Sterilization device for intestinal flora transfer pipeline

By using ozone to sterilize the intestinal flora transplantation pipeline, the problem of moisture residue caused by high-temperature steam sterilization is solved, achieving a more effective sterilization effect and a longer pipeline life, while saving costs.

CN223668358UActive Publication Date: 2025-12-16SHANDONG INTESTINAL MICROECOLOGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423192328.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-12-16
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing sterilization devices are prone to moisture residue when using high-temperature steam, which affects the lifespan of pipelines and the sterilization effect, and it is difficult to ensure that the steam fills the pipelines.

Method used

Ozone is used for sterilization. The air inside the pipeline is extracted and filtered by an air extraction mechanism. Ozone is then delivered to the pipeline for sterilization using a vacuum pump, and the ozone is recycled to ensure that the pipeline is filled.

Benefits of technology

This avoids damage to the pipes caused by moisture and high temperatures, extends the service life of the pipes, ensures the sterilization effect, and saves production costs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of probiotic production, in particular to an intestinal flora seed transfer pipeline sterilization device, which sterilizes a seed transfer pipeline through ozone, not only can prevent water vapor, high temperature and the like from damaging the pipeline and prolong the service life of the pipeline, but also can recycle the ozone, saves the production cost and improves the production efficiency. The pipeline is filled with ozone in the sterilization process, so that the pipeline sterilization effect is ensured; comprising a production mechanism; the device further comprises an exhaust mechanism, a filtering mechanism, an air extracting mechanism and a sterilizing mechanism, the exhaust mechanism is installed on the production mechanism and facilitates exhausting of air and impurities in the production mechanism, the filtering mechanism is installed on the exhaust mechanism and filters the impurities, and the air extracting mechanism is installed on the filtering mechanism and extracts air in the production mechanism. The sterilization mechanism is installed on the air exhaust mechanism and conveys ozone into the production mechanism for sterilization.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of probiotic production, in particular to a kind of intestinal flora transfer conduit sterilization device. BACKGROUND

[0002] Intestinal flora is the bacteria population designated to be planted in human intestinal tract and long-term interdependent with human body, intestinal flora can be divided into beneficial bacteria, harmful bacteria and neutral bacteria, intestinal flora is closely combined with intestinal mucosa, forms the biological barrier of intestinal tract, prevents the invasion of external pathogen.

[0003] The existing transfer conduit sterilization device, for example, the utility model patent with application number 202322370352.3 discloses a kind of probiotic transfer conduit sterilization device, its main structure includes base, the top of base is fixed with sterilization mechanism, the top of base is fixed with multiple fermentation tanks, the top of sterilization mechanism is fixed with connecting pipe, the bottom of connecting pipe is fixed with multiple corresponding link pipes with fermentation tank, the top of fermentation tank is fixed with connecting mechanism;When using, by starting motor, first screw rod is rotated, to drive transmission assembly to run, by the operation of transmission assembly, second screw rod and first screw rod are driven to run synchronously, by the operation of first screw rod and second screw rod, two lifting rods are driven to lift, to make connecting plate drive connecting pipe to lift, when link pipe drops, by the contact of link pipe and limit block, two limit blocks are moved in opposite directions, and spring is compressed, when limit block contacts the limit slot on link pipe, by spring, limit block is rebounded, so that limit block fixes link pipe, to connect link pipe and fermentation tank, to connect sterilization mechanism and fermentation tank.

[0004] However, the existing sterilization device mostly uses high-temperature steam sterilization, water is easy to remain in pipeline, and remaining water and high temperature are easy to affect the service life of pipeline, and the existing sterilization device is difficult to ensure that steam fills pipeline, which is easy to affect the sterilization effect of pipeline. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the utility model provides a kind of intestinal flora transfer conduit sterilization device, which is sterilized by ozone, which can avoid damage to pipeline caused by water vapor, high temperature and the like, prolong the service life of pipeline, and ozone can be recycled, save production cost, and make ozone fill pipeline during sterilization process, ensure the sterilization effect of pipeline.

