Feed production wastewater recycling system

By designing a feed production wastewater recycling system and using multiple filtration and disinfection to treat sewage, the problem of sewage polluting the environment has been solved, and the recycling of water resources and the reduction of production costs have been achieved.

CN120136330APending Publication Date: 2025-06-13GUANGXI FUPENG AGRI & ANIMAL HUSBANDRY CO LTD
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Patent Information

Application Number
CN202411796240.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-09
Publication Date
2025-06-13

AI Technical Summary

Technical Problem

The sewage generated during feed production pollutes the environment, and the use of large amounts of water resources increases production costs.

Method used

A feed production wastewater recycling system is designed, including a reservoir, a heating box, a purification box and a multiple filtration mechanism. The sewage is treated through multiple filtration, flocculation and disinfection to form a recycling use.

Benefits of technology

It realizes rapid treatment and recycling of sewage, reduces waste of water resources, protects the environment, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of wastewater recycling treatment, and discloses a feed production wastewater recycling system which comprises a water storage tank, a heating box and a purifying box which are connected with each other are arranged on the outer side of the water storage tank, and the heating box and the purifying box are internally connected with an intercepting and filtering mechanism; the early-stage mechanism is arranged at the bottom of the water storage tank, and one side of the early-stage mechanism is connected with a centrifugal mechanism located on the outer side of the water storage tank. By means of the sewage treatment device, impurities and part of bacteria can be stably filtered, flocculation and disinfection can be conducted at the same time, sewage can be rapidly treated, recycling is achieved, waste of water resources is reduced, and the environment is protected. The environment is protected, meanwhile, the overall production cost is saved, later cleaning and maintenance can be conducted, later investment of overall equipment is reduced, the overall equipment is mainly filtered, use of electrical equipment is reduced, the overall use cost is further reduced, and later use is guaranteed.
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Description

Technical Field

[0001] The present invention relates to the field of wastewater recycling and treatment, and particularly to a system for recycling and utilizing wastewater from feed production. Background Art

[0002] Feed is the general term for the food of all animals raised. More narrowly, feed generally mainly refers to the food of animals raised in agriculture or animal husbandry. Feed includes more than a dozen varieties of feed raw materials such as soybeans, soybean meal, corn, fish meal, amino acids, miscellaneous meals, whey powder, oils and fats, meat and bone meal, grains, and feed additives. When producing feed, it is necessary to perform preliminary cleaning on the raw materials in the early stage to ensure subsequent processing requirements.

[0003] During the cleaning process, in existing mechanized production, generally a large amount of clean water is required for cleaning, either by spraying or storing water for cleaning. After treatment, waste such as soil, animal and plant debris, oils and fats, and sugars is generated, and the polluted water is discharged externally. Although this process can reduce certain processes and the floor area occupied by equipment, in the long-term production process, the discharge of sewage will cause eutrophication of the surrounding water bodies, pollute the environment, and at the same time, the use of a large amount of water resources is also a waste and increases the overall production cost. Summary of the Invention

[0004] To solve the technical problem of environmental pollution, the present invention provides a system for recycling and utilizing wastewater from feed production.

[0005] The present invention is implemented by the following technical solutions: A system for recycling and utilizing wastewater from feed production includes: a reservoir, on the outer side of which there are a heating tank and a purification tank connected to each other, and a filtering mechanism is connected inside the heating tank and the purification tank; a preliminary mechanism is arranged at the bottom of the reservoir, and one side of the preliminary mechanism is connected to a centrifugal mechanism located outside the reservoir.

[0006] As a further improvement of the above solution, the pre-stage mechanism includes: a temporary storage box, which is arranged at the bottom of the reservoir, and one side of which is connected to an addition hopper located outside the reservoir; a first extraction pump, which is fixedly connected to the bottom of the reservoir, the input end of the first extraction pump is connected to an extraction pipe extending into the temporary storage box, and the output end of the first extraction pump is connected to a pumping pipe; a rotating pipe, the bottom end of which is rotatably connected to one end of the pumping pipe, and the top end of the rotating pipe is rotatably connected to a rotating frame rotatably connected to the reservoir; a first motor, which is fixedly connected to the bottom of the reservoir, the output end of the first motor is connected to a first gearbox, and the output end of the first gearbox is drivingly connected to a first transmission assembly drivingly connected to the rotating pipe; a plurality of filter cylinders, which are snap-fitted on the rotating frame; a first water pump, which is fixedly connected to the bottom of the reservoir, the input end of the first water pump is connected to an input pipe extending into the reservoir, and the output end of the first water pump is connected to a main pipe located outside the reservoir, and the main pipe is connected to the centrifugal mechanism.

