A microcapsule fungicide production device for soil remediation

By designing a microcapsule bacterial agent production device, utilizing elliptical discs and adjustable toothed discs for vibration filtration, combined with a collection hood and discharge pipe structure, the problems of insufficient filtration and clogging of microcapsule bacterial agents were solved, achieving safe and efficient production of soil remediation agents.

CN117443060BActive Publication Date: 2026-03-17SHANDONG NUOHUA PESTICIDE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-18
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In the current production process of soil remediation agents, the microcapsule bacterial agent is not filtered sufficiently, resulting in the volatilization of toxic gases, easy clogging of the filter port, and the inability to discharge too much material at one time in a timely manner.

Method used

A microcapsule bacterial agent production device was designed. The device uses an elliptical disc to drive a vertical rod and an adjusting toothed disc to vibrate the material box, thereby achieving full filtration of raw materials. The device also utilizes the interconnected structure of the collection hood and the discharge pipe to achieve timed material discharge and automatic clearing of blockages.

Benefits of technology

It achieves thorough filtration of microencapsulated bacterial agents, avoids the volatilization of toxic gases, prevents filter clogging, ensures timely material discharge, and improves production safety and efficiency.

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Abstract

This invention relates to the field of microencapsulated bacterial agent production technology, and discloses a microencapsulated bacterial agent production device for soil remediation. A snap-fit ​​valve is engaged at the connection between the collection hood and the discharge pipe. A sliding seat is fixedly installed at the outer end of the snap-fit ​​valve. A roller rod is provided inside the sliding seat and below the collection hood. The sliding seat is slidably installed inside a sealed cavity, and a top rod is slidably installed at the top of the sealed cavity. After the raw materials for microencapsulated bacterial agent production enter the collection hood through the filter port at the bottom of the material box, the increasing weight compresses the collection hood downwards. The curved surface of the collection hood drives the roller rod and the sliding seat to move to both sides. The sliding seat pulls the snap-fit ​​valve, allowing the collection hood to connect with the discharge pipe and begin discharging. The overall structure prevents blockage of the discharge pipe due to excessive material discharge at one time while cleaning the filter port, and allows for timed discharge.
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Description

Technical Field

[0001] This invention relates to the field of microencapsulated bacterial agent production technology, specifically to a microencapsulated bacterial agent production device for soil remediation agents. Background Technology

[0002] Currently, the role of soil remediation agents is gradually being recognized by farmers. However, existing products still have many shortcomings. Soil remediation agents often require the addition of microencapsulated microbial agents. During the production process, the microencapsulated microbial agents undergo internal polymerization reactions, requiring specific anti-clogging filtration equipment for processing. However, during the filtration of microencapsulated microbial agent raw materials, it is impossible to ensure sufficient filtration, leading to the easy volatilization of toxic gases generated during filtration, which affects the external working environment. Furthermore, the filter ports cannot be automatically cleaned during the filtration process, and impurities can easily cause blockages. Additionally, if too much material is discharged from the tank at once after filtration, the filtered microencapsulated microbial agent raw materials cannot be discharged in a timely manner. Summary of the Invention

[0003] (a) Technical problems to be solved

[0004] To address the shortcomings of existing technologies, this invention provides a microcapsule bacterial agent production device for soil remediation agents. It has advantages such as thorough filtration of microcapsule bacterial agent raw materials and purification of the air inside the tank, solving the problems of easy clogging of the filter port and failure to discharge excessive material at one time.

[0005] (II) Technical Solution

[0006] To achieve the above objectives, the present invention provides the following technical solution: a microcapsule bacterial agent production device for soil remediation agents, comprising a tank, a tank cover movably installed at the top of the tank, and a material box slidably installed inside the tank. Adjusting toothed discs are engaged on both the left and right sides of the material box, and a filter port is provided at the bottom of the material box. A corresponding collection cover is provided below the filter port.

[0007] Preferably, a vertical rod is movably mounted on the rear surface of the adjusting gear disc, an elliptical disc is attached to the surface of the vertical rod, a top wheel frame is provided above the top of the adjusting gear disc, a piston plate is attached above the top wheel frame, the piston plate is slidably mounted inside the absorption cylinder, and the absorption cylinder is fixedly connected to the left and right sides of the material box.

