A beef washing water purification device

By designing annular water collection frame and multi-stage screening components, combined with the biological treatment method of the anaerobic reactor, the problem of low efficiency of existing beef cleaning water treatment equipment is solved, and efficient sewage treatment and equipment operation is achieved.

CN119263537BActive Publication Date: 2025-06-06SHANDONG YANGXIN TAIHE HALAL MEAT CO LTD
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
CN202411586269.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-06-06
Estimated Expiration
2044-11-08

AI Technical Summary

Technical Problem

The existing beef cleaning water treatment equipment is inefficient during the flocculation and precipitation process, the filtration equipment is prone to clogging, and the flocculation reaction time is long, which affects the overall treatment efficiency.

Method used

A water purification device for beef cleaning was designed, and blood water was collected in batches using an annular water collection frame, and flocculation precipitation was carried out in the partition area. The upper screen plate and the lower screen plate are respectively used to isolate large pieces of impurities and precipitation after flocculation. Blood water is sent to the anaerobic reactor through the linkage component for biological treatment, reducing the time spent on flocculation.

Benefits of technology

Through batch processing and multi-stage biological treatment, the efficiency of sewage treatment is improved, the risk of equipment blockage and flocculation reaction time is reduced, and the overall treatment efficiency is improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119263537B_ABST
    Figure CN119263537B_ABST
Patent Text Reader

Abstract

The present invention provides a water purification device for washing beef, which relates to the technical field of sewage treatment, and comprises a water collecting frame, wherein the bottom of the water collecting frame is fixed on the ground by a support, and an anaerobic reactor is arranged in the circle center area of ​​the water collecting frame, and a connecting layer is arranged on the periphery of the top of the anaerobic reactor, and the connecting layer is fixedly connected to the outer wall of the inner circle of the water collecting frame, and a screening component is arranged in the water collecting frame, and the screening component comprises a partition, and a plurality of partitions are equidistantly slidably inserted in the water collecting frame. Compared with the prior art, the annular water collecting frame can collect blood water in batches, and flocculation and precipitation are carried out in the partition area, and the upper sieve plate and the lower sieve plate respectively isolate large impurities and flocculation precipitation, and the blood water is sent into the anaerobic reactor by the linkage component opening the connection between the water collecting frame and the connecting layer, and subsequent aerobic and anaerobic biological treatment methods are carried out, thereby reducing the time occupied by flocculation and being beneficial to improving the efficiency of sewage treatment.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of sewage treatment, in particular to a water purification device for washing beef. Background Art

[0002] The wastewater from beef slaughterhouses mainly includes cleaning water and processing water. The cleaning water is mixed with a lot of minced meat, impurities and blood, and contains a large amount of protein, ammonia nitrogen and other organic substances. If it is not effectively treated, it will cause serious pollution to the environment. The existing technical treatment method is to precipitate, filter, drain, and adjust the water quality of the blood water, and use biological methods or physical and chemical methods to treat the blood water after pre-treatment.

[0003] The process of precipitating blood water mainly relies on natural precipitation and flocculant adsorption to remove impurities in the blood water, and then it can be sent to subsequent biological or physical and chemical methods to remove organic matter in the blood water. Conventional treatment equipment first needs to consider the problem of easy clogging of the filter plate in the filtration stage. At the same time, a certain reaction time is required when the flocculant is mixed with blood water, and the precipitation and screening of the precipitation also need to be carried out in the equipment, which will occupy the equipment, resulting in the overall efficiency of the sewage treatment equipment is not high, and the next batch of blood water flocculation treatment cannot be carried out during the waiting time. Summary of the invention

[0004] In view of the shortcomings of the prior art, the purpose of the present invention is to provide a beef washing water purification device to solve the problems raised in the above-mentioned background technology. The present invention has a novel structure. The annular water collecting frame can collect blood water in batches and carry out flocculation and sedimentation in the partition area. The upper sieve plate and the lower sieve plate respectively isolate large impurities and flocculation precipitation. The blood water is sent into the anaerobic reactor by the linkage component to open the connection between the water collecting frame and the connecting layer, and subsequent aerobic and anaerobic biological treatment methods are carried out, which reduces the time occupied by flocculation and is beneficial to improving the efficiency of sewage treatment.