[0007] As a further improvement of the above solution, a plurality of stabilizing sleeves are fixedly connected to the rotating frame, the filter cylinders are snap-fitted with the stabilizing sleeves, a water blocking ring is fixedly connected to the outer edge of the rotating frame, and a dust-proof cover is connected to the top of the rotating pipe.

[0008] As a further improvement of the above solution, the centrifugal mechanism includes: a centrifugal cylinder, which is connected to the ground, and the top of the centrifugal cylinder is connected to a shunt pipe connected to the main pipe; a shunt box, which is fixedly connected to the top of the centrifugal cylinder, and a second motor and a second extraction pump located inside the centrifugal cylinder are fixedly connected to the outside of the shunt box, the output end of the second extraction pump extends into the shunt box, and the bottom of the shunt box is rotatably connected to a rotating plate; a transmission frame, which is fixedly sleeved with the rotating plate, the top end of the transmission frame is drivingly connected to the output end of the second motor, and the bottom end of the transmission frame is drivingly connected to a transmission rod through a spline; a rotating hopper, the middle of which is fixedly connected to the bottom end of the transmission rod, the top of the rotating hopper is rotatably sleeved with a stabilizing ring slidably sleeved on the inner wall of the centrifugal cylinder, and the bottom end of the rotating hopper is threadedly sleeved with a collection box; a disturbance assembly, which is connected to the collection box, and the bottom of which is connected to a support frame fixedly connected to the centrifugal cylinder; a plurality of conduction pipes, which connect a plurality of centrifugal cylinders in series, and the conduction pipes located on both sides are connected to the purification box.

[0009] As a further improvement of the above solution, a plurality of atomizing nozzles are fixedly connected to the bottom of the rotating plate, the input end of the second extraction pump is connected to an extension pipe extending outside the centrifugal cylinder, and a replacement door is rotatably connected to one side of the centrifugal cylinder.

[0010] As a further improvement of the above solution, a sieve hole communicating with the collection box is arranged at the bottom of the rotating hopper, a plurality of water filtering holes are arranged on the collection box, and a first cleaning pipe is connected to the bottom of the centrifugal cylinder.

[0011] As a further improvement of the above solution, the perturbation component includes: an inlaid panel, which is snap-connected to the collection box. A power shaft is fixedly sleeved in the middle of the inlaid panel. An accompanying plate is rotatably connected to the bottom of the inlaid panel; an outer sleeve, which is fixedly connected to the support frame. A sliding ring is slidably sleeved in the middle of the power shaft. The top of the sliding ring is fixedly connected to the accompanying plate. A second gearbox is arranged in the outer sleeve. The input end of the second gearbox is drivingly connected to one end of the power shaft; a second transmission component, which is drivingly connected to the output end of the second gearbox. One end of the second transmission component is drivingly connected to a flywheel. One side of the flywheel is rotatably connected to a swing rod that is rotatably connected to the accompanying plate.

[0012] As a further improvement of the above solution, the intercepting and filtering mechanism includes: a purification unit, which is arranged in the purification box. A second water pump connected to the conduction pipe is arranged below the purification unit; a communicating pipe, one end of which is connected to the purification box and the other end extends into the heating box; a plurality of heating pipes, which are connected to the heating box. A water purification pipe is connected to one side of the heating box.

[0013] As a further improvement of the above solution, the purification unit includes a limiting frame sleeved on the inner wall of the purification box. A sand layer, an activated carbon layer, a filter paper layer, a fiber layer and a semi-permeable membrane are sequentially connected in the limiting frame. A plurality of water overflow holes are arranged at the bottom of the limiting frame.

