Adsorption treatment device for removing earthy smell of beet roots

The beetroot de-soiling adsorption treatment device, which integrates a cleaning production line, a steel mesh conveyor belt, and a spray rinsing component, solves the problem of lack of continuity and systematicness in the beetroot processing, and achieves efficient, end-to-end beetroot cleaning and de-soiling effects.

CN224112081UActive Publication Date: 2026-04-14SHANGHAI SU NONG BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-06
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The existing process for removing the earthy smell from beetroots lacks continuity and systematicity, making it difficult to form an efficient assembly line operation, which affects processing efficiency and product quality.

Method used

A beetroot de-soiling adsorption treatment device is designed. By integrating a cleaning production line assembly, a steel mesh conveyor belt assembly, and a spray rinsing assembly, the device achieves fully automated processing of beetroots throughout the entire process, including preliminary cleaning, de-soiling adsorption, and adsorbent cleaning. The multiple undulating paths of the steel mesh conveyor belt and the spray nozzles of the spray swing unit cover the entire surface to ensure thorough cleaning and adsorption.

Benefits of technology

It achieves fully automated connection of beetroot from feeding to discharging, improves the efficiency of cleaning and removing earthiness, avoids the accumulation and stagnation of beetroot, solves the problem of cleaning blind spots in traditional processing, and ensures efficient cleaning of beetroot.

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Abstract

The utility model discloses an adsorption treatment device for removing earthy smell of beet roots, which relates to the technical field of beet root processing, and adopts the technical scheme that the adsorption treatment device comprises a recycling pool assembly, a cleaning assembly line assembly is connected in the recycling pool assembly, a steel mesh conveying belt assembly is connected in the cleaning assembly line assembly, and a spraying and flushing assembly is arranged at the top of the cleaning assembly line assembly. The earthy smell removing adsorption treatment device for the beet roots has the beneficial effects that links such as the preliminary cleaning tank, the earthy smell removing adsorption tank, the adsorbate flushing tank and the spraying flushing assembly are integrated on one production line, and through continuous operation of the steel mesh conveying belt assembly, the earthy smell removing adsorption tank and the adsorbate flushing tank can be recycled; full-process automatic connection of beet roots from feeding to discharging is achieved, the problem of low efficiency of traditional distributed treatment is avoided, an electric push rod of the spraying swing unit drives a toothed plate, a gear drives a spraying pipe to swing left and right, water flow sprayed out of a spraying head covers the whole surfaces of the beet roots, and the problem of cleaning blind areas of traditional fixed spraying is solved.
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Description

Technical Field

[0001] This utility model relates to the field of beet root processing technology, specifically to a beet root desoiling adsorption treatment device. Background Technology

[0002] Beetroot, as an important economic crop and food ingredient, is widely used in food processing, sugar refining and other industries due to its rich content of vitamins, minerals and dietary fiber. During the processing of beetroot, the soil attached to its surface and its unique earthy smell can seriously affect the quality and taste of the processed products. Therefore, cleaning and removing the earthy smell from beetroot is a key step before processing.

[0003] In the current process of removing soil odor from beetroots, most companies still use relatively traditional methods. Traditional processes are often fragmented, lacking continuity and systematicity, making it difficult to form an efficient assembly line operation. Therefore, there is a need for a beetroot soil odor removal adsorption treatment device that uses a steel mesh conveyor belt to transport beetroots and combines soil washing, soil odor removal adsorption, and adsorbent washing to improve beetroot processing efficiency and ensure product quality. Utility Model Content

[0004] To address this issue, this invention provides a beetroot desoiling and adsorption treatment device. By combining a cleaning assembly line, a steel mesh conveyor belt, and a spray rinsing assembly, it solves the problem that traditional processing procedures are often fragmented, lack continuity and systematicity, and are difficult to form a high-efficiency assembly line operation.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a beetroot desoiling adsorption treatment device, comprising a recovery tank assembly, a cleaning production line assembly connected inside the recovery tank assembly, a steel mesh conveyor belt assembly connected inside the cleaning production line assembly, a spray rinsing assembly at the top of the cleaning production line assembly, the recovery tank assembly comprising a recovery tank body, a cover plate fixedly provided at the top of the recovery tank body, and a preliminary recovery tank, an adsorbent recovery tank, and an adsorbent rinsing recovery tank opened inside the recovery tank body, the spray rinsing assembly comprising a fixed horizontal plate, two fixed vertical plates fixedly provided at the bottom of the fixed horizontal plate, the bottoms of the two fixed vertical plates being fixedly connected to the top of the cover plate, a spray unit connected inside the two fixed vertical plates, and a spray swing unit provided at the top of the fixed horizontal plate.