[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical scheme: a beef washing water purification device, comprising a water collecting frame, the bottom of the water collecting frame is fixed to the ground by a support, and an anaerobic reactor is arranged in the center area of ​​the water collecting frame, a connecting layer is arranged on the periphery of the top of the anaerobic reactor, and the connecting layer is fixedly connected to the outer wall of the inner circle of the water collecting frame, a screening component is arranged in the water collecting frame, and the screening component includes a partition, a plurality of partitions are equidistantly slidably inserted in the water collecting frame, and the two sides of the partition slide along the inner walls of the two sides of the water collecting frame, An upper sieve plate is fixed between adjacent partitions, a plurality of connecting pipes are connected between the top of the anaerobic reactor and the connecting layer, and a through hole is provided at the connection between the water collecting frame and the connecting layer at a position corresponding to the connecting pipe, the through hole is provided between two groups of partitions, and a block is slidably installed inside the connecting layer at a position corresponding to each group of through holes and the connecting pipe, a driving assembly is provided on the outside of the water collecting frame, the driving assembly comprises a gear ring, a gear ring is rotatably installed on the outside of the top of the water collecting frame through a bearing, the partition is fixedly connected to the gear plate, and the gear ring drives the upper sieve plate and the block to rotate.

[0006] Furthermore, an aerobic reactor is provided on the outside of the water collecting frame, and the discharge port of the anaerobic reactor is connected to the aerobic reactor through a pipe. A disinfection pool is provided on the other side of the aerobic reactor, and the water inlet of the disinfection pool is connected to the aerobic reactor through a pipe. A discharge port is opened at the bottom of the disinfection pool.

[0007] Furthermore, the driving assembly also includes a motor, a motor is fixed on the outside of the water collecting frame, and a gear is fixed on the output end of the motor, the gear is meshed with a gear ring, a horizontal plate is fixed on the inside of the gear ring at a position corresponding to the top of the partition, and the horizontal plate is fixedly connected to the partition.

[0008] Furthermore, the screening assembly also includes a lower screen plate, which slides along the partitions on both sides, and a vertical rod is fixed to one end of the lower screen plate away from the through hole, and the top of the vertical rod slides through the upper screen plate.

[0009] Furthermore, the linkage assembly also includes a top ring, a top ring is fixed on the top of the water collecting frame at the position where the vertical rod passes through, an electric push rod is fixed on the surface of the gear ring, and the extended end of the electric push rod is fixedly connected to the top ring.

[0010] Furthermore, a rotating plate is rotatably installed on the top of the connecting layer through a bearing, the blocking block is fixed to the rotating plate, an insertion rod is slidably inserted into the top of the blocking block, and a ring is fixed on the surface of the rotating plate where the insertion rod passes through, springs are equidistantly fixed on the bottom of the ring, and the other end of the spring is fixedly connected to the rotating plate, a hole is opened on the horizontal plate at a position corresponding to the insertion rod, and the insertion rod can be slidably inserted into the hole.

[0011] Furthermore, a connecting ring is provided on the inner side of the insertion rod at the top of the connecting layer, and the ring is slidably sleeved on the surface of the connecting ring. A two-way telescopic plate is connected to the top of the connecting ring through a rotating seat, and a sliding frame is rotatably installed on the other end of the two-way telescopic plate through a rotating shaft, and the sliding frame is slidably sleeved on the surface of the top ring.

[0012] Furthermore, a mounting frame is fixed at a position on the top of the anaerobic reactor corresponding to the bidirectional telescopic plate, and the mounting frame is rotatably connected to both sides of the middle of the bidirectional telescopic plate by rotation.

[0013] Furthermore, a slag discharge port is provided on the outer wall at the top of the water collecting frame, and the slag discharge port is parallel to the bottom of the upper screen plate, and the upper screen plate is inclined from the inner side of the water collecting frame toward the outer side.

[0014] Furthermore, a sealing plate is provided on the surface of the water collecting frame corresponding to the two groups of partitions, a flocculant adding pipe is installed on the outer wall of one side of the water collecting frame, and the flocculant adding pipe is located between the two partitions.