[0014] As a further improvement of the above solution, cleaning pipes II are connected to one side of both the purification box and the heating box. A water supply pipe is arranged above the filter cylinder. A touch control unit is arranged on one side of the water storage tank.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] 1. Through multiple filtrations by the pre-stage mechanism, the centrifugal mechanism, the intercepting and filtering mechanism, etc., and the addition of additives at multiple points in the middle, impurities and some bacteria can be filtered stably. At the same time, flocculation and disinfection can be carried out, so that the sewage can be treated quickly, forming a cycle for reuse, reducing the waste of water resources, protecting the environment, and saving the overall production cost.

[0017] 2. Through multiple replaceable devices, cleaning and maintenance can be carried out in the later stage, reducing the later investment of the overall equipment. And the overall is mainly based on filtration, reducing the use of electrical equipment, further reducing the overall use cost, and ensuring the later use. BRIEF DESCRIPTION OF THE DRAWINGS

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

[0019] Figure 2 is the front cross-sectional schematic diagram of the present invention;

[0020] Figure 3 It is a top view schematic diagram of the present invention;

[0021] Figure 4 It is a schematic structural diagram of the perturbation component;

[0022] Figure 5 It is a front view sectional schematic diagram of the perturbation component;

[0023] Figure 6 It is a left view sectional schematic diagram of the purification unit.

[0024] Main symbol description:

[0025] 01, water storage tank; 02, filter cylinder; 03, purified water pipe; 04, water supply pipe; 05, heating box; 06, heating pipe; 07, purification unit; 08, purification box; 09, centrifuge cylinder; 11, shunt pipe; 12, conduction pipe; 13, rotating frame; 14, rotating pipe; 15, adding hopper; 16, temporary storage box; 17, extraction pipe; 18, extraction pump one; 19, pumping pipe; 20, transmission component one; 21, gearbox one; 22, motor one; 23, main pipe; 24, support frame; 25, perturbation component; 26, collection box; 27, transmission rod; 28, rotating hopper; 29, transmission frame; 30, rotating plate; 31, shunt box; 32, extraction pump two; 33, motor two; 34, connecting pipe; 35, inlay plate; 36, accompanying plate; 37, power shaft; 38, flywheel; 39, transmission component two; 40, gearbox two; 41, swing rod; 42, sliding ring; 43, fiber layer; 44, semi-permeable membrane; 45, gravel layer; 46, water pump two; 47, limiting frame; 48, activated carbon layer; 49, filter paper layer; 50, outer sleeve. Specific embodiments

[0026] Next, in combination with the accompanying drawings and specific embodiments, the present invention will be further described. It should be noted that on the premise of no conflict, the following described embodiments or technical features can be arbitrarily combined with each other to form new embodiments.

[0027] Embodiment:

[0028] Please refer to Figure 1-6 ,

[0029] A feed production wastewater recycling system, comprising: a water storage tank 01, on the outer side of which there are connected a heating box 05 and a purification box 08. The heating box 05 and the purification box 08 are connected with a filtering mechanism inside. The water storage tank 01 conducts preliminary storage, and the filtering mechanism conducts final filtration and auxiliary work. The preliminary mechanism is arranged at the bottom of the water storage tank 01, and one side of the preliminary mechanism is connected with a centrifugal mechanism located outside the water storage tank 01. The preliminary mechanism conducts preliminary treatment, and the centrifugal mechanism conducts secondary collection and treatment.

