Efficient and simple enrichment device for deodorization fungicide

By designing an efficient and simple enrichment device, the cultivation and enrichment of bacteria specific to organic odors were achieved, solving the problem of poor bacterial cultivation and collection in existing technologies and improving the deodorization effect.

CN223752739UActive Publication Date: 2026-01-02ENSAIMEI (SHANDONG) BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520012213.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2026-01-02
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing technologies cannot effectively enrich and cultivate specific bacteria for treating organic odors, and are not suitable for the cultivation and collection of live bacteria, resulting in poor deodorization effects.

Method used

A highly efficient and simple enrichment device for deodorizing bacteria was designed, including an odor source tank and a culture tank. The culture chamber is connected by gas and liquid delivery components. Different levels of bacteria are cultured and enriched using isolation and control components. An integrated collection mechanism is used for efficient collection of bacteria.

Benefits of technology

It enables the efficient cultivation and enrichment of bacteria specific to organic odors, facilitating the selection of suitable bacteria for deodorization and improving the deodorization effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The efficient and simple enrichment device comprises an odor source tank and a culture tank which are connected through a gas conveying assembly and a liquid conveying assembly, the interior of the culture tank is divided into four culture cavities through three partition assemblies, and the four culture cavities are all connected with a collecting mechanism through liquid discharging pipes. The partition assembly comprises a first partition plate and a second partition plate which are connected, the outer wall of the first partition plate and the outer wall of the second partition plate are connected to the inner wall of the culture tank, a cavity is formed in the first partition plate, a blocking plate is slidably connected into the cavity, through holes are formed in the first partition plate and the blocking plate, a push-pull rod is connected to one side wall of the blocking plate, and the push-pull rod is connected to the other side wall of the blocking plate. The push-pull rod penetrates through the first partition plate and the culture tank and then is connected to the control assembly. According to the utility model, specific bacteria capable of treating organic odor can be cultured, the cultured bacteria are enriched through the collecting mechanism, and the specific bacteria at different levels can be collected, so that proper specific bacteria can be conveniently selected for use.
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Description

TECHNICAL FIELD

[0001] The utility model relates to deodorization bacteria production technical field especially, it is a kind of efficient simple enrichment device of deodorization bacteria agent. BACKGROUND

[0002] China is a big agricultural country, and livestock industry, as an important part of agriculture, provides us with abundant meat products while also produces a large amount of foul-smelling manure. In 2003, China's livestock breeding industry produced 3.19 billion tons of manure, which was 3.2 times the amount of industrial solid waste in the same year. Moreover, the number of livestock and the amount of manure are increasing significantly year by year, which has a negative impact on the natural environment and human health. Therefore, the management of manure odor has become increasingly critical and urgent.

[0003] In addition to ammonia, the main odor substances in manure are volatile organic acids and indoles, mainly including acetic acid, butyric acid, isobutyric acid, valeric acid, isovaleric acid, indole and 3-methylindole (skatole). Physical deodorants are difficult to resolve and may cause secondary pollution. Chemical deodorants have a strong fragrance that may bring an unpleasant taste and cannot completely remove odor substances. Microbial deodorants, which can completely degrade odor substances and are economical and environmentally friendly, have good development prospects. The microbial deodorization process can be divided into three stages: organic odor gases dissolve in the bacterial culture solution, organic odor gases enter the microbial cells, and the cells use organic odor gases as nutrients for decomposition. In addition, if the odor is not soluble in the culture solution, it is first captured by the cells and attached to the cell surface, then decomposed into soluble substances by extracellular enzymes, and finally permeated into the cells for utilization. Existing deodorization bacteria are mixed in proportion with existing bacteria, and there is no selection of bacteria with good deodorization effect for special cultivation. Ordinary bacteria do not have specificity for odor substances in manure, and the deodorization effect is not obvious.