[0006] Preferably, the spray unit includes a high-pressure water pump, which is fixedly mounted on the top of the cover plate. The inlet end of the high-pressure water pump is fixedly connected to an inlet pipe, one end of which extends into the adsorbent rinsing and recovery tank. The outlet end of the high-pressure water pump is fixedly connected to a drain pipe, and the other end of the drain pipe is connected to a spray pipe. A gear is fixedly fitted on the outside of the spray pipe, and a rotary pipe joint is connected between the drain pipe and the outside of the spray pipe.

[0007] Preferably, the spray pipe passes through two fixed vertical plates and is connected to both fixed vertical plates via bearings, and multiple spray heads are connected to the bottom of the spray pipe.

[0008] Preferably, the spray swing unit includes an electric push rod, which is fixedly mounted on the top of the fixed horizontal plate. The output end of the electric push rod passes through the fixed horizontal plate and is slidably connected to it. A toothed plate is fixedly connected to the output end of the electric push rod, and a limiting groove is sleeved on the outside of the toothed plate.

[0009] Preferably, the toothed plate is disposed inside the limiting groove and slidably connected to the limiting groove, the toothed plate meshes with the gear, and the limiting groove is fixedly connected to one side wall of one of the fixed vertical plates.

[0010] Preferably, the cleaning production line assembly includes a cleaning tank body. The top of the cleaning tank body is provided with a preliminary cleaning tank, a soil-removing adsorption tank, and an adsorbent rinsing tank. Side plates are fixed on both sides of the cleaning tank body. One side plate has multiple water level slots on one side, and the other side plate has multiple discharge pipes fixed on one side. Multiple steel mesh conveyor belt limiting rollers are connected to one side of both side plates. Multiple steel mesh conveyor belt limiting rollers are connected between the two side plates. The two side plates are fixed inside the recycling tank body.

[0011] Preferably, the steel mesh conveyor belt assembly includes a steel mesh conveyor belt body, with a drive roller and a driven roller respectively inserted at both ends of the steel mesh conveyor belt body. The drive roller and the driven roller are driven and connected through the steel mesh conveyor belt body. Both the drive roller and the driven roller pass through two side plates and are connected to the two side plates through bearings. A servo motor is provided at one end of the drive roller. The servo motor is fixedly connected to one of the side plates. The output end of the servo motor is fixedly connected to one end of the drive roller. Multiple pusher plates are fixedly connected to the outside of the steel mesh conveyor belt body.

[0012] Preferably, the steel mesh conveyor belt body is respectively sleeved on the outside of multiple steel mesh conveyor belt limiting roller one and steel mesh conveyor belt limiting roller two, and is slidably connected to multiple steel mesh conveyor belt limiting roller one and steel mesh conveyor belt limiting roller two.

[0013] The present invention has the following advantages:

[0014] By integrating the preliminary cleaning tank, the soil removal adsorption tank, the adsorbent rinsing pool, and the spray rinsing components into a single production line, and through the continuous operation of the steel mesh conveyor belt assembly, the entire process of beetroot from feeding to discharging is automated, avoiding the inefficiency of traditional decentralized processing.

[0015] The steel mesh conveyor belt, through the cooperation of limit roller one and limit roller two, forms a wave-shaped path of "sinking-lifting", which allows the beetroots to be immersed in the liquid in each tank multiple times, ensuring that the soil, earthy smell substances and residual adsorbents are fully cleaned and adsorbed. As the pusher plate on the outside of the steel mesh conveyor belt moves with the conveyor belt, it can push the beetroots to roll in the liquid, increasing the contact area between the beetroots and the cleaning liquid and adsorption liquid, improving the cleaning and earthy smell removal efficiency, and preventing the beetroots from accumulating and stagnating.