[0030] The pre-stage mechanism includes: a temporary storage box 16, which is arranged at the bottom of the reservoir 01, and one side of which is connected to an addition hopper 15 located outside the reservoir 01. The temporary storage box 16 stores auxiliary raw materials, and the addition hopper 15 is used for addition. A first extraction pump 18 is fixedly connected to the bottom of the reservoir 01. The input end of the first extraction pump 18 is connected to an extraction pipe 17 extending into the temporary storage box 16, and the output end of the first extraction pump 18 is connected to a pumping pipe 19. The first extraction pump 18 extracts, so that the raw materials in the temporary storage box 16 enter the rotating pipe 14 through the extraction pipe 17 and the pumping pipe 19. The rotating pipe 14 has its bottom end rotatably connected to one end of the pumping pipe 19, and the top end of the rotating pipe 14 is rotatably connected to a rotating frame 13 that is rotatably connected to the reservoir 01. Through the transportation of the rotating pipe 14, the raw materials overflow into the reservoir 01. A first motor 22 is fixedly connected to the bottom of the reservoir 01. The output end of the first motor 22 is connected to a first gearbox 21, and the output end of the first gearbox 21 is drivingly connected to a first transmission assembly 20 that is drivingly connected to the rotating pipe 14. The first gearbox 21 is an existing mechanism that can perform intermittent torque transmission, so that the first transmission assembly 20 realizes intermittent periodic rotation, and further enables the rotating pipe 14 and the rotating frame 13 to perform periodic indirect rotation. There are multiple filter cylinders 02, which are snap-connected to the rotating frame 13. The filter cylinders 02 perform preliminary filtration, and the filtered water enters the reservoir 01 through the gap between the rotating frame 13 and the rotating pipe 14. A first water pump is fixedly connected to the bottom of the reservoir 01. The input end of the first water pump is connected to an input pipe extending into the reservoir 01, and the output end of the first water pump is connected to a main pipe 23 located outside the reservoir 01. The main pipe 23 is connected to the centrifugal mechanism. The first water pump pumps and then outputs, so that the preliminarily treated water enters the main pipe 23 for subsequent transmission.

[0031] A plurality of stabilizing sleeves are fixedly connected to the rotating frame 13, and the filter cylinders 02 are snap-connected to the stabilizing sleeves. A water retaining ring is fixedly connected to the outer edge of the rotating frame 13, and a dust-proof cover is connected to the top of the rotating pipe 14. The stabilizing sleeves facilitate the installation and disassembly of the filter cylinders 02, and the dust-proof cover provides protection to prevent the splashed water droplets from entering the rotating pipe 14 and also blocks a certain amount of dust.

[0032] The centrifugal mechanism includes: a centrifugal cylinder 09, which is connected to the ground. A shunt pipe 11 connected to the main pipe 23 is connected to the top of the centrifugal cylinder 09. The centrifugal cylinder 09 defines a space. Inside the centrifugal cylinder 09, the corresponding number of ultraviolet lamps can be installed as needed for auxiliary disinfection. The shunt pipe 11 conducts the water in the main pipe 23 and enters it onto the rotary bucket 28. A shunt box 31, which is fixedly connected to the top of the centrifugal cylinder 09. The outside of the shunt box 31 is fixedly connected with a second motor 33 and a second extraction pump 32 located inside the centrifugal cylinder 09. The output end of the second extraction pump 32 extends into the shunt box 31. The bottom of the shunt box 31 is rotatably connected with a rotary plate 30. The shunt box 31 conducts space separation and short-term storage. The second extraction pump 32 pumps disinfectant water or flocculant or other reagents required according to the process from the outside into the shunt box 31, and then overflows through the rotary plate 30. A transmission frame 29, which is fixedly sleeved with the rotary plate 30. The top end of the transmission frame 29 is drivingly connected to the output end of the second motor 33. The bottom end of the transmission frame 29 is drivingly connected with a transmission rod 27 through a spline. The second motor 33 outputs power to drive the rotation of the rotary plate 30 and the transmission frame 29, and further drives the rotation of the transmission rod 27. A rotary bucket 28, the middle of which is fixedly connected to the bottom end of the transmission rod 27. The top of the rotary bucket 28 is rotatably sleeved with a stabilizing ring that is slidably sleeved with the inner wall of the centrifugal cylinder 09. The bottom end of the rotary bucket 28 is threadedly sleeved with a collection box 26. A disturbance assembly 25, which is connected to the collection box 26 and has its bottom connected to a support frame 24 fixedly connected to the centrifugal cylinder 09. The collection box 26 and the rotary bucket 28 perform centrifugal rotation driven by the transmission rod 27. At the same time, the water in the shunt pipe 11 is filtered through the rotary bucket 28, so that impurities enter the collection box 26 for storage under the action of gravity, and then the water enters the bottom of the centrifugal cylinder 09 through the support frame 24 for short-term storage. The disturbance assembly 25 disturbs the collection box 26. A conduction pipe 12, of which there are multiple. The conduction pipes 12 connect multiple centrifugal cylinders 09 in series. The conduction pipes 12 at both sides are connected to the purification box 08. The conduction pipes 12 perform series connection and conduction of liquids.