[0006] The utility model discloses a kind of intestinal flora transplanting pipeline sterilization devices, including production mechanism;Still including exhaust mechanism, filtering mechanism, air extraction mechanism and sterilization mechanism, exhaust mechanism is installed on production mechanism and air and impurity in production mechanism are conveniently discharged, filtering mechanism is installed on exhaust mechanism and filters impurity, air extraction mechanism is installed on filtering mechanism and air in production mechanism is extracted, sterilization mechanism is installed on air extraction mechanism and ozone is delivered to production mechanism and is sterilized in inside;Air in production mechanism and exhaust mechanism is extracted by starting air extraction mechanism, air flow is used to blow down and clean impurity in production mechanism, filtering mechanism filters impurity, after production mechanism and exhaust mechanism are in vacuum state, ozone is delivered to production mechanism and is sterilized in exhaust mechanism by sterilization mechanism, ozone in production mechanism and exhaust mechanism is reimported to sterilization mechanism and is stored after sterilization is completed.

[0007] Preferably, the production mechanism includes multiple groups of fermentation tanks, a transfer conduit, a filter, and a first valve, the multiple groups of fermentation tanks are each mounted on a working surface, the transfer conduit is in communication with the interiors of the multiple groups of fermentation tanks, the filter is mounted on the transfer conduit, and the first valve is mounted on the transfer conduit; the first valve is opened to start the air extraction mechanism, air is filtered by the filter and then enters the transfer conduit and the multiple groups of fermentation tanks, the air carries and discharges impurities in the transfer conduit and the multiple groups of fermentation tanks, and then the first valve is closed to facilitate the air extraction mechanism to extract air in the multiple groups of fermentation tanks and the transfer conduit, so that the multiple groups of fermentation tanks and the transfer conduit are in a vacuum state.

[0008] Preferably, the exhaust mechanism includes a blow-off pipe, a second valve, and a pressure gauge, the blow-off pipe is in communication with the interiors of the multiple groups of fermentation tanks, the second valve is mounted on the blow-off pipe, and the pressure gauge is mounted on the blow-off pipe; impurities and air enter the filtering mechanism through the blow-off pipe for collection, and the air pressure in the blow-off pipe is observed through the pressure gauge, and the second valve is closed when the pressure gauge reading is zero.

[0009] Preferably, the filtering mechanism includes a filter box, three sets of filter plates, three sets of sealing plates, and three sets of handles, the filter box is in communication with the interior of the blow-off pipe, three sets of limiting grooves are formed in the filter box, the three sets of filter plates are each slidably mounted in the three sets of limiting grooves of the filter box, the three sets of sealing plates are each mounted on the three sets of filter plates, and the three sets of handles are each mounted on the three sets of sealing plates; air and impurities in the blow-off pipe enter the filter box, the impurities are filtered out by the three sets of filter plates, and the air passes through the three sets of filter plates and is discharged by the air extraction mechanism; after long-term use, the filter plates can be pulled out and cleaned by operating the handles, and the sealing plates are provided to enhance the sealing performance of the device to prevent air leakage.

[0010] Preferably, the air extraction mechanism comprises a vacuum pump, an air extraction pipe, an air conveying pipe and a third valve, the vacuum pump is installed on the filter box, the air extraction pipe is installed on the vacuum pump and communicates with the inside of the filter box, the air conveying pipe is installed on the vacuum pump, and the third valve is installed on the air conveying pipe; the vacuum pump is started, air is extracted by the vacuum pump through the air extraction pipe, and the extracted air is discharged through the third valve; when sterilization is completed, the third valve is closed, and the vacuum pump extracts ozone through the air extraction pipe, and the ozone is conveyed into the sterilization mechanism through the air conveying pipe for recycling.