[0016] The electric push rod of the spray swing unit drives the toothed plate, which in turn drives the spray pipe to swing left and right through the gears, so that the water sprayed from the spray head covers the entire surface of the beet root, solving the problem of blind spots in the cleaning of traditional fixed spraying. Attached Figure Description

[0017] To more clearly illustrate the embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings in the following description are merely exemplary, and those skilled in the art can derive other embodiments based on the provided drawings without creative effort.

[0018] The structures, proportions, sizes, etc. illustrated in this specification are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed herein, and are not intended to limit the implementation conditions of this utility model. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size, without affecting the effects and objectives that this utility model can produce, should still fall within the scope of the technical content disclosed in this utility model.

[0019] Figure 1 The front perspective view provided for this utility model;

[0020] Figure 2 A partial rear-view perspective view provided for this utility model;

[0021] Figure 3 Partial exploded perspective view provided for this utility model;

[0022] Figure 4 A partial front perspective view provided for this utility model;

[0023] Figure 5A perspective view of the spray rinsing assembly provided by this utility model;

[0024] Figure 6 Exploded perspective view of the spray flushing assembly provided by this utility model;

[0025] Figure 7 Provided by this utility model Figure 6 Enlarged view of point A in the middle.

[0026] In the diagram: 1. Recycling tank assembly, 11. Recycling tank body, 12. Preliminary recycling tank, 13. Adsorbent recycling tank, 14. Adsorbent rinsing recycling tank, 2. Cover plate, 3. Cleaning production line assembly, 31. Cleaning tank body, 32. Preliminary cleaning tank, 33. Soil removal adsorption tank, 34. Adsorbent rinsing tank, 35. Side plate, 36. Water level slot, 37. Steel mesh conveyor belt limiting roller one, 38. Steel mesh conveyor belt limiting roller two, 39. Discharge pipe, 4. Steel mesh conveyor belt assembly, 41. Steel mesh conveyor belt body, 42. Drive roller, 43. Driven roller, 44. Servo motor, 5. Spray rinsing assembly, 51. Fixed horizontal plate, 52. Fixed vertical plate, 53. Spray unit, 531. High-pressure water pump, 532. Inlet pipe, 533. Drain pipe, 534. Rotary pipe joint, 535. Spray pipe, 536. Gear, 54. Spray swing unit, 541. Electric push rod, 542. Tooth plate, 543. Limiting slot. Detailed Implementation

[0027] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0028] See attached document Figure 1 - Appendix Figure 7 This utility model provides a beetroot desoiling adsorption treatment device, including a recovery tank assembly 1, a washing production line assembly 3 connected inside the recovery tank assembly 1, a steel mesh conveyor belt assembly 4 connected inside the washing production line assembly 3, a spray rinsing assembly 5 at the top of the washing production line assembly 3, the recovery tank assembly 1 including a recovery tank body 11, a cover plate 2 fixedly provided at the top of the recovery tank body 11, a preliminary recovery tank 12, an adsorbent recovery tank 13, and an adsorbent rinsing recovery tank 14 opened inside the recovery tank body 11, the spray rinsing assembly 5 including a fixed horizontal plate 51, two fixed vertical plates 52 fixedly provided at the bottom of the fixed horizontal plate 51, the bottom of the two fixed vertical plates 52 being fixedly connected to the top of the cover plate 2, a spray unit 53 connected inside the two fixed vertical plates 52, and a spray swing unit 54 provided at the top of the fixed horizontal plate 51;