[0008] Preferably, toothed blocks corresponding to the adjusting toothed disc are fixedly installed on both the left and right sides of the material box, an inclined block corresponding to the piston plate is provided at the top of the top wheel frame, a roller corresponding to the elliptical disc is movably installed on the surface of the vertical rod, and a one-way valve is provided at the opening of the absorption cylinder. When the elliptical disc contacts the roller on the surface of the vertical rod, it drives the adjusting toothed disc on the rear side of the vertical rod to swing. After the adjusting toothed disc engages with the toothed blocks on both sides of the material box, it drives the material box to vibrate inside the tank, so that the microcapsule bacterial agent raw material is in motion when filtered through the filter port inside the material box. At the same time, when the adjusting toothed disc swings, it drives the top wheel frame upward. After the inclined block on the surface of the top wheel frame contacts the piston plate, it pulls the piston plate inside the absorption cylinder, thereby volatilizing the toxic gases generated during the filtration of the microcapsule bacterial agent raw material.

[0009] Preferably, a discharge pipe is movably connected to the bottom of the collection hood, and a snap-fit ​​valve is snapped at the connection between the collection hood and the discharge pipe. A sliding seat is fixedly installed on the outer end of the snap-fit ​​valve. A roller rod is provided inside the sliding seat and below the collection hood. The sliding seat is slidably installed inside the sealing cavity. A top rod is slidably installed on the top of the sealing cavity. A telescopic cover plate is attached to the inner end of the top rod. Protrusions are evenly distributed on the upper surface of the telescopic cover plate.

[0010] Preferably, the telescopic cover is symmetrically arranged with the center of the collection hood as the reference, and the telescopic cover is attached to the lower surface of the material box. The roller rod is slidably installed inside the tank and passes through the inside of the sliding seat. After the microcapsule bacterial agent raw material enters the tank, it enters the collection hood through the filter port at the bottom of the material box. The weight continues to increase, which compresses the collection hood to move downward. The arc surface of the collection hood drives the roller rod and the sliding seat to move to both sides. The sliding seat pulls the snap valve, so that the collection hood is connected to the discharge pipe and the material is discharged.

[0011] Preferably, the material box and the collection cover are arranged vertically and vertically, the discharge pipe and the collection cover are interconnected, and the lower surface of the telescopic cover is provided with a protruding rod corresponding to the top rod.

[0012] (III) Beneficial Effects

[0013] Compared with the prior art, the present invention provides a microcapsule bacterial agent production device for soil remediation agents, which has the following beneficial effects:

[0014] 1. This microcapsule bacterial agent production device for soil remediation uses a drive shaft to rotate an elliptical disc. When the elliptical disc contacts the rollers on the surface of the vertical rod, it drives the adjusting toothed disc on the rear side of the vertical rod to swing. After the adjusting toothed disc meshes with the toothed blocks on both sides of the material box, it drives the material box to vibrate inside the tank. This keeps the microcapsule bacterial agent raw material in motion when it is filtered through the filter port inside the material box. At the same time, when the adjusting toothed disc swings, it drives the top wheel frame upward. After the inclined block on the surface of the top wheel frame contacts the piston plate, it pulls the piston plate to move inside the absorption cylinder. This achieves full filtration of the microcapsule bacterial agent raw material while purifying the air inside the tank, preventing the volatilization of toxic gases generated during the filtration of the microcapsule bacterial agent raw material.

[0015] 2. This microcapsule bacterial agent production device for soil remediation involves the microcapsule bacterial agent raw material entering the collection hood through the filter port at the bottom of the material box. The increasing weight compresses the collection hood downwards, and the arc surface of the collection hood drives the roller rod and sliding seat to move to both sides. The sliding seat pulls the snap-fit ​​valve, connecting the collection hood with the discharge pipe and starting to discharge the material. Simultaneously, the sliding seat pushes the end of the top rod in the sealed cavity, causing the telescopic cover to move inwards. When the material box moves downwards, the protrusion on the surface of the telescopic cover aligns with the filter port, clearing the blockage inside the filter port and causing it to fall onto the telescopic cover. The overall structure can prevent blockage of the discharge pipe caused by excessive material discharge at one time while cleaning the filter port, and can discharge the microcapsule bacterial agent raw material at regular intervals. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the main structure of the tank body of the present invention;

[0017] Figure 2 This is a cross-sectional view of the internal structure of the tank body of the present invention;

[0018] Figure 3 This is a schematic diagram of the connection between the material box and the adjusting gear plate of the present invention;

[0019] Figure 4 This is a schematic diagram of the connection between the discharge pipe and the snap-fit ​​valve of the present invention.