[0011] Preferably, the sterilization mechanism comprises a gas storage tank, an oxygen conveying pipe, a fourth valve, a backflow pipe and a fifth valve, the gas storage tank is installed on the working surface, the oxygen conveying pipe is installed on the gas storage tank and communicates with the inside of the seed transfer pipeline, the fourth valve is installed on the oxygen conveying pipe, the backflow pipe is installed on the gas storage tank and communicates with the inside of the air conveying pipe, and the fifth valve is installed on the backflow pipe; the first valve and the second valve are closed, the fourth valve is opened, the gas storage tank fills the ozone into the multiple groups of fermentation tanks, the seed transfer pipeline and the blowdown pipe through the oxygen conveying pipe, the ozone pressure is detected through the pressure gauge, the ozone is ensured to fill the ozone, the pipeline is sterilized by using the ozone, after a certain time, the second valve and the third valve are closed, the fifth valve is opened, and the vacuum pump is started; the ozone is conveyed back into the gas storage tank through the air conveying pipe and the backflow pipe by the vacuum pump for recycling.

[0012] Preferably, the gas storage tank is provided with a pressure gauge, and the gas storage tank communicates with the ozone generator; when the pressure gauge shows that the pressure in the gas storage tank is too low, the ozone generator can be started in time to supplement the gas storage tank, so that the ozone can completely fill the production mechanism.

[0013] Compared with the prior art, the beneficial effects of the utility model are that: the air in the production mechanism and the exhaust mechanism is extracted by starting the air extraction mechanism, the impurities in the production mechanism are cleaned by using the airflow, the impurities are filtered by the filter mechanism, after the production mechanism and the exhaust mechanism are in a vacuum state, the ozone is conveyed into the production mechanism and the exhaust mechanism by the sterilization mechanism to sterilize and treat, and the ozone in the production mechanism and the exhaust mechanism is conveyed back into the sterilization mechanism for storage by the air extraction mechanism after sterilization is completed. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 is the isometric structure schematic diagram of the utility model;

[0015] Figure 2 is the local enlarged isometric structure schematic diagram of the production mechanism of the utility model;

[0016] Figure 3 is the local enlarged isometric structure schematic diagram of the exhaust mechanism and the air extraction mechanism of the utility model;

[0017] Figure 4 is the local enlarged sectional isometric structure schematic diagram of the filter mechanism of the utility model;

[0018] Figure 5 Figure 3 is a perspective view of the sterilization mechanism of the utility model.

[0019] Marked in the drawing: 01, production mechanism; 11, fermentation tank; 12, transfer conduit; 13, filter; 14, first valve; 02, exhaust mechanism; 21, blowdown pipe; 22, second valve; 23, pressure gauge; 03, filtering mechanism; 31, filter box; 32, filter plate; 33, sealing plate; 34, handle; 04, air extraction mechanism; 41, vacuum pump; 42, air extraction pipe; 43, gas conveying pipe; 44, third valve; 05, sterilization mechanism; 51, gas storage tank; 52, oxygen conveying pipe; 53, fourth valve; 54, return pipe; 55, fifth valve. DETAILED DESCRIPTION

[0020] In order to facilitate the understanding of the utility model, the utility model will be described more fully below with reference to the relevant drawings. The utility model can be realized in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and comprehensive.