[0029] In this implementation scheme, to achieve the purpose of cleaning beetroots in the production line, it is achieved through the coordinated operation of the recovery tank assembly 1, the cleaning production line assembly 3, the steel mesh conveyor belt assembly 4, and the spray rinsing assembly 5. The recovery tank body 11 in the recovery tank assembly 1 has a preliminary recovery tank 12, an adsorbent recovery tank 13, and an adsorbent rinsing recovery tank 14, which can collect the liquid overflowing or discharged from the preliminary cleaning tank 32, the de-soil adsorption tank 33, and the adsorbent rinsing tank 34 in the cleaning production line assembly 3, thereby realizing the recycling of water resources. In the cleaning production line assembly 3, the preliminary cleaning tank 32, the de-soil adsorption tank 33, and the adsorbent rinsing tank 34 are arranged linearly, and work with the steel mesh conveyor belt assembly 4 to complete the connection of the beetroot processing steps. The steel mesh conveyor belt body 41 of the steel mesh conveyor belt assembly 4 has a drive roller 42, a driven roller 43, and multiple... Under the action of the steel mesh conveyor belt limit roller 1 37 and steel mesh conveyor belt limit roller 2 38, a multi-undulating conveying path is formed. The servo motor 44 drives the steel mesh conveyor belt body 41 to operate. The pusher plate on its outside pushes the beetroots into each tank in sequence to complete the mud washing, soil removal and adsorption, and adsorbent washing. After the beetroots have completed the tank cleaning process, the spray washing component 5 plays its role. The high-pressure water pump 531 of the spray unit 53 draws water from the adsorbent washing and recovery tank 14 and washes the beetroots a second time through the spray pipe 535 and the spray head. The electric push rod 541 of the spray swing unit 54 drives the toothed plate 542 to drive the gear 536, so that the spray pipe 535 swings left and right to expand the washing range and ensure that the beetroots are cleaned in all directions. Thus, the beetroots are cleaned in a production line manner with close connection between each processing link from input to output.

[0030] To achieve the purpose of rinsing the beetroots after adsorption to remove the earthy smell, this device adopts the following technical solution: The spray unit 53 includes a high-pressure water pump 531, which is fixedly mounted on the top of the cover plate 2. The inlet end of the high-pressure water pump 531 is fixedly connected to an inlet pipe 532, one end of which extends into the adsorbent rinsing and recovery tank 14. The outlet end of the high-pressure water pump 531 is fixedly connected to a drain pipe 533, the other end of which is connected to a spray pipe 535. A gear 536 is fixedly fitted on the outside of the spray pipe 535. A rotary pipe joint 534 connects the drain pipe 533 and the outside of the spray pipe 535. The spray pipe 535 passes through... Two fixed vertical plates 52 are connected to each other via bearings. Multiple spray heads are connected to the bottom of the spray pipe 535. The spray swing unit 54 includes an electric push rod 541, which is fixedly mounted on the top of the fixed horizontal plate 51. The output end of the electric push rod 541 passes through the fixed horizontal plate 51 and is slidably connected to it. A toothed plate 542 is fixedly connected to the output end of the electric push rod 541. A limiting groove 543 is sleeved on the outside of the toothed plate 542, and the toothed plate 542 is located inside the limiting groove 543 and slidably connected to it. The toothed plate 542 meshes with a gear 536. The limiting groove 543 is fixed to one side wall of one of the fixed vertical plates 52. When the beetroot is conveyed out of the adsorbent rinsing tank 34 and enters the area below the spray rinsing assembly 5, the high-pressure water pump 531 starts, drawing rinsing water from the adsorbent rinsing and recovery tank 14 through the inlet pipe 532. This water is then transported to the spray pipe 535 through the drain pipe 533 and sprayed from multiple spray nozzles at the bottom of the spray pipe 535 to rinse the beetroot again. Simultaneously, the electric push rod 541 starts, its output end driving the toothed plate 542 to reciprocate within the limiting groove 543. Because the toothed plate 542 meshes with the gear 536, it causes the spray pipe 535 to swing left and right between the two fixed vertical plates 52, allowing the water sprayed from the spray nozzles to... The system can cover all parts of the beetroot, further improving the rinsing effect. Finally, the thoroughly rinsed beetroot is transported to the end of the equipment along the steel mesh conveyor belt body 41, completing the entire process of removing soiliness and adsorption. At the same time, the drain pipe 533 and the spray pipe 535 are connected through a rotary pipe joint 534, so that the connection between the spray pipe 535 and the drain pipe 533 will not interfere when the spray pipe 535 swings (the rotary pipe joint is a rotating mechanical sealing device, mainly used for conveying and discharging heat transfer media such as steam, water, heat transfer oil, hydraulic oil and coolant between fixed pipelines and rotating equipment. It can achieve 360° rotation to convey media while maintaining good sealing performance).

