Microbial agent fermentation tank with dust removal treatment structure

By designing a dust removal structure in the microbial inoculant fermentation tank, and utilizing a dust removal fan and a dust suction port combined with filter holes, the problem of dust entering the fermentation tank was solved, thus ensuring hygiene during the fermentation process.

CN223607269UActive Publication Date: 2025-11-28SINOSWEEPER
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Patent Information

Application Number
CN202422750941.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-11-28
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

When feeding materials into a microbial inoculant fermentation tank, dust from the air can enter along with the raw materials, affecting the hygiene of the fermentation tank and leading to potential risks.

Method used

A dust removal structure was designed, including a feeding mechanism, a dust removal mechanism, and a rotating mechanism. The dust removal fan and multiple dust suction ports are used in conjunction with filter holes. The rotating ring and wind baffle structure improve the dust removal effect and prevent dust from entering the fermentation tank.

Benefits of technology

It effectively prevents airborne dust from entering the fermentation tank, ensuring a hygienic fermentation process and improving dust removal efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a microbial agent fermentation tank with a dust removal treatment structure, relates to the technical field of microbial agent fermentation tanks, and aims to solve the technical problem that dust in air enters the microbial agent fermentation tank along with raw materials during current feeding. Comprising a feeding mechanism arranged on a fermentation tank body, a dust removal mechanism arranged on the feeding mechanism and a rotating mechanism arranged in the dust removal mechanism, and the fermentation tank body comprises a fermentation cover arranged at the upper end of the fermentation tank body and a feeding opening formed in the fermentation cover; the feeding mechanism comprises a feeding pipe which is installed on the feeding port through a flange, the feeding pipe comprises a reducer pipe and a straight pipe part, and the dust removal mechanism comprises a dust removal box installed on the outer side of the feeding pipe and a dust removal fan installed at the side end of the dust removal box. The fermentation tank has the advantages that the dust removal function is realized, dust in air can be effectively prevented from entering the fermentation tank during feeding of the fermentation tank, and the fermentation tank can stably perform microbial agent fermentation work.
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Description

Technical Field

[0001] This utility model relates to the field of microbial agent fermentation tank technology, and more specifically, to a microbial agent fermentation tank with a dust removal treatment structure. Background Technology

[0002] A microbial inoculant fermentation tank is a process testing instrument used in the industrial production of biological products, enzyme preparations, cell culture media, and microbial inoculants. It provides ideal conditions for the growth and reproduction of microorganisms. It is widely used in chemical and pharmaceutical industries, food and beverage production, agriculture, and other fields, and is an indispensable piece of equipment in these industries.

[0003] During the feeding process of microbial inoculant fermenters, dust from the air enters the fermenter along with the raw materials. This dust can breed miscellaneous bacteria, affecting the hygiene of the fermenter and posing a potential risk to the fermentation process, thus adversely affecting microbial fermentation. Therefore, we propose a microbial inoculant fermenter with a dust removal system. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a microbial agent fermentation tank with a dust removal structure to solve the technical problem that dust in the air will enter the microbial agent fermentation tank along with the raw materials during feeding.

[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a microbial agent fermentation tank with a dust removal structure, including a feeding mechanism and a dust removal mechanism disposed on the feeding mechanism, and a rotating mechanism disposed within the dust removal mechanism. The fermentation tank body includes a fermentation cover disposed on the upper end of the fermentation tank body and a feeding port disposed on the fermentation cover. The feeding mechanism includes a feeding pipe with a flange installed on the feeding port. The feeding pipe includes a reducing pipe and a straight pipe section. The feeding pipe is provided with filter holes. A feeding hopper is disposed at the upper end of the feeding pipe. The dust removal mechanism includes a dust removal box installed outside the feeding pipe and a dust removal fan installed on the side of the dust removal box. The air inlet of the dust removal fan is connected to the dust removal box. An annular opening is provided on the inner wall of the dust removal box.

[0006] Preferably, the inner wall of the dust collector is symmetrically provided with a first and a second ring-shaped limiting plate on the outer side of the annular opening. The cross-section of the first and the second limiting plates is arc-shaped, and the lower end of the first limiting plate and the upper end of the second limiting plate are provided with a first ball groove.

[0007] Preferably, the rotating mechanism comprises a rotating ring arranged between the first limiting plate and the second limiting plate, the outer side of the rotating ring is provided with an opening, the upper end and the lower end of the rotating ring are provided with second ball grooves corresponding to the first ball grooves, and rotating balls are arranged in the first ball grooves and the second ball grooves.

[0008] Preferably, a plurality of dust suction ports are arranged on the inner ring of the rotating ring and are arranged in a horn shape.

[0009] Preferably, the dust suction port is provided with a wind resistance plate, the wind resistance plate comprises an arc plate part and a straight plate part, the wind resistance plate formed by the arc plate part and the straight plate part closes the dust suction port, and the straight plate part is provided with an air inlet hole.

