 621. The air suction fan 623 is arranged at one end of the outlet channel 621 far from the odor suction pipe 61. The air suction fan 623 can suck out gas outward through the outlet channel 621 and the odor suction pipe 61, helping the odor suction pipe 61 suck out the odor in the drying drum mechanism 2, and at the same time completing the absorption and filtration of the odor through the deodorization filter 622.

[0038] The deodorization filter 622 includes a communication pipe and a deodorization filter box. Two communication pipes are in a group and are respectively arranged at both ends of the deodorization filter box. The communication pipes are respectively connected to two channel side walls of the outlet channel 621. An inner shielding plate is arranged between the two channels of the outlet channel 621 connected to the communication pipes. As Figure 8 shown, the inner shielding plate shields inside the outlet channel 621, so that the odor passing through the outlet channel 621 can only enter the deodorization filter box through the communication pipe and then return to the outlet channel 621 through the communication pipe on the other side, thereby completing the deodorization and filtration process.

[0039] The export channel 621 is a bent U-shaped pipe. The deodorizing filters 622 are grouped in pairs. One of them is arranged at the bent connection between the export channel 621 and the odor suction pipe 61, and the other pair is arranged between the U-shaped openings of the export channel 621. As Figure 8 shown, the connecting pipes of the two deodorizing filters 622 are both connected to the connection between the export channel 621 and the odor suction pipe 61, while the other connecting pipes of the two deodorizing filters 622 are distributed at the U-shaped bend of the export channel 621 and the outlet of the export channel 621. When the suction fan 623 sucks the odor inside the export channel 621, the odor can pass through the two deodorizing filters 622 respectively, forming two suction paths on the export channel 621, and the odor passes through the inside of the two deodorizing filters 622 respectively to complete deodorization and filtration.

[0040] Working principle: First, the fecal sewage and the like are introduced into the drying drum mechanism 2 through the feeding port 4, and then hot air for drying is introduced into the inner side of the drying drum mechanism 2 through the hot air blower 3. At this time, the motor drive of the drying drum mechanism 2 is started to drive the drying drum mechanism 2 to rotate and dry the fecal sewage. During the drying process, the odor generated by the fecal sewage will disperse in the drying drum mechanism 2. At this time, the suction fan 623 is started, and the suction fan 623 sucks out the odor in the drying drum mechanism 2 through the export channel 621 and the odor suction pipe 61. When the odor passes through the export channel 621, it passes through two paths of two deodorizing filters 622 respectively, and two suction paths are formed on the export channel 621 for deodorizing filtration, and finally it is exported through the suction fan 623. When the drying drum mechanism 2 rotates and dries, since the fecal sewage will fall from top to bottom in the drying drum mechanism 2, at this time, in order to block the odor suction pipe 61 and prevent the fecal sewage from falling on the odor suction pipe 61 and affecting the suction of the odor by the odor suction pipe 61, the swing blocking top 633 plays a blocking role above the odor suction pipe 61. When the fecal sewage containing moisture falls on the top surface of the swing blocking top 633 and adheres to the top surface of the swing blocking top 633, it rotates synchronously with the drying drum mechanism 2 through the connecting rotating shaft 631, and the connecting rotating shaft 631 drives the extrusion ring 632 to rotate synchronously. The protruding part of the extrusion ring 632 squeezes the lower end of the pendulum rotating frame 702 to rotate, driving the swing blocking top 633 at the upper end of the pendulum rotating frame 702 to rotate around the positioning shaft 701. When the swing blocking top 633 rotates, the rotating ring 801 rotates outside the positioning shaft 701 and squeezes the return spring 802 to twist. As the extrusion ring 632 continues to rotate, the protruding part of the extrusion ring 632 will no longer squeeze the pendulum rotating frame 702. At this time, under the reverse torsion force of the return spring 802, the rotating ring 801 and the swing blocking top 633 are reset on the positioning shaft 701, so that the pendulum rotating frame 702 is reset, driving the entire swing blocking top 633 to swing left and right in a pendulum manner above the odor suction pipe 61, capable of swinging and throwing off the fecal sewage adhering to the top surface of the swing blocking top 633, ensuring the blocking ability of the swing blocking top 633, preventing the accumulated fecal sewage from adhering to the top surface of the swing blocking top 633, ensuring the blocking effect on the odor suction pipe 61. When the drying drum mechanism 2 finishes rotating, the dried fecal sewage will fall into the guide inclined platform of the discharge chamber 5 through the opening of the drying drum mechanism 2 and slide out laterally, completing the deodorization and drying of the fecal sewage.