[0031] To achieve the goal of conveying beetroots through the preliminary cleaning tank 32, the soil-removing adsorption tank 33, and the adsorbent rinsing tank 34 using the steel mesh conveyor belt body 41, the following technical solution is adopted: The cleaning production line assembly 3 includes a cleaning tank body 31. The top of the cleaning tank body 31 is provided with a preliminary cleaning tank 32, a soil-removing adsorption tank 33, and an adsorbent rinsing tank 34. Side plates 35 are fixed on both sides of the cleaning tank body 31. One side plate 35 has multiple water level slots 36 on one side, and the other side plate 35 has multiple discharge pipes 39 fixed on one side. Multiple steel mesh conveyor belt limiting rollers 37 are connected to one side of both side plates 35. Multiple steel mesh conveyor belt limiting rollers 38 are connected between the two side plates 35. The two side plates 35 are fixedly installed inside the recycling tank body 11. The steel mesh conveyor belt assembly 4 includes a steel mesh conveyor belt body 41. A drive roller 42 and a driven roller 43 are respectively inserted into both ends of the steel mesh conveyor belt body 41. The drive roller 42 and the driven roller 43 are driven and connected through the steel mesh conveyor belt body 41. Both the drive roller 42 and the driven roller 43 pass through the two side plates 35 and are connected to the two side plates 35 through bearings. A servo motor 44 is provided at one end of the drive roller 42. The servo motor 44 is fixedly connected to one of the side plates 35. The output end of the servo motor 44 is fixedly connected to one end of the drive roller 42. The steel mesh conveyor belt body 41... Multiple pusher plates are fixedly connected externally. The steel mesh conveyor belt body 41 is respectively sleeved on the outside of multiple steel mesh conveyor belt limit rollers 1 37 and steel mesh conveyor belt limit rollers 2 38, and is slidably connected to the multiple steel mesh conveyor belt limit rollers 1 37 and steel mesh conveyor belt limit rollers 2 38. When cleaning beetroots, after the servo motor 44 is started, the drive roller 42 drives the steel mesh conveyor belt body 41 to start running. The beetroots are placed at the starting end of the steel mesh conveyor belt body 41. Under the push of the pusher plates, the beetroots move forward with the steel mesh conveyor belt body 41. When the beetroots enter the preliminary cleaning tank 32, the steel mesh conveyor belt body 41 is surrounded by the steel mesh conveyor belt limit rollers 1 37 and steel mesh conveyor belt limit rollers 2 38. With the help of 38, the beetroot sinks, allowing it to be fully immersed in the cleaning solution of the preliminary cleaning tank 32. Under the soaking of the cleaning solution and the driving force of the steel mesh conveyor belt, most of the surface dirt is washed off. Then, the beetroot continues to move with the steel mesh conveyor belt body 41 and enters the de-soiling adsorption tank 33. In the de-soiling adsorption tank 33, the beetroot is also fully in contact with the adsorption solution under the driving force of the steel mesh conveyor belt. The effective components in the adsorption solution react with the earthy smell substances on the surface of the beetroot, thereby removing the earthy smell. Subsequently, the beetroot is transported to the adsorption rinsing tank 34, where it is once again immersed in the rinsing solution under the driving force of the steel mesh conveyor belt body 41 to wash away the adsorption residue on the surface.