[0033] A plurality of atomizing nozzles are fixedly connected to the bottom of the rotary plate 30. The input end of the second extraction pump 32 is connected with an extension pipe extending to the outside of the centrifugal cylinder 09. A replacement door is rotatably connected to one side of the centrifugal cylinder 09. The atomizing nozzles increase the spraying area, thereby ensuring the contact between the reagent and the water. The extension pipe facilitates the connection of external pipes. The replacement door facilitates the replacement and cleaning of the collection box 26.

[0034] A sieve hole communicating with the collection box 26 is provided at the bottom of the rotary bucket 28. A plurality of water filtering holes are provided on the collection box 26. A first cleaning pipe is connected to the bottom of the centrifugal cylinder 09. The sieve hole conducts impurities. The water filtering holes overflow the excess water in the collection box 26 again. The aperture of the water filtering holes is smaller than the holes on the rotary bucket 28.

[0035] The disturbance assembly 25 includes: an inlay plate 35, which is snap-fitted with the collection box 26, a power shaft 37 is fixedly sleeved in the middle of the inlay plate 35, a companion plate 36 is rotatably connected to the bottom of the inlay plate 35, and the inlay plate 35 is supported and connected to facilitate the installation of the collection box 26, an outer sleeve 50, which is fixedly connected to the support frame 24, a sliding ring 42 is slidably sleeved in the middle of the power shaft 37, and the top of the sliding ring 42 is fixedly connected to the companion plate 36, and a gearbox 2 40 is arranged in the outer sleeve 50, and the input end of the gearbox 2 40 is drivingly connected to one end of the power shaft 37, and the inlay plate 35 is accompanied by the collection box 26. The box 26 rotates with the rotation, further drives the rotation of the power shaft 37, and then transmits it to the gearbox 240, the transmission component 240 is transmission connected to the output end of the gearbox 240, one end of the transmission component 240 is transmission connected to the flywheel 38, one side of the flywheel 38 is rotationally connected to the swing rod 41 which is rotationally connected to the accompanying plate 36, the transmission of the gearbox 240 is transmitted through the transmission component 240 to make the flywheel 38 rotate, and further make the swing rod 41 swing, under the limitation of the sliding ring 42 and the power shaft 37, the collection box 26 is periodically shaken to ensure the filtering process.

[0036] The interception and filtration mechanism includes: a purification unit 07, which is arranged in a purification box 08, and a water pump 46 connected to the conducting pipe 12 is arranged below the purification unit 07. The purification unit 07 performs multi-layer filtration to ensure the final purification of the water quality and the separation of some impurities. A series pipe 34, one end of which is connected to the purification box 08 and the other end extends to the heating box 05. The series pipe 34 conducts water flow. A heating pipe 06 is provided with multiple heating pipes 06, which are connected to the heating box 05. One side of the heating box 05 is connected to the clean water pipe 03. The heating pipe 06 can heat and disinfect the filtered water as needed, and finally discharge it through the clean water pipe 03 to achieve treatment.

[0037] The purification unit 07 includes a limiting frame 47 which is connected to the inner wall of the purification box 08. A gravel layer 45, an activated carbon layer 48, a filter paper layer 49, a fiber layer 43 and a semipermeable membrane 44 are connected in sequence in the limiting frame 47. A plurality of overflow holes are provided at the bottom of the limiting frame 47. The limiting frame 47 is packaged, the gravel layer 45 performs preliminary filtration, the activated carbon layer 48 performs secondary filtration and adsorption, the filter paper layer 49 performs filtration to remove some small particles, 43 performs secondary filtration to filter bacteria and smaller impurities, and the semipermeable membrane 44 is set to be semipermeable to ensure the stability of water quality.

[0038] One side of the purification box 08 and the heating box 05 is connected to a cleaning pipe 2, a water supply pipe 04 is arranged above the filter cartridge 02, and a touch unit is arranged on one side of the water reservoir 01. The cleaning pipe facilitates filtering of the heating box 05 and the purification box 08, and the water supply pipe 04 allows sewage to enter and reach the corresponding filter cartridge 02. The touch unit is electrically connected to multiple internal devices through wires to achieve corresponding control.