[0015] Beneficial effects of the present invention:

[0016] 1. The present invention has a sieve plate that is inclined from the inside to the outside of the water collecting frame. Whenever the partition plate and the upper sieve plate rotate to the slag discharge port at the top of the water collecting frame, the upper sieve plate can be sieved out by sliding on the inclined surface or manually cleaning to avoid clogging the flocculation space at the lower end of the water collecting frame.

[0017] 2. The present invention squeezes the sediment in the inner space of the partition downwards by lowering the lower sieve plate until it is below the position of the through hole, so as to separate the sediment from the supernatant and send the blood water into the anaerobic reactor. The sealing plate is opened regularly by manual or electromagnetic drive to clean out the sediment compressed at the bottom of the lower sieve plate.

[0018] 3. In the present invention, since the top ring and the connecting ring both move in the vertical direction, the two ends of the bidirectional telescopic plate cooperatively extend or shorten to maintain the rotational connection with the two, and the sliding sleeve connection between the sleeve ring and the connecting ring and the sliding sleeve connection between the sliding frame and the top ring can ensure that when the top ring and the rotating plate rotate, there will be no movement interference with the mounting frame and the bidirectional telescopic plate.

[0019] 4. The present invention drives the gear to rotate through a motor, and the gear meshes with the gear ring to drive the internal partition, upper screen plate and lower screen plate of the water collecting frame to move along the inside of the water collecting frame, thereby dividing the water collecting frame into multiple chambers. Each chamber receives beef cleaning water in opposition and performs separate coagulation and sedimentation treatment, thereby improving the efficiency of blood water treatment and reducing waiting time.

[0020] 5. Compared with the prior art, the present invention has an annular water collecting frame that can collect blood water in batches and carry out flocculation and sedimentation in the partition area. The upper sieve plate and the lower sieve plate respectively isolate large impurities and flocculation sedimentation. The blood water is sent into the anaerobic reactor by the linkage component that opens the connection between the water collecting frame and the connecting layer for subsequent aerobic and anaerobic biological treatment methods, which reduces the time occupied by flocculation and is beneficial to improving the efficiency of sewage treatment. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the overall structure of a beef washing water purification device of the present invention;

[0022] Figure 2 This is a schematic diagram of the bottom structure of a water collecting frame of a beef washing water purification device of the present invention;

[0023] Figure 3 It is a schematic diagram of the connection between the screening component and the linkage component of a beef washing water purification device of the present invention;

[0024] Figure 4 A top view of the upper end of a water collecting frame of a beef washing water purification device of the present invention;

[0025] Figure 5 This is a schematic diagram of the linkage assembly structure of a beef washing water purification device of the present invention;

[0026] Figure 6 This is a schematic diagram of the internal structure of the connection layer of a beef washing water purification device of the present invention;

[0027] Figure 7 The present invention is a schematic diagram of the internal structure of a water collecting frame of a water purification device for washing beef.

[0028] In the figure: 1. water collecting frame; 11. flocculant adding pipe; 12. sealing plate; 13. slag discharge port; 2. anaerobic reactor; 21. connecting layer; 22. rotating plate; 23. blocking block; 3. aerobic reactor; 4. disinfection tank; 5. driving assembly; 51. motor; 52. gear; 53. gear ring; 54. cross plate; 6. screening assembly; 61. partition; 62. upper sieve plate; 63. lower sieve plate; 64. through hole; 7. linkage assembly; 71. electric push rod; 72. top ring; 73. vertical rod; 74. mounting frame; 75. two-way telescopic plate; 76. sliding frame; 77. connecting ring; 78. plug rod; 79. sleeve ring; 710. spring. DETAILED DESCRIPTION

[0029] In order to make the technical means, creative features, objectives and effects achieved by the present invention easy to understand, the present invention is further explained below in conjunction with specific implementation methods.