[0004] There is a laboratory waste gas treatment device, including air inlet device, first purification device, second purification device, connecting pipe, air outlet pipe, gas detector, controller;Gas guide pipe imports waste gas into first box body, and first air jet is distributed on gas guide pipe, and gas guide pipe can make rotating motion relative to first box body, can stir first purification liquid, and the nozzle on liquid inlet pipe sprays first purification liquid into first box body, and the contaminated first purification liquid can be discharged from liquid outlet, and the first purification liquid is continuously updated, and the waste gas can be fully contacted with the first purification liquid, and most of the harmful gases can be removed;The contaminated first purification liquid after purification can be discharged from the liquid outlet for treatment;Connecting pipe guides the gas after first purification into second purification device, and the second purification liquid is fully contacted with the second purification liquid to remove the harmful gases that cannot be purified.

[0005] But the above scheme is only applicable to the treatment of inorganic waste gas by chemical reaction, is not applicable to the treatment of organic odor by active bacteria, cannot be used for culturing bacteria capable of treating organic odor, cannot enrich the bacteria, and cannot collect comparison. The utility model discloses a kind of efficient simple enrichment devices of deodorization bacterial agent, to solve the above problems.

[0006] The utility model discloses a kind of efficient simple enrichment devices of deodorization bacterial agent, to solve the above problems.

[0007] To solve the above technical problems, the utility model adopts the following technical scheme:

[0008] The utility model discloses a kind of efficient simple enrichment devices of deodorization bacterial agent, including stink source jar and culture jar, the stink source jar and culture jar are connected by gas conveying component and liquid conveying component between, the inside of culture jar is separated into culture cavity one, culture cavity two, culture cavity three and culture cavity four by three partition components, gas conveying component and liquid conveying component are connected and with culture cavity one, culture cavity two, culture cavity three and culture cavity four are communicated, culture cavity one, culture cavity two, culture cavity three and culture cavity four are connected with collection mechanism by liquid discharge pipe, the partition component includes the first partition plate and the second partition plate connected, the inner wall of culture jar is connected on the outer wall of the first partition plate and the second partition plate, the first partition plate is equipped with cavity in the inside, the blanking plate is slidably connected in the cavity, the through hole is formed in the first partition plate and blanking plate, the side wall of blanking plate is connected with push-pull rod, the push-pull rod is connected on control component after penetrating the first partition plate and culture jar.

[0009] Further, the gas conveying component includes pump one installed on the stink source jar, the gas inlet pipe of the pump one is inserted into the inside of the stink source jar, and is placed above the stink source in the inside of the stink source jar, the exhaust pipe of the pump one is communicated with culture cavity one, culture cavity two, culture cavity three and culture cavity four through gas distribution pipe respectively, and the solenoid valve is installed on the gas distribution pipe.

[0010] Further, a plurality of air inlets are formed in the gas inlet pipe.

[0011] Further, the liquid conveying component includes pump two installed on the stink source jar, the liquid inlet pipe of the pump two is inserted into the inside of the stink source jar, the liquid outlet pipe of the pump two is communicated with culture cavity one, culture cavity two, culture cavity three and culture cavity four through liquid distribution pipe respectively, and the solenoid valve is installed on the liquid distribution pipe.

[0012] Further, the push-pull rod is sealed sliding between the first partition plate and the culture jar, and the push-pull rod is placed below the second partition plate.

[0013] Further, the control assembly comprises a linkage plate and a cylinder, the cylinder is installed on the outer wall of the culture tank, the piston end of the cylinder is connected with the linkage plate through a connecting rod, and the linkage plate is fixed on the end of the push-pull rod.

[0014] Compared with the prior art, the beneficial technical effects of the utility model are:

[0015] The utility model can cultivate specific bacteria capable of treating organic odor, and can enrich the cultivated bacteria through the collecting mechanism, and can collect specific bacteria of different levels, so that suitable specific bacteria can be selected for use. BRIEF DESCRIPTION OF DRAWINGS

[0016] The utility model will be further described below in combination with the drawings.