[0041] The above shows and describes the basic principle, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. An energy-saving treatment device for deodorizing and drying quail excrement, characterized in that: include: A mounting base (1), wherein a drying drum mechanism (2) is arranged on the mounting base (1), one side of the drying drum mechanism (2) is provided with an opening, a hot air blower (3) is arranged on the side of the drying drum mechanism (2) away from the opening, a material inlet (4) is arranged above the side of the drying drum mechanism (2) away from the opening, and a material discharge chamber (5) is arranged on the outer side of the side of the drying drum mechanism (2) away from the hot air blower (3); A deodorizing treatment mechanism (6), the deodorizing treatment mechanism (6) comprising an odor suction pipe (61), a treatment component (62) and a swing shielding component (63), one end of the odor suction pipe (61) is inserted into the inner side of the drying drum mechanism (2), the treatment component (62) is arranged in the discharge chamber (5), and the treatment component (62) is connected to the odor suction pipe (61), so that the odor sucked out of the odor suction pipe (61) enters the treatment component (62) to complete deodorizing and filtering, and the swing shielding component (63) is arranged between the drying drum mechanism (2) and the odor suction pipe (61); The swing shielding assembly (63) comprises a connecting shaft (631), an extrusion ring (632), a pendulum drive frame (7), a swing shielding top (633) and a reset assembly (8); a support frame is provided at the center of the inner side of the drying drum mechanism (2); one end of the connecting shaft (631) is connected to the support frame; the connecting shaft (631) and the drying drum mechanism (2) are synchronized and rotate coaxially; the odor suction pipe (61) remains stationary to support the pendulum drive frame (7); The squeezing ring (632) is sleeved on the shaft body of the connecting shaft (631) passing through the opening of the drying drum mechanism (2); the pendulum driving frame (7) is arranged on the odor suction pipe (61); the swing shielding top (633) surrounds the top of the tube body of the odor suction pipe (61) located inside the drying drum mechanism (2); the swing shielding top (633) is connected to the top of the pendulum driving frame (7); the squeezing ring (632) acts on the frame part of the pendulum driving frame (7) located inside the odor suction pipe (61); and the reset component (8) is arranged between the pendulum driving frame (7) and the swing shielding top (633); The pendulum driving frame (7) comprises a positioning shaft (701) and a pendulum rotating frame (702), wherein the positioning shaft (701) is fixedly arranged above the odor suction pipe (61) in the horizontal direction, and the pendulum rotating frame (702) is rotatably mounted on the positioning shaft (701), and the frame body at the lower end of the pendulum rotating frame (702) passes through the wall of the odor suction pipe (61), the top end of the pendulum rotating frame (702) is fixedly connected to the swing shielding top (633), and the lower end of the pendulum rotating frame (702) is located on the rotation path of the extrusion ring (632); Wherein, a protrusion is arranged on the outer side of the extrusion ring (632).

2. The energy-saving treatment device for deodorizing and drying quail excrement according to claim 1 is characterized in that: The swing shielding top (633) is an arc-shaped top and is arranged around and directly above the odor suction pipe (61); the top end of the swing shielding top (633) is a right-angled inclined surface.

3. The energy-saving treatment device for deodorizing and drying quail excrement according to claim 2 is characterized in that: The reset assembly (8) comprises a rotating ring (801) and a reset spring (802); the rotating ring (801) is arranged outside the positioning shaft (701), and the upper end of the rotating ring (801) is connected to the swing shielding top (633); the reset spring (802) is arranged at the connection between the rotating ring (801) and the positioning shaft (701).

4. The energy-saving treatment device for deodorizing and drying quail excrement according to claim 1 is characterized in that: The odor suction pipe (61) is provided with a plurality of holes. The processing component (62) comprises an outlet channel (621), a deodorizing filter (622) and an air suction fan (623). The outlet channel (621) is arranged at the end of the odor suction pipe (61), and the outlet channel (621) is located inside the discharge chamber (5). The deodorizing filter (622) is arranged in the discharge chamber (5), and the deodorizing filter (622) is connected to the outlet channel (621). The air suction fan (623) is arranged at one end of the outlet channel (621) away from the odor suction pipe (61).

5. The energy-saving treatment device for deodorizing and drying quail excrement according to claim 4 is characterized in that: The deodorizing filter (622) comprises a connecting pipe and a deodorizing filter box, wherein two connecting pipes are formed into a group and are respectively arranged at two ends of the deodorizing filter box, and the connecting pipes are respectively connected to two channel side walls of the outlet channel (621), and an inner shielding plate is arranged between the two channels connected to the outlet channel (621) and the connecting pipe.

6. The energy-saving treatment device for deodorizing and drying quail excrement according to claim 5 is characterized in that: The outlet channel (621) is a curved U-shaped pipe, and the deodorizing filters (622) are grouped in two, one of which is arranged at the connecting bend between the outlet channel (621) and the odor suction pipe (61), and the other is arranged between the U-shaped openings of the outlet channel (621).

Citation Information

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