Microbial agent fermentation device for wormwood planting

By designing a fermentation tank and a motor-driven stirring system, the problem of low efficiency of manual stirring during the fermentation of microbial agents in Artemisia argyi cultivation was solved, realizing automated stirring and mixing, improving fermentation efficiency and reducing labor costs.

CN223576445UActive Publication Date: 2025-11-21NANYANG NORMAL UNIV
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Patent Information

Application Number
CN202422938879.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-11-21
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The current method of fermenting microbial agents in Artemisia argyi cultivation suffers from low efficiency and increased labor costs due to manual stirring.

Method used

Design a microbial agent fermentation device including a fermenter, motor, rotating shaft, stirring rod, stirring support rod, connecting rod and scraper. The motor drives the rotating shaft to rotate the stirring rod and scraper, realizing automatic stirring and scraping of microbial agents and improving mixing efficiency.

Benefits of technology

It improves the fermentation efficiency of microbial agents, reduces labor costs, realizes automated stirring and mixing, and enhances the uniform distribution of nutrients and microorganisms in the fermenter.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a microbial agent fermentation device for wormwood planting, which comprises a fermentation tank, the bottom surface of the fermentation tank is fixedly connected with a motor, the output end of the motor is fixedly connected with a rotating shaft, the outer surface of the rotating shaft is fixedly connected with a plurality of stirring rods, the bottom surface of each stirring rod is fixedly connected with a stirring support rod, and the stirring support rod is fixedly connected with a stirring rod. The outer surface of the rotating shaft is fixedly connected with three connecting rods, and the end, away from the rotating shaft, of each connecting rod is fixedly connected with a scraping plate. According to the device, the fermentation tank, the motor, the rotating shaft, the stirring rod, the supporting rod, the connecting rod and the scraping plate are matched, so that the stirring rod and the stirring supporting rod on the stirring rod can be driven to rotate together and are matched with the scraping plate on the connecting rod on the rotating shaft to rotate, and a microbial agent in the fermentation tank is stirred and scraped; nutrient substances and microorganisms in the microbial agent are fully stirred and mixed, the fermentation efficiency is improved, the stirring efficiency is improved, and the labor cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of Artemisia argyi technology, and in particular to a microbial inoculant fermentation device for Artemisia argyi cultivation. Background Technology

[0002] Artemisia argyi has high economic value and is widely used in food, medicine, daily necessities and other fields. Its market demand is large and its price is rising year by year. Planting artemisia argyi can bring considerable economic income to farmers. Artemisia argyi is a traditional Chinese medicine with the effects of warming the meridians and dispelling cold, clearing heat and detoxifying, removing dampness and reducing swelling. It is widely used in the field of traditional Chinese medicine. Planting artemisia argyi can meet the market demand for Chinese medicinal materials.

[0003] Currently, the cultivation of mugwort requires the use of microbial inoculants, which need to undergo fermentation. To ensure the uniform distribution of nutrients and microorganisms during fermentation, manual stirring is generally used. However, manual stirring is inefficient and increases labor costs.

[0004] To address these issues, we propose a microbial inoculant fermentation device for Artemisia argyi cultivation. Utility Model Content

[0005] The purpose of this invention is to provide a microbial inoculant fermentation device for Artemisia argyi cultivation, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A microbial inoculant fermentation device for Artemisia argyi cultivation includes a fermentation tank. A motor is fixedly connected to the bottom surface of the fermentation tank, and a rotating shaft is fixedly connected to the output end of the motor. Several stirring rods are fixedly connected to the outer surface of the rotating shaft, and a stirring support rod is fixedly connected to the bottom surface of each stirring rod. Three connecting rods are fixedly connected to the outer surface of the rotating shaft, and a scraper is fixedly connected to the end of each connecting rod away from the rotating shaft. A bearing is fixedly embedded in the inner top wall of the fermentation tank, and the inner ring of the bearing is fixedly connected to the outer surface of the rotating shaft. A vent pipe is fixedly connected to the upper surface of the fermentation tank, and a discharge pipe is fixedly connected to the bottom surface of the fermentation tank.

[0008] In a further embodiment, the outer surface of the discharge pipe is provided with a valve, and the outer surface of the fermentation tank is provided with an observation window.