[0030] See also Figures 1 to 7The present invention provides a technical solution: a beef washing water purification device, comprising a water collecting frame 1, the bottom of the water collecting frame 1 is fixed to the ground by a support, and an anaerobic reactor 2 is arranged in the center area of ​​the water collecting frame 1, a connecting layer 21 is arranged on the periphery of the top of the anaerobic reactor 2, and the connecting layer 21 is fixedly connected to the inner circle outer wall of the water collecting frame 1, a screening component 6 is arranged in the water collecting frame 1, and the screening component 6 includes a partition 61, a plurality of partitions 61 are equidistantly inserted and slidably inserted in the water collecting frame 1, and the two sides of the partition 61 slide along the inner walls of the two sides of the water collecting frame 1, an upper sieve plate 62 is fixed between adjacent partitions 61, a plurality of connecting pipes are connected between the top of the anaerobic reactor 2 and the connecting layer 21, and a through hole 64 is opened at the position corresponding to the connecting pipe at the connection between the water collecting frame 1 and the connecting layer 21, and the through hole 64 is arranged between the two groups of partitions 61, A block 23 is slidably installed inside the connecting layer 21 at the position corresponding to each group of through holes 64 and the connecting pipe. A driving component 5 is provided on the outside of the water collecting frame 1. The driving component 5 includes a gear ring 53. The gear ring 53 is rotatably installed on the outside of the top of the water collecting frame 1 through a bearing. The partition 61 is fixedly connected to the gear plate, and the gear ring 53 drives the upper screen plate 62 and the block 23 to rotate. When the device is used, water for washing beef is fed into one side of the upper end of the water collecting frame 1, and the blood water flows directly into between the two partitions 61 of the lower layer through the screening of the upper screen plate 62. The driving component 5 drives the screening component 6 to rotate along the inside of the water collecting frame 1, and each chamber takes turns to receive water and perform flocculation treatment. After the precipitation produced by flocculation is treated, the blood water is fed into the anaerobic reactor 2 through the connecting layer 21, and is successively fed into the aerobic reactor 3 and the disinfection tank 4 for multi-stage sewage treatment to remove organic matter and impurities in the blood water.

[0031] In this embodiment, an aerobic reactor 3 is provided on the outside of the water collecting frame 1, and the discharge port of the anaerobic reactor 2 is connected with the aerobic reactor 3 through a pipe. A disinfection tank 4 is provided on the other side of the aerobic reactor 3, and the water inlet of the disinfection tank 4 is connected with the aerobic reactor 3 through a pipe. A discharge port is provided at the bottom of the disinfection tank 4. The technical principles of the aerobic reactor 3 and the anaerobic reactor 2 can refer to the technical method used in patent CN212770359U, which are all prior arts together with the disinfection tank 4, and the beef washing water is subjected to multi-stage purification treatment.

[0032] In this embodiment, the driving component 5 also includes a motor 51, the motor 51 is fixed on the outside of the water collecting frame 1, and a gear 52 is fixed on the output end of the motor 51, the gear 52 is meshed with a gear ring 53, a horizontal plate 54 is fixed on the inner side of the gear ring 53 at a position corresponding to the top of the partition 61, and the horizontal plate 54 is fixedly connected to the partition 61, the screening component 6 also includes a lower screen plate 63, the lower screen plate 63 slides along the partitions 61 on both sides, and a vertical rod 73 is fixed at one end of the lower screen plate 63 away from the through hole 64, the top of the vertical rod 73 slides out of the upper screen plate 62, the motor 51 drives the gear 52 to rotate, the gear 52 is meshed with the gear ring to drive the internal partition 61, the upper screen plate 62 and the lower screen plate 63 of the water collecting frame 1 to move along the inside of the water collecting frame 1, thereby dividing the water collecting frame 1 into a plurality of chambers, each chamber receives beef cleaning water oppositely, and performs a separate coagulation and sedimentation treatment, thereby improving the efficiency of blood water treatment and reducing waiting time.