[0021] Example 1

[0022] The utility model discloses a kind of intestinal flora transplanting pipeline sterilization devices, including production mechanism 01;Still including exhaust mechanism 02, filtering mechanism 03, air extraction mechanism 04 and sterilization mechanism 05, exhaust mechanism 02 is installed on production mechanism 01 and air and impurity in production mechanism 01 are conveniently discharged, filtering mechanism 03 is installed on exhaust mechanism 02 and impurity is filtered, air extraction mechanism 04 is installed on filtering mechanism 03 and air in production mechanism 01 is extracted, sterilization mechanism 05 is installed on air extraction mechanism 04 and ozone is delivered to production mechanism 01 to be sterilized;Production mechanism 01 includes multiple groups of fermentation tank 11, transplanting pipeline 12, filter 13 and first valve 14, multiple groups of fermentation tank 11 are all installed on working surface, transplanting pipeline 12 is communicated with the inside of multiple groups of fermentation tank 11, filter 13 is installed on transplanting pipeline 12, and first valve 14 is installed on transplanting pipeline 12;Exhaust mechanism 02 includes blow-off pipe 21, second valve 22 and pressure gauge 23, blow-off pipe 21 is communicated with the inside of multiple groups of fermentation tank 11, second valve 22 is installed on blow-off pipe 21, and pressure gauge 23 is installed on blow-off pipe 21;Filtering mechanism 03 includes filter box 31, three groups of filter plate 32, three groups of sealing plate 33 and three groups of handle 34, filter box 31 is communicated with the inside of blow-off pipe 21, three groups of limiting grooves are formed on filter box 31, three groups of filter plate 32 are slidably installed in the three groups of limiting grooves of filter box 31 respectively, three groups of sealing plate 33 are installed on three groups of filter plate 32 respectively, and three groups of handle 34 are installed on three groups of sealing plate 33 respectively;Air extraction mechanism 04 includes vacuum pump 41, air extraction pipe 42, gas conveying pipe 43 and third valve 44, vacuum pump 41 is installed on filter box 31, air extraction pipe 42 is installed on vacuum pump 41 and is communicated with the inside of filter box 31, gas conveying pipe 43 is installed on vacuum pump 41, and third valve 44 is installed on gas conveying pipe 43;When it works, first, open first valve 14, second valve 22 and third valve 44, close oxygen conveying pipe 52 and fifth valve 55, start vacuum pump 41, vacuum pump 41 extracts air through air extraction pipe 42, air is filtered by filter 13 and then enters transplanting pipeline 12 and multiple groups of fermentation tank 11, air carries and discharges impurity in transplanting pipeline 12 and multiple groups of fermentation tank 11, impurity and air enter filter box 31 through blow-off pipe 21, impurity is filtered by three groups of filter plate 32, air passes through three groups of filter plate 32 and is discharged through gas conveying pipe 43, after long time use, handle 34 can be operated to extract filter plate 32 and clean, sealing plate 33 is arranged to enhance the sealing property of device, avoid air leakage, then close first valve 14, facilitate vacuum pump 41 to extract air in multiple groups of fermentation tank 11 and transplanting pipeline 12, close second valve 22 when the value of pressure gauge 23 is zero, vacuum pump 41 stops air extraction, facilitate sterilization mechanism 05 to deliver ozone to production mechanism 01 to be sterilized.

[0023] Example 2

[0024] As Figures 1 to 5As shown, the intestinal flora transplanting pipeline sterilization device, on the basis of embodiment 1;Sterilization mechanism 05 includes gas storage tank 51, oxygen supply pipe 52, fourth valve 53, reflux pipe 54 and fifth valve 55, gas storage tank 51 is installed on the working surface, oxygen supply pipe 52 is installed on gas storage tank 51 and is communicated with the inside of transplanting pipeline 12, fourth valve 53 is installed on oxygen supply pipe 52, reflux pipe 54 is installed on gas storage tank 51 and is communicated with the inside of gas supply pipe 43, fifth valve 55 is installed on reflux pipe 54;It also includes that the gas storage tank 51 is provided with a pressure gauge, and the gas storage tank 51 is communicated with the ozone generator;When it works, first, open the first valve 14, the second valve 22 and the third valve 44, close the oxygen supply pipe 52 and the fifth valve 55, start the vacuum pump 41, the vacuum pump 41 draws air through the air exhaust pipe 42, the air is filtered by the filter 13 and enters the transplanting pipeline 12 and the multiple groups of fermentation tanks 11, the air carries the impurities in the transplanting pipeline 12 and the multiple groups of fermentation tanks 11 and discharges, the impurities and the air enter the filter box 31 through the blow-off pipe 21, the impurities are filtered out by the three groups of filter plates 32, the air passes through the three groups of filter plates 32 and is discharged through the gas supply pipe 43, the filter plate 32 can be pulled out and cleaned after long-term use, the sealing plate 33 is arranged to enhance the sealing property of the device, air leakage is avoided, then the first valve 14 is closed, the air in the multiple groups of fermentation tanks 11 and the transplanting pipeline 12 is extracted by the vacuum pump 41, when the pressure gauge 23 value is zero, the second valve 22 is closed, the vacuum pump 41 stops drawing air, the first valve 14 and the second valve 22 are closed, the fourth valve 53 is opened, the gas storage tank 51 fills the multiple groups of fermentation tanks 11, the transplanting pipeline 12 and the blow-off pipe 21 with ozone through the oxygen supply pipe 52, the ozone pressure is detected through the pressure gauge 23, the ozone is ensured to be filled, the pipeline is sterilized by using ozone, after a certain time, the second valve 22 and the third valve 44 are closed, the fifth valve 55 is opened, the vacuum pump 41 is started, the ozone is retransported into the gas storage tank 51 through the gas supply pipe 43 and the reflux pipe 54 and is recycled, when the pressure gauge shows that the pressure in the gas storage tank 51 is too low, in order to avoid that the ozone cannot completely fill the production mechanism 01, the ozone generator can be started in time to supplement into the gas storage tank 51.