[0020] The components are: 1. Tank body; 2. Tank cover; 3. Material box; 4. Adjusting gear plate; 5. Filter port; 6. Collection hood; 7. Vertical rod; 8. Elliptical disc; 9. Top wheel frame; 10. Piston plate; 11. Absorption cylinder; 12. Discharge pipe; 13. Snap-fit ​​valve; 14. Sliding seat; 15. Attaching wheel rod; 16. Sealing cavity; 17. Top rod; 18. Telescopic cover plate; 19. Protrusion. Detailed Implementation

[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0022] Please see Figure 1-4 A microcapsule bacterial agent production device for soil remediation includes a tank 1, a tank cover 2 movably mounted on the top of the tank 1, and a material box 3 slidably mounted inside the tank 1. Adjusting gear discs 4 are engaged on both the left and right sides of the material box 3. A vertical rod 7 is movably mounted on the rear surface of the adjusting gear disc 4, and an elliptical disc 8 is attached to the surface of the vertical rod 7. A top wheel frame 9 is positioned above the top of the adjusting gear disc 4, and a piston plate 10 is attached to the top of the top wheel frame 9. The piston plate 10 is slidably mounted inside an absorption cylinder 11. The absorption cylinders 11 are fixedly connected to the left and right sides of the material box 3. Tooth blocks corresponding to the adjusting gear disc 4 are fixedly mounted on both the left and right sides of the material box 3. The top of the top wheel frame 9 is equipped with a tooth block corresponding to the piston plate 4. The inclined block corresponding to plate 10, the roller corresponding to elliptical disk 8 is movably installed on the surface of vertical rod 7, and the opening of absorption cylinder 11 is provided with a one-way valve. When elliptical disk 8 contacts the roller on the surface of vertical rod 7, it drives the adjusting toothed disc 4 on the rear side of vertical rod 7 to swing. After the adjusting toothed disc 4 meshes with the toothed blocks on both sides of material box 3, it drives material box 3 to vibrate inside tank 1, so that the microcapsule bacterial agent raw material is in motion when filtered through filter port 5 in material box 3. At the same time, when the adjusting toothed disc 4 swings, it drives top wheel frame 9 upward. After the inclined block on the surface of top wheel frame 9 contacts piston plate 10, it pulls piston plate 10 to move inside absorption cylinder 11, thereby volatilizing the toxic gas generated during the filtration of microcapsule bacterial agent raw material.

[0023] A filter port 5 is provided at the bottom of the material box 3, and a corresponding collection hood 6 is provided below the filter port 5. The material box 3 and the collection hood 6 are arranged vertically. A discharge pipe 12 is movably connected to the bottom of the collection hood 6. The discharge pipe 12 and the collection hood 6 are interconnected. A snap-fit ​​valve 13 is snapped at the connection between the collection hood 6 and the discharge pipe 12. A sliding seat 14 is fixedly installed on the outer end of the snap-fit ​​valve 13. A roller rod 15 is provided inside the sliding seat 14 and below the collection hood 6. The roller rod 15 is slidably installed inside the tank body 1 and passes through the inside of the sliding seat 14. The sliding seat 14 is slidably installed inside the sealing cavity 16. A top rod 17 is slidably installed on the top of the sealing cavity 16. A telescopic cover plate 18 is attached to the inner end of the top rod 17. The lower surface of the telescopic cover 18 is provided with a protrusion corresponding to the top rod 17. The telescopic cover 18 is symmetrically arranged with the center of the collection hood 6 as the reference, and the telescopic cover 18 is attached to the lower surface of the material box 3. The upper surface of the telescopic cover 18 is evenly distributed with protrusions 19. After the microcapsule bacterial agent raw material enters the tank 1, it enters the collection hood 6 through the filter port 5 at the bottom of the material box 3. The weight continues to increase, which compresses the collection hood 6 to move downward. The arc surface of the collection hood 6 drives the roller rod 15 and the sliding seat 14 to move to both sides. The sliding seat 14 pulls the snap valve 13, so that the collection hood 6 and the discharge pipe 12 are connected and the material is discharged. At the same time, the sliding seat 14 moves in the sealing cavity 16. Based on the pressure, it pushes the end of the top rod 17, which in turn drives the telescopic cover 18 to move inward.