[0032] The usage process of this utility model is as follows: When using this utility model, connect an external power source, and control the liquid volume in the preliminary recovery tank 12, adsorbent recovery tank 13, adsorbent rinsing recovery tank 14, preliminary cleaning tank 32, de-acidification adsorption tank 33, and adsorbent rinsing tank 34 according to the actual situation. Liquid exceeding the water level slot 36 in the preliminary cleaning tank 32, de-acidification adsorption tank 33, and adsorbent rinsing tank 34 will flow out through the water level slot 36 and be discharged into the corresponding preliminary recovery tank 12, adsorbent recovery tank 13, and adsorbent rinsing recovery tank 14. When it is necessary to discharge the liquid in the preliminary recovery tank 12, adsorbent recovery tank 13, and adsorbent rinsing recovery tank 14, open the corresponding discharge pipe 39. The liquid in the preliminary cleaning tank 32, the soil removal adsorption tank 33, and the adsorbent rinsing tank 34 will flow out through the discharge pipe 39 and be discharged into the corresponding preliminary recovery tank 12, adsorbent recovery tank 13, and adsorbent rinsing recovery tank 14. The preliminary recovery tank 12, adsorbent recovery tank 13, and adsorbent rinsing recovery tank 14 are equipped with inlet and outlet pipes according to the actual use. The steel mesh conveyor belt body 41, through the cooperation of multiple steel mesh conveyor belt limiting rollers 1 37 and steel mesh conveyor belt limiting rollers 2 38, presents a multi-undulating structure, so that the steel mesh conveyor belt body 41 can carry the beetroot into the corresponding preliminary cleaning tank 32, soil removal adsorption tank 33, or adsorbent rinsing tank 34 when conveying beetroot.

[0033] During the beetroot cleaning process, after the servo motor 44 starts, the drive roller 42 drives the steel mesh conveyor belt body 41 to start operating. The beetroot is placed at the starting end of the steel mesh conveyor belt body 41. Under the push of the pusher plate, the beetroot moves forward with the steel mesh conveyor belt body 41. When the beetroot enters the preliminary cleaning tank 32, the steel mesh conveyor belt body 41 sinks with the cooperation of the steel mesh conveyor belt limit roller 1 37 and steel mesh conveyor belt limit roller 2 38, so that the beetroot is fully immersed in the cleaning solution of the preliminary cleaning tank 32. Under the soaking of the cleaning solution and the driving of the steel mesh conveyor belt, most of the surface dirt is washed off. Then, the beetroot continues to move with the steel mesh conveyor belt body 41 and enters the de-soiling adsorption tank 33. In the de-soiling adsorption tank 33, the beetroot is also fully in contact with the adsorption solution under the driving of the steel mesh conveyor belt. The effective components in the adsorption solution react with the earthy substances on the surface of the beetroot to remove the earthy smell. Subsequently, the beetroot is transported to the adsorption rinsing tank 34. The beetroot is once again immersed in the rinsing liquid under the drive of the steel mesh conveyor belt body 41 to wash away the residual adsorbents on the surface. After the beetroot is conveyed out of the adsorbent rinsing tank 34, it enters the spray rinsing assembly 5. At this time, the high-pressure water pump 531 starts and draws rinsing water from the adsorbent rinsing recovery tank 14 through the water inlet pipe 532. The water is then transported to the spray pipe 535 through the drain pipe 533 and sprayed out from multiple spray nozzles at the bottom of the spray pipe 535 to rinse the beetroot again. At the same time, the electric push rod 541 starts, and its output end drives the toothed plate 542 to slide back and forth in the limiting groove 543. Since the toothed plate 542 meshes with the gear 536, it drives the spray pipe 535 to swing left and right between the two fixed vertical plates 52, so that the water sprayed from the spray nozzles can cover all parts of the beetroot, further improving the rinsing effect. Finally, the thoroughly rinsed beetroot is transported to the end of the equipment along with the steel mesh conveyor belt body 41, completing the entire desoiling adsorption process.

[0034] The above are merely preferred embodiments of this utility model. Any person skilled in the art may modify this utility model or modify it into an equivalent technical solution using the technical solutions described above. Therefore, any simple modifications or equivalent substitutions made based on the technical solutions of this utility model are within the scope of protection claimed by this utility model.

Claims

1. A beet root de-earthy odour adsorption treatment device comprising a recovery tank assembly (1), characterized in that: The recycling pool assembly (1) is internally connected to a cleaning production line assembly (3), and the cleaning production line assembly (3) is internally connected to a steel mesh conveyor belt assembly (4). The cleaning production line assembly (3) is topped with a spray rinsing assembly (5). The recycling pool assembly (1) includes a recycling pool body (11), and a cover plate (2) is fixedly provided on the top of the recycling pool body (11). The recycling pool body (11) is internally provided with a preliminary recycling tank (12), an adsorbent recycling tank (13), and an adsorbent rinsing recycling tank (14). The spray rinsing assembly (5) includes a fixed horizontal plate (51), and two fixed vertical plates (52) are fixedly provided at the bottom of the fixed horizontal plate (51). The bottoms of the two fixed vertical plates (52) are fixedly connected to the top of the cover plate (2). The two fixed vertical plates (52) are internally connected to a spray unit (53), and a spray swing unit (54) is provided on the top of the fixed horizontal plate (51).