[0010] Compared with the prior art, the utility model has the advantages that:

[0011] 1、The utility model discloses a dust suction port and a feed pipe structure are designed, a plurality of dust suction ports are arranged and cooperate with the dust removal fan to absorb the air entering during feeding, the filter hole on the feed pipe can isolate the granular raw materials, prevent the raw materials from being sucked into the dust suction port, realize the effect that the dust in the air during feeding is prevented from entering the fermentation tank, and solve the problem that the dust in the air during feeding enters the microbial inoculum fermentation tank together with the raw materials.

[0012] 2、The utility model discloses a rotating ring and a wind resistance plate structure are designed, when the air is sucked into the dust suction port, the wind resistance plate can increase the resistance of the air entering, and the arc plate part and the straight plate part of the wind resistance plate are arranged to make the wind resistance plate be in an inclined state in the dust suction port, the resistance of the air entering the dust suction port can push the wind resistance plate, the rotating ring is rotatably installed through the rotating ball, the rotating resistance of the rotating ring is small, under the action of the wind force, the rotating ring can rotate, the position of the dust suction port can be continuously adjusted, and the dust removal effect is improved. ACCURATE DRAWINGS

[0013] Figure 1 It is a front view structure schematic drawing of the utility model;

[0014] Figure 2 It is an explosion drawing of the utility model;

[0015] Figure 3 It is a sectional view structure schematic drawing of the utility model;

[0016] Figure 4 It is a rotating mechanism structure schematic drawing of the utility model;

[0017] Figure 5 It is a feed mechanism structure schematic drawing of the utility model;

[0018] Figure 6The utility model discloses a dust removal box sectional structure schematic diagram of the utility model discloses a dust removal processing structure's microbial agent fermentation tank,

[0019] Figure 7 The utility model discloses a dust removal box sectional structure schematic diagram of the utility model discloses a dust removal processing structure's microbial agent fermentation tank,

[0020] Figure 8 The utility model discloses a dust removal box sectional structure schematic diagram of the utility model discloses a dust removal processing structure's microbial agent fermentation tank,

[0021] In the drawing, the reference numerals are explained: 101, fermentation tank body; 200, feeding mechanism; 201, feeding pipe; 202, reducing pipe; 203, straight pipe part; 204, feeding hopper; 300, dust removal mechanism; 301, dust removal box; 302, dust removal fan; 303, annular port; 304, first limiting plate; 305, second limiting plate; 306, first ball groove; 400, rotating mechanism; 401, rotating ring; 402, second ball groove; 403, rotating ball; 404, dust suction port; 405, wind resistance plate; 406, arc plate part; 407, straight plate part; 408, air inlet. DETAILED DESCRIPTION

[0022] As Figures 1 to 8 The utility model discloses a dust removal processing structure's microbial agent fermentation tank, including setting up on the feeding mechanism 200 of fermentation tank body 101 and setting up on the dust removal mechanism 300 of feeding mechanism 200 and setting up rotating mechanism 400 in the dust removal mechanism 300, the fermentation tank body 101 includes setting up on the fermentation cover of fermentation tank body 101 upper end and setting up the feeding port of fermentation cover, the feeding mechanism 200 includes the feeding pipe 201 of flange installation on the feeding port, and the feeding pipe 201 includes reducing pipe 202 and straight pipe part 203, is provided with filter hole on the feeding pipe 201, and the feeding pipe 201 upper end is provided with feeding hopper 204, and the dust removal mechanism 300 includes the dust removal box 301 of installation on the outer side of feeding pipe 201 and the dust removal fan 302 of installation on the side end of dust removal box 301, and the air inlet of dust removal fan 302 communicates with dust removal box 301, and the inner wall of dust removal box 301 is opened with annular port 303, the utility model discloses a dust removal structure at the feeding of fermentation tank, can effectively prevent the dust in the air from entering the fermentation tank when the fermentation tank feeds, makes the fermentation tank can stably carry out microbial agent fermentation work.

[0023] Specifically, the inner wall of the dust removal box 301 is symmetrically provided with a first limiting plate 304 and a second limiting plate 305 in the form of a ring outside the annular port 303, the cross sections of the first limiting plate 304 and the second limiting plate 305 are both in the form of an arc, and the lower end of the first limiting plate 304 and the upper end of the second limiting plate 305 are both provided with a first ball groove 306. The first limiting plate 304 and the second limiting plate 305 are arranged to mount and seal the rotating ring 401.

[0024] Further, the rotating mechanism 400 comprises a rotating ring 401 arranged between the first limiting plate 304 and the second limiting plate 305, the outer side of the rotating ring 401 is provided in an open manner, the upper end and the lower end of the rotating ring 401 are provided with the second ball groove 402 corresponding to the first ball groove 306, and the first ball groove 306 and the second ball groove 402 are provided with the rotating ball 403. The arrangement of the rotating ball 403 can effectively reduce the frictional resistance between the rotating ring 401 and the first limiting plate 304 and the second limiting plate 305, and the rotating ring 401 can be conveniently rotated.