[0033] In this embodiment, the linkage assembly 7 also includes a top ring 72, and the top ring 72 is fixed on the top of the water collecting frame 1 at the position where the vertical rod 73 passes through, an electric push rod 71 is fixed on the surface of the gear ring 53, and the extended end of the electric push rod 71 is fixedly connected to the top ring 72, and a rotating plate 22 is rotatably installed on the top of the connecting layer 21 through a bearing, the blocking block 23 is fixed to the rotating plate 22, and a plug rod 78 is slidably inserted at the top of the blocking block 23, and a ring 79 is fixed on the surface of the plug rod 78 passing through the rotating plate 22, and a spring 710 is equidistantly fixed to the bottom of the ring 79, and the other end of the spring 710 is fixedly connected to the rotating plate 22, and a hole is opened on the horizontal plate 54 corresponding to the position of the plug rod 78, and the plug rod 78 It can be slidably inserted into the jack, and a connecting ring 77 is provided on the inner side of the plug rod 78 at the top of the connecting layer 21, and a sleeve ring 79 is slidably sleeved on the surface of the connecting ring 77. The top of the connecting ring 77 is connected to a two-way telescopic plate 75 through a rotating seat, and the other end of the two-way telescopic plate 75 is rotatably installed with a sliding frame 76 through a rotating shaft. The sliding frame 76 is slidably sleeved on the surface of the top ring 72, and a mounting frame 74 is fixed at the position corresponding to the two-way telescopic plate 75 at the top of the anaerobic reactor 2. The mounting frame 74 is rotatably connected to the middle two sides of the two-way telescopic plate 75 by rotation. The top ring 72 is driven by an electric push rod 71 to rise and fall. When the connecting layer 21 and the water collecting frame 1 are closed, the block 23 is located at the through hole 64 of the connecting layer 21 The position of the connecting pipe is sealed to maintain the anaerobic environment inside the anaerobic reactor 2. When water needs to be delivered to the inside of the anaerobic reactor 2, the electric push rod 71 drives the top ring 72 to descend. One end of the top ring 72 descends to pull the two-way telescopic plate 75 to rotate, and the lower sieve plate 63 is driven downward by the vertical rod 73 to push the impurities generated by the flocculation to the lower end of the through hole 64. The rotation of the two-way telescopic plate 75 takes the middle as the center and rotates around the mounting frame 74. The other end of the two-way telescopic plate 75 drives the connecting ring 77 to rise synchronously, which is equivalent to the seesaw principle. The connecting ring 77 pulls the plug rod 78 out of the rotating plate 22 and inserts it into the jack of the horizontal plate 54. At this time, the horizontal plate 54 and the rotating plate 22 are equivalent to plug-in locking, and the driving component 5 drives the horizontal plate 54 to rotate. When the top ring 72 and the connecting ring 77 move vertically, the two ends of the two-way telescopic plate 75 are cooperatively extended or shortened to maintain the rotation connection with the two, and the sliding sleeve connection between the sleeve ring 79 and the connecting ring 77 and the sliding sleeve connection between the sliding frame 76 and the top ring 72 can ensure that the top ring 72 and the rotating plate 22 will not interfere with the movement of the mounting frame 74 and the two-way telescopic plate 75 when the top ring 72 and the rotating plate 22 rotate. The two-way telescopic plate 75 is higher than the horizontal plate 54, and the sleeve ring 79 is sleeved on the connecting ring 77 to avoid the rotation connection of the two-way telescopic plate 75.

[0034] In this embodiment, a slag discharge port 13 is provided on the top outer wall of the water collecting frame 1, and the slag discharge port 13 is parallel to the bottom of the upper sieve plate 62, and the upper sieve plate 62 is inclined from the inner side of the water collecting frame 1 toward the outer side, and a sealing plate 12 is provided on the surface between the two groups of partitions 61 of the water collecting frame 1, and a flocculant addition pipe 11 is installed on the outer wall of one side of the water collecting frame 1, and the flocculant addition pipe 11 is located between the two partitions 61, and the upper sieve plate 62 is inclined from the inner side of the water collecting frame 1 to the outer side. Whenever the partition 61 and the upper sieve plate 62 rotate to the position of the slag discharge port 13 on the top of the water collecting frame 1, the upper sieve plate 62 can be moved by sliding the inclined surface or manually cleaning. Large pieces of minced meat, bone residue and fat are screened out to avoid clogging the flocculation space at the lower end of the water collecting frame 1. After the flocculation is completed, the lower screen plate 63 descends to squeeze the sediment in the internal space of the partition 61 downward until it is lower than the position of the through hole 64, so as to separate the sediment from the supernatant and send the blood water into the anaerobic reactor 2. The sealing plate 12 is opened regularly by manual or electromagnetic drive to clean out the sediment compressed at the bottom of the lower screen plate 63. The position where sewage is sent in cannot be close to the slag discharge port 13 and the flocculant addition pipe 11. Whenever the screening component 6 rotates to the position of the flocculant addition pipe 11, flocculant is added to the inside of the two partitions 61 to produce sediment.