2. A soil off-taste adsorption treatment device for sugar beet roots according to claim 1, characterized in that: The spray unit (53) includes a high-pressure water pump (531), which is fixedly mounted on the top of the cover plate (2). The water inlet end of the high-pressure water pump (531) is fixedly connected to a water inlet pipe (532). One end of the water inlet pipe (532) extends into the interior of the adsorbent washing and recovery tank (14). The water outlet end of the high-pressure water pump (531) is fixedly connected to a drain pipe (533). The other end of the drain pipe (533) is connected to a spray pipe (535). A gear (536) is fixedly fitted on the outside of the spray pipe (535). A rotary pipe joint (534) is connected to the outside of the drain pipe (533) and the spray pipe (535).

3. A soil off-taste adsorption treatment device for sugar beet roots according to claim 2, characterized in that: The spray pipe (535) passes through two fixed vertical plates (52) and is connected to both fixed vertical plates (52) via bearings. Multiple spray heads are connected to the bottom of the spray pipe (535).

4. A soil off-taste adsorption treatment device for sugar beet roots according to claim 1, characterized in that: The spray swing unit (54) includes an electric push rod (541), which is fixedly mounted on the top of the fixed horizontal plate (51). The output end of the electric push rod (541) passes through the fixed horizontal plate (51) and is slidably connected to the fixed horizontal plate (51). A toothed plate (542) is fixedly connected to the output end of the electric push rod (541), and a limiting groove (543) is sleeved on the outside of the toothed plate (542).

5. A soil off-taste adsorption treatment device for sugar beet roots according to claim 4, characterized in that: The toothed plate (542) is located inside the limiting groove (543) and is slidably connected to the limiting groove (543). The toothed plate (542) meshes with the gear (536). The limiting groove (543) is fixedly connected to one side wall of one of the fixed vertical plates (52).

6. The beetroot de-soiling adsorption treatment device according to claim 1, characterized in that: The cleaning production line assembly (3) includes a cleaning tank body (31). The top of the cleaning tank body (31) is provided with a preliminary cleaning tank (32), a soil-removing adsorption tank (33), and an adsorbent rinsing tank (34). Side plates (35) are fixed on both sides of the cleaning tank body (31). One side plate (35) has multiple water level slots (36) on one side, and the other side plate (35) has multiple discharge pipes (39) fixed on one side. Multiple steel mesh conveyor belt limiting rollers (37) are connected to one side of both side plates (35). Multiple steel mesh conveyor belt limiting rollers (38) are connected between the two side plates (35). The two side plates (35) are fixed inside the recycling tank body (11).

7. The beetroot de-soiling adsorption treatment device according to claim 1, characterized in that: The steel mesh conveyor belt assembly (4) includes a steel mesh conveyor belt body (41). A drive roller (42) and a driven roller (43) are respectively inserted at both ends of the steel mesh conveyor belt body (41). The drive roller (42) and the driven roller (43) are driven and connected through the steel mesh conveyor belt body (41). The drive roller (42) and the driven roller (43) both pass through two side plates (35) and are connected to the two side plates (35) through bearings. A servo motor (44) is provided at one end of the drive roller (42). The servo motor (44) is fixedly connected to one of the side plates (35). The output end of the servo motor (44) is fixedly connected to one end of the drive roller (42). Multiple pusher plates are fixedly connected to the outside of the steel mesh conveyor belt body (41).

8. The beetroot de-soiling adsorption treatment device according to claim 7, characterized in that: The steel mesh conveyor belt body (41) is respectively sleeved on the outside of multiple steel mesh conveyor belt limit roller one (37) and steel mesh conveyor belt limit roller two (38), and is slidably connected to multiple steel mesh conveyor belt limit roller one (37) and steel mesh conveyor belt limit roller two (38).