[0009] In a further embodiment, the outer surface of the fermenter is provided with a pump, and the input end of the pump is fixedly connected to a feed pipe.

[0010] In a further embodiment, the output end of the pump is fixedly connected to a conveying pipe, and the end of the conveying pipe away from the pump is fixedly connected to the upper surface of the fermenter.

[0011] In a further embodiment, the upper surface of the fermenter is fixedly connected to a water inlet pipe, and the outer surfaces of the water inlet pipe, the feed pipe, and the vent pipe are all threaded with sealing caps.

[0012] In a further embodiment, a fixing ring is fixedly connected to the outer surface of the fermenter, the bottom surface of the pump is fixedly connected to the upper surface of the fixing ring, and four support legs are fixedly connected to the bottom surface of the fixing ring, with a base plate fixedly connected to the bottom end of each support leg.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] This device, through the cooperation of a fermenter, motor, rotating shaft, stirring rod, support rod, connecting rod, and scraper, can drive the stirring rod and the stirring support rod on the stirring rod to rotate together. In conjunction with the rotation of the scraper on the connecting rod on the rotating shaft, the microbial agent in the fermenter is stirred and scraped, so as to achieve full mixing of nutrients and microorganisms in the microbial agent, improve fermentation efficiency and stirring efficiency, and reduce labor costs. Attached Figure Description

[0015] Figure 1 This is a front view schematic diagram of a microbial inoculant fermentation device for planting Artemisia argyi.

[0016] Figure 2 This is a bottom view schematic diagram of a microbial inoculant fermentation device for planting Artemisia argyi.

[0017] Figure 3 This is a frontal cross-sectional view of a microbial inoculant fermentation device for Artemisia argyi cultivation.

[0018] Figure 4 This is a top sectional view of a microbial inoculant fermentation device for planting Artemisia argyi.

[0019] In the diagram: 1. Fermentation tank; 2. Motor; 3. Shaft; 4. Stirring rod; 5. Stirring support rod; 6. Connecting rod; 7. Scraper; 8. Bearing; 9. Vent pipe; 10. Discharge pipe; 11. Valve; 12. Observation window; 13. Pump; 14. Conveying pipe; 15. Feed pipe; 16. Water inlet pipe; 17. Sealing cover; 18. Fixing ring; 19. Support leg; 20. Base plate. Detailed Implementation

[0020] In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first," "second," etc., may explicitly or implicitly include one or more of that feature. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more.

[0021] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figure 1-4In this utility model, a microbial inoculant fermentation device for Artemisia argyi cultivation includes a fermentation tank 1. A motor 2 is fixedly connected to the bottom surface of the fermentation tank 1. A rotating shaft 3 is fixedly connected to the output end of the motor 2. Several stirring rods 4 are fixedly connected to the outer surface of the rotating shaft 3. A stirring support rod 5 is fixedly connected to the bottom surface of each stirring rod 4. A scraper 7 is fixedly connected to the end of each connecting rod 6 away from the rotating shaft 3. A bearing 8 is fixedly embedded in the inner top wall of the fermentation tank 1. The inner ring of the bearing 8 is fixedly connected to the outer surface of the rotating shaft 3. A vent pipe 9 is fixedly connected to the upper surface of the fermentation tank 1. A discharge pipe 10 is fixedly connected to the bottom surface of the fermentation tank 1. The rotating stirring rods 4, in conjunction with the stirring support rods 5, stir the microbial inoculant, improving the stirring efficiency. The scraper 7 scrapes off the inoculant adhering to the tank wall and mixes it with other inoculants, so that the inoculants in the tank are completely mixed, improving the fermentation efficiency. During fermentation, gas is generated. When the gas in the tank is discharged, the gas is discharged from the vent pipe 9.

[0024] A valve 11 is provided on the outer surface of the discharge pipe 10, an observation window 12 is provided on the outer surface of the fermentation tank 1, and a pump 13 is provided on the outer surface of the fermentation tank 1. The input end of the pump 13 is fixedly connected to the feed pipe 15, and the output end of the pump 13 is fixedly connected to the conveying pipe 14. The end of the conveying pipe 14 away from the pump 13 is fixedly connected to the upper surface of the fermentation tank 1. The valve 11 controls the opening and closing of the discharge pipe 10, which is beneficial for controlling the discharge. The fermentation status of the internal microbial agent can be observed through the observation window 12, which facilitates timely implementation of corresponding measures. The cooperation of the pump 13, the conveying pipe 14, and the feed pipe 15 can automatically extract external microbial agents and add them to the fermentation tank 1 to achieve automatic feeding. The sealing cover 17 seals the fermentation tank 1 to prevent impurities from entering it. The cooperation of the fixing ring 18, the support leg 19, and the bottom plate 20 supports the fermentation tank 1 and increases its stability.