[0035] When the device is used, beef washing water is fed into the water collecting frame 1 from one side of the upper end, and the blood water flows directly into the space between the two partitions 61 of the lower layer through the screening of the upper sieve plate 62. The motor 51 drives the gear 52 to rotate, and the gear 52 meshes with the gear ring to drive the internal partition 61, the upper sieve plate 62 and the lower sieve plate 63 of the water collecting frame 1 to move along the inside of the water collecting frame 1, thereby dividing the water collecting frame 1 into a plurality of chambers. Each chamber receives beef washing water in opposition and performs a separate flocculation and sedimentation treatment, thereby improving the efficiency of blood water treatment and reducing the waiting time. The electric push rod 71 drives the top ring 72 The top ring 72 descends, one end of the top ring 72 descends to pull the two-way telescopic plate 75 to rotate, and the lower screen plate 63 is driven downward by the vertical rod 73 to push the impurities generated by the flocculation to the lower end of the through hole 64. The rotation of the two-way telescopic plate 75 takes the middle as the center point and rotates around the mounting frame 74. The other end of the two-way telescopic plate 75 drives the connecting ring 77 to rise synchronously, which is equivalent to the seesaw principle. The connecting ring 77 pulls the plug rod 78 out of the rotating plate 22 and inserts it into the socket of the horizontal plate 54. At this time, the horizontal plate 54 and the rotating plate 22 are equivalent to plug-in locking. When the driving component 5 drives the horizontal plate 54 to rotate, The rotating plate 22 and the blocking block 23 will rotate synchronously to open the through hole 64 for entering the anaerobic reactor 2. The treated blood water in the water collecting frame 1 enters the anaerobic reactor 2 through the through hole 64, and is successively sent to the aerobic reactor 3 and the disinfection tank 4 for multi-stage sewage treatment to remove organic matter and impurities in the blood water. When the partition plate 61 and the upper screen plate 62 rotate to the position of the slag discharge port 13 at the top of the water collecting frame 1, the upper screen plate 62 can be sieved out by sliding on the inclined surface or manually cleaning to avoid clogging the lower end of the water collecting frame 1. Flocculation space, after flocculation is completed, the lower sieve plate 63 descends to squeeze the sediment in the internal space of the partition 61 downward until it is below the position of the through hole 64, so as to separate the sediment from the supernatant and send the blood water into the anaerobic reactor 2. The sealing plate 12 is opened regularly by manual or electromagnetic drive to clean out the sediment compressed at the bottom of the lower sieve plate 63. The position where sewage is sent in cannot be close to the slag discharge port 13 and the flocculant addition pipe 11. Whenever the screening component 6 rotates to the position of the flocculant addition pipe 11, flocculant is added to the inside of the two partitions 61 to produce sediment.

[0036] The basic principles and main features of the present invention and the advantages of the present invention are shown and described above. For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-mentioned exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention.