[0024] In use, after opening the can lid 2, the microcapsule bacterial agent raw material is poured into the material box 3 of the can 1. The drive shaft drives the elliptical disk 8 to rotate. When the elliptical disk 8 contacts the rollers on the surface of the vertical rod 7, it drives the adjusting toothed disk 4 on the rear side of the vertical rod 7 to swing. After the adjusting toothed disk 4 meshes with the toothed blocks on both sides of the material box 3, it drives the material box 3 to vibrate inside the can 1. This keeps the microcapsule bacterial agent raw material in motion during filtration through the filter port 5 inside the material box 3. At the same time, when the adjusting toothed disk 4 swings, it drives the top wheel frame 9 upward. After the inclined block on the surface of the top wheel frame 9 contacts the piston plate 10, it pulls the piston plate 10 to move inside the absorption cylinder 11. This achieves thorough filtration of the microcapsule bacterial agent raw material while purifying the air inside the can 1, preventing the volatilization of toxic gases generated during the filtration of the microcapsule bacterial agent raw material. After the raw materials for the microbial agent enter the collection hood 6 through the filter port 5 at the bottom of the material box 3, the increasing weight compresses the collection hood 6 to move downwards. The arc surface of the collection hood 6 drives the roller rod 15 and the sliding seat 14 to move to both sides. The sliding seat 14 pulls the snap valve 13, allowing the collection hood 6 to communicate with the discharge pipe 12 and begin discharging. At the same time, the sliding seat 14 moves in the sealed cavity 16, and the pressure pushes the end of the top rod 17, which in turn drives the telescopic cover 18 to move inwards. When the material box 3 moves downwards, the protrusion 19 on the surface of the telescopic cover 18 overlaps with the filter port 5, cleaning the blockage inside the filter port 5 and causing it to fall onto the telescopic cover 18. The overall structure can prevent the discharge pipe 12 from becoming blocked due to excessive material discharge at one time while cleaning the filter port 5, and can discharge the microbial agent raw materials at regular intervals.

[0025] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A microencapsulated microbial agent production apparatus for soil remediation agents, comprising a tank body (1), characterized in that: The top end of the tank body (1) is movably mounted with a tank cover body (2), and the inside of the tank body (1) is slidably mounted with a material box (3), both sides of the material box (3) are engaged with an adjusting tooth disc (4), the bottom end of the material box (3) is provided with a filter port (5), and the lower side of the filter port (5) is provided with a corresponding collection cover (6); the rear surface of the adjusting tooth disc (4) is movably mounted with a vertical rod (7), the surface of the vertical rod (7) is attached with an oval disc (8), the top end of the adjusting tooth disc (4) is provided with a top wheel frame (9), the upper surface of the top wheel frame (9) is attached with a piston plate (10), the piston plate (10) is slidably mounted in the inside of an absorption cylinder (11), and the absorption cylinder (11) is fixedly connected to the left and right sides of the material box (3); the left and right sides of the material box (3) are fixedly mounted with a tooth block corresponding to the adjusting tooth disc (4), the top end of the top wheel frame (9) is provided with an inclined block corresponding to the piston plate (10), the surface of the vertical rod (7) is movably mounted with a roller corresponding to the oval disc (8), and the opening of the absorption cylinder (11) is provided with a one-way valve; the bottom of the collection cover (6) is movably connected with a discharge pipe (12), the connection between the collection cover (6) and the discharge pipe (12) is clamped with a clamping valve (13), the outer end of the clamping valve (13) is fixedly mounted with a sliding seat (14), the inside of the sliding seat (14) and below the collection cover (6) are provided with a sticking wheel rod (15), and the sliding seat (14) is slidably mounted in the inside of a sealed cavity (16), the top of the sealed cavity (16) is slidably mounted with a top rod (17), the inner end of the top rod (17) is attached with a telescopic cover plate (18), and the upper surface of the telescopic cover plate (18) is uniformly distributed with a protruding block (19).

2. The microcapsule fungicide production device for soil remediation agent according to claim 1, characterized in that: The telescopic cover plate (18) is arranged in left-right symmetry with the center of the collection cover (6) as the reference, and the telescopic cover plate (18) is attached to the lower surface of the material box (3), the sticking wheel rod (15) is slidably mounted in the inside of the tank body (1), and the sticking wheel rod (15) penetrates the inside of the sliding seat (14).

3. The microencapsulated microbial agent production apparatus for soil remediation agents according to claim 1, characterized by: The material box (3) and the collection cover (6) are arranged in an up-down correspondence, the discharge pipe (12) and the collection cover (6) are of a mutual structure, and the lower surface of the telescopic cover plate (18) is provided with a protruding rod corresponding to the top rod (17).

Citation Information

Patent Citations

  • Filtering device for processing coating

    CN214680420U