[0017] Figure 1 It is the section view of the high-efficiency simple enrichment device of the deodorization bacterial agent of the utility model;

[0018] Figure 2 It is the installation plan view of the control assembly;

[0019] Figure 3 It is the section view when the partition assembly is not blocked;

[0020] Figure 4 It is the section view when the partition assembly is blocked;

[0021] The reference signs are explained: 1, the source tank of stink; 2, culture tank; 3, culture cavity one; 4, culture cavity two; 5, culture cavity three; 6, culture cavity four; 7, first partition plate; 8, second partition plate; 9, cavity; 10, blocking plate; 11, through hole; 12, push-pull rod; 13, liquid discharge pipe; 14, pump one; 15, air inlet pipe; 16, exhaust pipe; 17, gas distribution pipe; 18, air suction hole; 19, pump two; 20, liquid inlet pipe; 21, liquid outlet pipe; 22, liquid distribution pipe; 23, linkage plate; 24, cylinder; 25, connecting rod. DETAILED DESCRIPTION

[0022] As Figures 1-4 shown, a kind of high-efficiency simple enrichment device of the deodorization bacterial agent, including source tank 1 and culture tank 2, the source tank 1 and culture tank 2 are connected by gas delivery assembly and liquid delivery assembly, the inside of the culture tank 2 is divided into culture cavity one 3, culture cavity two 4, culture cavity three 5 and culture cavity four 6 by three partition assemblies, the gas delivery assembly and liquid delivery assembly are connected and are communicated with culture cavity one 3, culture cavity two 4, culture cavity three 5 and culture cavity four 6.

[0023] The gas delivery assembly comprises a pump 14 installed on the odor source tank 1, an air inlet pipe 15 of the pump 14 is inserted into the interior of the odor source tank 1 and is arranged above the odor source in the interior of the odor source tank 1, a plurality of air suction holes 18 are formed on the air inlet pipe 15, and an air outlet pipe 16 of the pump 14 is connected with the culture cavity 1, the culture cavity 2, the culture cavity 3 and the culture cavity 4 through a gas distribution pipe 17, and an electromagnetic valve is arranged on the gas distribution pipe 17. The gas delivery assembly is used for delivering odor into the culture cavity 1, the culture cavity 2, the culture cavity 3 and the culture cavity 4, and the air suction holes 18 with different heights are arranged for sucking odor with different heights.

[0024] The liquid delivery assembly comprises a pump 19 installed on the odor source tank 1, a liquid inlet pipe 20 of the pump 19 is inserted into the interior of the odor source tank 1, a liquid outlet pipe 21 of the pump 19 is connected with the culture cavity 1, the culture cavity 2, the culture cavity 3 and the culture cavity 4 through a liquid distribution pipe 22, and an electromagnetic valve is arranged on the liquid distribution pipe 22.

[0025] The culture cavity 1, the culture cavity 2, the culture cavity 3 and the culture cavity 4 are connected with a collection mechanism through the liquid discharge pipe 13, the collection mechanism can enrich the cultured bacteria, and the collection mechanism is a prior art and will not be described in detail.

[0026] The partition assembly comprises the first partition plate 7 and the second partition plate 8 connected with each other, the outer wall of the first partition plate 7 and the second partition plate 8 is connected with the inner wall of the culture tank 2, the cavity 9 is formed in the interior of the first partition plate 7, the blocking plate 10 is slidably connected in the cavity 9, the through hole 11 is formed in the first partition plate 7 and the blocking plate 10, the side wall of the blocking plate 10 is connected with the push-pull rod 12, the push-pull rod 12 penetrates through the first partition plate 7 and the culture tank 2 and is connected with the control assembly, the push-pull rod 12 and the first partition plate 7 and the culture tank 2 are in sealed sliding connection, and the push-pull rod 12 is arranged below the second partition plate 8.