[0039] The implementation principle of the embodiment of this application is as follows:

[0040] When working, an external pump is used to pump water into the filter cylinder 02 through the water inlet pipe 04, and then it is left standing and filtered. At the same time, through the transmission of the first motor 22, the first gearbox 21, and the first transmission component 20, the rotating pipe 14 and the rotating frame 13 rotate, further causing the filter cylinder 02 to cycle periodically, thereby ensuring the treatment process. The filtered water enters the reservoir 01 under the action of gravity. With the pumping of the first extraction pump 18, the treatment liquid in the temporary storage tank 16 enters the reservoir 01 through the rotating pipe 14 for mixing. At this time, after being pumped by the first water pump, it enters the rotating hopper 28 of the centrifugal cylinder 09 through the main pipe 23 and the shunt pipe 11. At the same time, under the action of the second motor 33, the transmission frame 29, the transmission rod 27, and the rotating hopper 28 rotate for centrifugal filtration to ensure the efficiency of secondary filtration. The remaining residue enters the collection box 26 under the action of gravity for collection. During the centrifugation process, through the transmission of the power shaft 37 and the action of the second gearbox 40, the second transmission component 39, the flywheel 38, and the swing rod 41, the collection box 26 shakes up and down to ensure stability during the centrifugation process. While performing centrifugal filtration, through the pumping of the second extraction pump 32, the external treatment liquid enters the shunt box 31, and then is mixed with the incoming liquid through the rotating rotating plate 30 and the atomizing nozzle to promote subsequent filtration or disinfection treatment. Finally, the filtered water enters the bottom of the centrifugal cylinder 09 for storage, and then through the pumping of the second water pump 46, the treated water enters the purification box 08 through the conduction pipe 12. Then, under the action of pressure, it sequentially passes through the rotating hopper 28, the transmission frame 29, the fiber layer 43, and the semi-permeable membrane 44 and enters above the purification box 08, and is filtered again through the rotating hopper 28, the transmission frame 29, the fiber layer 43, and the semi-permeable membrane 44 to ensure the final water quality. The treated water enters the heating box 05 through the connecting pipe 34, and then according to needs, the heating pipe 06 is turned on for heating or boiling disinfection, and finally is discharged through the purified water pipe of the filter cylinder 03 for cyclic treatment.

[0041] After the treatment is completed, the replacement door can be opened to replace and clean the collection box 26. At the same time, the purification unit 07 is taken out for directional flushing or replacement, and through the treatment pipe, the sewage of multiple cleaned boxes is discharged to ensure the progress of subsequent work.

[0042] The above implementation manners are only the preferred implementation manners of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention belong to the protection scope required by the present invention.

Claims

1. A feed production wastewater recycling system, characterized in that, it includes: A reservoir, on the outside of which there are connected a heating box and a purification box, and a filtering mechanism is connected inside the heating box and the purification box; A pre-treatment mechanism, arranged at the bottom of the reservoir, and on one side of the pre-treatment mechanism there is connected a centrifugal mechanism located outside the reservoir.

2. The feed production wastewater recycling system according to claim 1, characterized in that, the pre-treatment mechanism includes: A temporary storage box, which is arranged at the bottom of the reservoir, and on one side of it there is connected a feeding hopper located outside the reservoir; A first extraction pump, which is fixedly connected to the bottom of the reservoir, the input end of the first extraction pump is connected to an extraction pipe extending into the temporary storage box, and the output end of the first extraction pump is connected to a pumping pipe; A rotating pipe, the bottom end of which is rotatably connected to one end of the pumping pipe, and the top end of the rotating pipe is rotatably connected to a rotating frame rotatably connected to the reservoir; A first motor, which is fixedly connected to the bottom of the reservoir, the output end of the first motor is connected to a first gearbox, and the output end of the first gearbox is drivingly connected to a first transmission assembly drivingly connected to the rotating pipe; A plurality of filter cylinders, which are snap-connected to the rotating frame; A first water pump, which is fixedly connected to the bottom of the reservoir, the input end of the first water pump is connected to an input pipe extending into the reservoir, and the output end of the first water pump is connected to a main pipe located outside the reservoir, and the main pipe is connected to the centrifugal mechanism.