[0025] The upper surface of the fermenter 1 is fixedly connected to a water inlet pipe 16. The outer surfaces of the water inlet pipe 16, the feed pipe 15, and the vent pipe 9 are all threaded with sealing caps 17. The outer surface of the fermenter 1 is fixedly connected to a fixing ring 18. The bottom surface of the pump 13 is fixedly connected to the upper surface of the fixing ring 18. The bottom surface of the fixing ring 18 is fixedly connected to four support legs 19. The bottom end of each support leg 19 is fixedly connected to a base plate 20.

[0026] The working principle of this utility model is as follows:

[0027] First, the external microbial agent is extracted using the pump 13 and transported to the fermentation tank 1 through the conveying pipe 14. Fermentation takes place in the fermentation tank 1. When the microbial agent in the fermentation tank 1 is stirred and mixed, the motor 2 drives the rotating shaft 3 to rotate, which in turn drives the stirring rod 4 to rotate. The stirring rod 4 then drives the stirring support rod 5 to rotate, stirring and mixing the microbial agent in the fermentation tank 1. In conjunction with the connecting rod 6 driving the scraper 7 to rotate, the agent adhering to the inner wall of the fermentation tank 1 is scraped off and mixed with the agent at the bottom of the fermentation tank 1, so that the nutrients and microorganisms in the microbial agent are fully stirred and mixed, improving the fermentation efficiency.

[0028] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0029] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A microbial inoculant fermentation device for wormwood cultivation, characterized by: Including fermenter (1), the bottom surface of fermenter (1) is fixedly connected with motor (2), the output end of motor (2) is fixedly connected with rotating shaft (3), the outer surface of rotating shaft (3) is fixedly connected with several stirring rods (4), the bottom surface of each stirring rod (4) is fixedly connected with stirring branch (5), the outer surface of rotating shaft (3) is fixedly connected with three connecting rods (6), the end of each connecting rod (6) away from rotating shaft (3) is fixedly connected with scraper (7), the inner top wall of fermenter (1) is fixedly embedded with bearing (8), the inner ring of bearing (8) is fixedly connected with the outer surface of rotating shaft (3), the upper surface of fermenter (1) is fixedly communicated with vent pipe (9), the bottom surface of fermenter (1) is fixedly communicated with discharge pipeline (10).

2. The microbial inoculant fermentation device for wormwood planting according to claim 1, characterized in that: The outer surface of discharge pipeline (10) is provided with valve (11), the outer surface of fermenter (1) is provided with observation window (12).

3. The microbial inoculant fermentation device for wormwood cultivation according to claim 1, characterized in that: The outer surface of fermenter (1) is provided with pumping pump (13), the input end of pumping pump (13) is fixedly communicated with feed pipe (15).

4. The microbial inoculant fermentation device for wormwood planting according to claim 3, characterized in that: The output end of pumping pump (13) is fixedly communicated with feed pipeline (14), the end of feed pipeline (14) away from pumping pump (13) is fixedly communicated with the upper surface of fermenter (1).

5. The microbial inoculant fermentation device for growing wormwood according to claim 1, characterized in that: The upper surface of fermenter (1) is fixedly communicated with water inlet pipe (16), the outer surface of water inlet pipe (16), the outer surface of feed pipe (15) and the outer surface of vent pipe (9) are all threadedly connected with sealing cover (17).

6. The microbial inoculant fermentation device for growing wormwood according to claim 3, characterized in that: The outer surface of fermenter (1) is fixedly connected with fixed ring (18), the bottom surface of pumping pump (13) is fixedly connected with the upper surface of fixed ring (18), the bottom surface of fixed ring (18) is fixedly connected with four supporting legs (19), the bottom end of each supporting leg (19) is fixedly connected with bottom plate (20).