[0037] In addition, it should be understood that although the present specification is described according to implementation modes, not every implementation mode contains only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A beef washing water purification device, comprising a water collecting frame (1) and a linkage assembly, characterized in that: The bottom of the water collecting frame (1) is fixed on the ground by means of a support, and an anaerobic reactor (2) is arranged in the center area of ​​the water collecting frame (1), a connecting layer (21) is arranged on the periphery of the top of the anaerobic reactor (2), and the connecting layer (21) is fixedly connected to the inner outer wall of the water collecting frame (1), a screening assembly (6) is arranged in the water collecting frame (1), and the screening assembly (6) comprises a partition (61), a plurality of partitions (61) are equidistantly inserted and slidably connected inside the water collecting frame (1), and both sides of the partitions (61) slide along the inner walls of both sides of the water collecting frame (1), an upper sieve plate (62) is fixed between adjacent partitions (61), a plurality of connecting pipes are connected between the top of the anaerobic reactor (2) and the connecting layer (21), and the water collecting frame (1) and the connecting layer (21) are connected to each other. A through hole (64) is provided at a position corresponding to the connecting pipe at the connection of the two layers (21), the through hole (64) is arranged between the two groups of partitions (61), a block (23) is slidably installed inside the connection layer (21) at a position corresponding to each group of through holes (64) and the connecting pipe, a driving assembly (5) is provided on the outside of the water collecting frame (1), the driving assembly (5) comprises a gear ring (53), a gear ring (53) is rotatably installed on the outside of the top of the water collecting frame (1) through a bearing, the partition (61) is fixedly connected to the gear ring (53), and the gear ring (53) drives the upper screen plate (62) and the block (23) to rotate, and a transverse plate (54) is fixed on the inside of the gear ring (53) at a position corresponding to the top of the partition (61), and the transverse plate (54) is fixedly connected to the partition (61). The screening assembly (6) further comprises a lower screen plate (63), the lower screen plate (63) slides along the two side partitions (61), and a vertical rod (73) is fixed to one end of the lower screen plate (63) away from the through hole (64), and the top of the vertical rod (73) slides through the upper screen plate (62), the linkage assembly (7) further comprises a top ring (72), the top of the water collecting frame (1) is located at a position where the vertical rod (73) passes through, an electric push rod (71) is fixed on the surface of the gear ring (53), and the extended end of the electric push rod (71) is fixedly connected to the top ring (72), a rotating plate (22) is rotatably mounted on the top of the connecting layer (21) through a bearing, the blocking block (23) is fixed to the rotating plate (22), and the blocking block (23) is fixed to the rotating plate (22). 3) A plug rod (78) is slidably inserted at the top, and a collar (79) is fixed on the surface of the plug rod (78) passing through the rotating plate (22), a spring (710) is equidistantly fixed on the bottom of the collar (79), and the other end of the spring (710) is fixedly connected to the rotating plate (22), a plug hole is opened at the position corresponding to the plug rod (78) of the horizontal plate (54), and the plug rod (78) can be slidably inserted into the plug hole, a connecting ring (77) is provided on the top of the connecting layer (21) and located on the inner side of the plug rod (78), and the collar (79) is slidably sleeved on the surface of the connecting ring (77), the top of the connecting ring (77) is connected to a two-way telescopic plate (75) through a rotating seat, and the other end of the two-way telescopic plate (75) is rotatably mounted with a sliding frame (76),The sliding frame (76) is slidably sleeved on the surface of the top ring (72).

2. The beef washing water purification device according to claim 1, characterized in that: An aerobic reactor (3) is provided on the outside of the water collecting frame (1), and the discharge port of the anaerobic reactor (2) is connected to the aerobic reactor (3) through a pipeline. A disinfection pool (4) is provided on the other side of the aerobic reactor (3), and the water inlet of the disinfection pool (4) is connected to the aerobic reactor (3) through a pipeline. A discharge port is provided at the bottom of the disinfection pool (4).

3. The beef washing water purification device according to claim 1, characterized in that: The driving assembly (5) further comprises a motor (51), the motor (51) being fixed on the outside of the water collecting frame (1), and a gear (52) being fixed on the output end of the motor (51), the gear (52) being meshingly connected with a gear ring (53).

4. The beef washing water purification device according to claim 1, characterized in that: A slag discharge port (13) is provided on the top outer wall of the water collecting frame (1), and the slag discharge port (13) is parallel to the bottom of the upper sieve plate (62), and the upper sieve plate (62) is inclined from the inside of the water collecting frame (1) toward the outside.

5. The beef washing water purification device according to claim 1, characterized in that: A mounting frame (74) is fixed at a position on the top of the anaerobic reactor (2) corresponding to the bidirectional telescopic plate (75), and the mounting frame (74) is rotatably connected to both sides of the middle of the bidirectional telescopic plate (75).

6. The beef washing water purification device according to claim 4, characterized in that: A sealing plate (12) is provided on the surface of the water collecting frame (1) corresponding to the two groups of partitions (61), and a flocculant addition pipe (11) is installed on the outer wall of one side of the water collecting frame (1), and the flocculant addition pipe (11) is located between the two partitions (61).

Citation Information

Patent Citations

  • Wastewater purification device for aquaculture

    CN118579889A

  • Boiler sewage treatment equipment and method capable of reducing pollution discharge rate

    CN118702251A

  • Farm sewage purification device

    CN212770359U

  • Domestic sewage treatment reaction tank suitable for intermittent discharge

    CN216404057U