[0027] The control assembly comprises the linkage plate 23 and the air cylinder 24, the air cylinder 24 is installed on the outer wall of the culture tank 2, the piston end of the air cylinder 24 is connected with the linkage plate 23 through the connecting rod 25, and the linkage plate 23 is fixed on the end of the push-pull rod 12. The air cylinder 24 is used for controlling the movement of the blocking plate 10 in the cavity 9, so as to realize the purpose of opening or closing the through hole 11. When the culture solution needs to be discharged to the collection mechanism, the air cylinder 24 is used for controlling the blocking plate 10 to block the through hole 11, so that the cultured bacteria in the culture cavity 1, the culture cavity 2, the culture cavity 3 and the culture cavity 4 can be sent into different collection mechanisms, and the series connection is prevented.

[0028] The above-described embodiments are only to describe the preferred modes of the present application, and are not intended to limit the scope of the present application. Without departing from the design spirit of the present application, various modifications and improvements to the technical solutions of the present application made by those of ordinary skill in the art shall fall within the protection scope determined by the claims of the present application.

Claims

1. A highly efficient and simple enrichment device for deodorizing bacteria, characterized in that: The utility model provides a culture tank, it includes the stink source jar (1) and the culture tank (2), the stink source jar (1) and the culture tank (2) are connected through gas delivery assembly and liquid delivery assembly, the inside of culture tank (2) is divided into culture cavity one (3), culture cavity two (4), culture cavity three (5) and culture cavity four (6) through three partition assemblies, and gas delivery assembly and liquid delivery assembly are connected and are communicated with culture cavity one (3), culture cavity two (4), culture cavity three (5) and culture cavity four (6), culture cavity one (3), culture cavity two (4), culture cavity three (5) and culture cavity four (6) are connected with the collection mechanism through the liquid discharge pipe (13), and the partition assembly includes the first partition board (7) and the second partition board (8) connected, and the outer wall of first partition board (7) and second partition board (8) is connected on the inner wall of culture tank (2), the inside of first partition board (7) is provided with cavity (9), the sliding connection of cavity (9) has the blocking plate (10), and the through -hole (11) is set up on first partition board (7) and blocking plate (10), and one side wall of blocking plate (10) is connected with push -pull rod (12), and push -pull rod (12) penetrates first partition board (7) and culture tank (2) and is connected on control assembly after.

2. The device for efficient and easy enrichment of deodorant bacteria according to claim 1, characterized in that: The gas delivery assembly includes pump one (14) installed on the stink source jar (1), the air inlet pipe (15) of pump one (14) is inserted into the inside of the stink source jar (1), and is placed above the stink source in the inside of the stink source jar (1), the air outlet pipe (16) of pump one (14) is communicated with culture cavity one (3), culture cavity two (4), culture cavity three (5) and culture cavity four (6) through gas distribution pipe (17) respectively, and electromagnetic valve is installed on gas distribution pipe (17).

3. The device for efficient and easy enrichment of deodorant bacteria according to claim 2, characterized in that: The air inlet pipe (15) is provided with a plurality of air inlet holes (18).

4. The device for efficient and easy enrichment of deodorant bacteria according to claim 1, characterized in that: The liquid delivery assembly includes pump two (19) installed on the stink source jar (1), the liquid inlet pipe (20) of pump two (19) is inserted into the inside of the stink source jar (1), and the liquid outlet pipe (21) of pump two (19) is communicated with culture cavity one (3), culture cavity two (4), culture cavity three (5) and culture cavity four (6) through liquid distribution pipe (22) respectively, and electromagnetic valve is installed on liquid distribution pipe (22).

5. The device for efficient and easy enrichment of deodorant bacteria according to claim 1, characterized in that: The push -pull rod (12) is sealed sliding between first partition board (7) and culture tank (2), and the push -pull rod (12) is placed below the second partition board (8).

6. The device for efficient and easy enrichment of deodorant bacteria according to claim 1, characterized in that: The control assembly includes linkage plate (23) and air cylinder (24), the air cylinder (24) is installed on the outer wall of culture tank (2), the piston end of air cylinder (24) is connected through connecting rod (25) on linkage plate (23), and the linkage plate (23) is fixed on the end of push -pull rod (12).