[0025] It is worth noting that the inner circle of the rotating ring 401 is provided with a dust suction port 404 in communication with the rotating ring 401, and the dust suction port 404 is provided with a plurality of dust suction ports 404 arranged in a horn shape.

[0026] It is worth noting that the dust suction port 404 is provided with a baffle 405, the baffle 405 comprises an arc plate part 406 and a straight plate part 407, the baffle 405 formed by the arc plate part 406 and the straight plate part 407 closes the dust suction port 404, and the straight plate part 407 is provided with an air inlet hole 408. When air is sucked into the dust suction port 404, the baffle 405 can increase the resistance of air entering, and the arrangement of the arc plate part 406 and the straight plate part 407 of the baffle 405 makes the baffle 405 in an inclined state in the dust suction port 404, the resistance of air entering the dust suction port 404 can push the baffle 405, and under the action of the wind force, the rotating ring 401 can be rotated, the position of the dust suction port 404 can be continuously adjusted, and the dust removal effect is improved.

[0027] Working principle: the embodiment provides a microbial agent fermentation tank with a dust removal treatment structure, in use, the raw materials are added into the feeding hopper 204, the raw materials can enter the fermentation tank through the feeding pipe 201, the raw materials are sucked during the adding process through the operation of the dust removal fan 302, the dust removal box 301 and the dust suction port 404 can generate suction, the air in the feeding pipe 201 can be sucked, the granular raw materials can be intercepted through the filter holes on the feeding pipe 201, the air can be sucked into the dust suction port 404, the resistance of air entering the dust suction port 404 can be increased through the baffle 405, and the arrangement of the arc plate part 406 and the straight plate part 407 of the baffle 405 makes the baffle 405 in an inclined state in the dust suction port 404, the resistance of air entering the dust suction port 404 can push the baffle 405, and under the action of the rotating ball 403, the rotating ring 401 can be rotated, thereby the position of the dust suction port 404 can be continuously adjusted, the dust removal angle range is improved, and the dust in the air can be effectively removed.

[0028] The utility model discloses an embodiment discloses the better embodiment, but is not limited to this, and the ordinary skill of the art, the spirit of the utility model is appreciated to the above -mentioned embodiment, and different extension and change are made, but as long as not departing from the spirit of the utility model, all are in the protection range of the utility model.

Claims

1. A microbial inoculant fermenter for a dusting treatment structure, characterized by, The utility model relates to a fermentation tank feed mechanism and dust removal mechanism, including setting on the feed mechanism (200) and setting dust removal mechanism (300) and setting rotation mechanism (400) in dust removal mechanism (300) on the fermentation tank body (101), the fermentation tank body (101) including setting on the fermentation tank body (101) upper end fermentation cover and setting the feed inlet on fermentation cover, the feed mechanism (200) including flange installation feed pipe (201) on the feed inlet, the feed pipe (201) including reducing pipe (202) and straight pipe portion (203), the feed pipe (201) is provided with filter hole, the feed pipe (201) upper end is provided with feed hopper (204), the dust removal mechanism (300) including installation dust removal box (301) on the outer side of feed pipe (201) and installation dust removal fan (302) on the side end of dust removal box (301), the air inlet of dust removal fan (302) is communicated with dust removal box (301), the inner wall of dust removal box (301) is provided with annular port (303).

2. The microbial inoculant fermenter of a dusting treatment structure according to claim 1, characterized in that, The inner wall of dust removal box (301) is provided with the first limiting plate (304) and the second limiting plate (305) on the outer side of annular port (303), the cross section of first limiting plate (304) and second limiting plate (305) is arc-shaped, the lower end of first limiting plate (304) and the upper end of second limiting plate (305) are provided with first ball groove (306).

3. The microbial inoculant fermenter of a dusting treatment structure according to claim 2, characterized in that, The rotation mechanism (400) includes a rotating ring (401) disposed between the first limiting plate (304) and the second limiting plate (305), the outer side of the rotating ring (401) is open, the upper end and the lower end of the rotating ring (401) are provided with a second ball groove (402) corresponding to the first ball groove (306), and the first ball groove (306) and the second ball groove (402) are provided with rotating balls (403).

4. The microbial inoculant fermenter of dusting treatment structure according to claim 3, characterized in that, The inner circle of the rotating ring (401) is provided with a dust suction port (404) communicated with the rotating ring (401), and the dust suction port (404) is provided with a plurality of dust suction ports (404) in a horn shape.

5. The microbial inoculant fermenter of a dusting treatment structure according to claim 4, characterized in that, The dust suction port (404) is provided with a baffle (405), the baffle (405) includes an arc plate portion (406) and a straight plate portion (407), the baffle (405) formed by the arc plate portion (406) and the straight plate portion (407) closes the dust suction port (404), and the straight plate portion (407) is provided with an air inlet (408).