3. The feed production wastewater recycling system according to claim 2, characterized in that, A plurality of stabilizing sleeves are fixedly connected to the rotating frame, the filter cylinders are snap-connected to the stabilizing sleeves, a water retaining ring is fixedly connected to the outer edge of the rotating frame, and a dust-proof cover is connected to the top of the rotating pipe.

4. The feed production wastewater recycling system according to claim 2, characterized in that, the centrifugal mechanism includes: A centrifugal cylinder, which is connected to the ground, and the top of the centrifugal cylinder is connected to a shunt pipe connected to the main pipe; A shunt box, which is fixedly connected to the top of the centrifugal cylinder, on the outside of the shunt box there are fixedly connected a second motor and a second extraction pump located inside the centrifugal cylinder, the output end of the second extraction pump extends into the shunt box, and the bottom of the shunt box is rotatably connected to a rotating plate; A transmission frame, which is fixedly sleeved with the rotating plate, the top end of the transmission frame is drivingly connected to the output end of the second motor, and the bottom end of the transmission frame is drivingly connected to a transmission rod through a spline; A rotating hopper, the middle of which is fixedly connected to the bottom end of the transmission rod, the top of the rotating hopper is rotatably sleeved with a stabilizing ring slidably sleeved on the inner wall of the centrifugal cylinder, and the bottom end of the rotating hopper is threadedly sleeved with a collection box; A disturbing component, which is connected to the collection box, and its bottom is connected to a support frame fixedly connected to the centrifugal cylinder; A plurality of conduction pipes, which connect a plurality of centrifugal cylinders in series, and the conduction pipes located on both sides are connected to the purification box.

5. The feed production wastewater recycling system according to claim 1, characterized in that, A plurality of atomizing nozzles are fixedly connected to the bottom of the rotating plate, the input end of the second extraction pump is connected to an extension pipe extending outside the centrifugal cylinder, and one side of the centrifugal cylinder is rotatably connected to a replacement door.

6. A feed production wastewater recycling system as claimed in claim 1, characterized in that, a sieve hole communicating with the collection box is arranged at the bottom of the rotary hopper, a plurality of water filtering holes are arranged on the collection box, and a cleaning pipe I is connected to the bottom of the centrifugal cylinder.

7. A feed production wastewater recycling system as claimed in claim 1, characterized in that, the disturbance assembly includes: an inlaid plate which is clamped with the collection box, a power shaft is fixedly sleeved in the middle of the inlaid plate, and an accompanying plate is rotatably connected to the bottom of the inlaid plate; an outer sleeve which is fixedly connected to the support frame, a sliding ring is slidably sleeved in the middle of the power shaft, the top of the sliding ring is fixedly connected to the accompanying plate, a gearbox II is arranged in the outer sleeve, and the input end of the gearbox II is drivingly connected to one end of the power shaft; a transmission assembly II which is drivingly connected to the output end of the gearbox II, one end of the transmission assembly II is drivingly connected to a flywheel, and a swing rod rotatably connected to the flywheel and rotatably connected to the accompanying plate is arranged on one side of the flywheel.

8. A feed production wastewater recycling system as claimed in claim 6, characterized in that, the intercepting and filtering mechanism includes: a purification unit which is arranged in the purification box, and a water pump II connected to the conduction pipe is arranged below the purification unit; a communicating pipe, one end of which is connected to the purification box and the other end of which extends into the heating box; a plurality of heating pipes which are connected to the heating box, and a water purification pipe is connected to one side of the heating box.

9. A feed production wastewater recycling system as claimed in claim 8, characterized in that, the purification unit includes a limiting frame sleeved with the inner wall of the purification box, a gravel layer, an activated carbon layer, a filter paper layer, a fiber layer and a semi-permeable membrane are sequentially connected in the limiting frame, and a plurality of overflow holes are arranged at the bottom of the limiting frame.

10. A feed production wastewater recycling system as claimed in claim 9, characterized in that, cleaning pipes II are connected to one side of the purification box and the heating box respectively, a water inlet pipe is arranged above the filter cylinder, and a touch control unit is arranged on one side of the reservoir.