[0025] The vacuum pump 41 of the utility model is purchased on the market, and the technical personnel in the industry only needs to install and operate according to the attached instruction manual, without the technical personnel in the field paying creative labor.

[0026] The above only is the preferred implementation of the utility model, it should be pointed out that, for the ordinary technical personnel in the technical field, on the premise of not departing from the technical principle of the utility model, a number of improvements and variations can be made, and these improvements and variations should be regarded as the protection range of the utility model.

Claims

1. An apparatus for sterilizing a pipeline for intestinal flora transplantation, comprising a production mechanism (01); characterized in that, The exhaust mechanism (02) is installed on the production mechanism (01) and facilitates the discharge of air and impurities in the production mechanism (01), the filtering mechanism (03) is installed on the exhaust mechanism (02) and filters the impurities, the air extraction mechanism (04) is installed on the filtering mechanism (03) and extracts the air in the production mechanism (01), and the sterilization mechanism (05) is installed on the air extraction mechanism (04) and delivers ozone into the production mechanism (01) for sterilization.

2. A device for sterilizing an enteral feeding tube according to claim 1, wherein The production mechanism (01) comprises a plurality of groups of fermentation tanks (11), a transfer tube (12), a filter (13) and a first valve (14), the plurality of groups of fermentation tanks (11) are all installed on the working surface, the transfer tube (12) is in communication with the interiors of the plurality of groups of fermentation tanks (11), the filter (13) is installed on the transfer tube (12), and the first valve (14) is installed on the transfer tube (12).

3. A device for sterilizing an enteral feeding tube according to claim 2, wherein The exhaust mechanism (02) comprises a pollution discharge pipe (21), a second valve (22) and a pressure gauge (23), the pollution discharge pipe (21) is in communication with the interiors of the plurality of groups of fermentation tanks (11), the second valve (22) is installed on the pollution discharge pipe (21), and the pressure gauge (23) is installed on the pollution discharge pipe (21).

4. A device for sterilizing an enteral feeding tube according to claim 3, wherein The filtering mechanism (03) comprises a filtering box (31), three groups of filtering plates (32), three groups of sealing plates (33) and three groups of handles (34), the filtering box (31) is in communication with the interior of the pollution discharge pipe (21), three groups of limiting grooves are formed in the filtering box (31), the three groups of filtering plates (32) are slidably installed in the three groups of limiting grooves of the filtering box (31), the three groups of sealing plates (33) are installed on the three groups of filtering plates (32), and the three groups of handles (34) are installed on the three groups of sealing plates (33).

5. A device for sterilizing an enteral feeding tube according to claim 4, wherein The air extraction mechanism (04) comprises a vacuum pump (41), an air extraction pipe (42), a gas delivery pipe (43) and a third valve (44), the vacuum pump (41) is installed on the filtering box (31), the air extraction pipe (42) is installed on the vacuum pump (41) and in communication with the interior of the filtering box (31), the gas delivery pipe (43) is installed on the vacuum pump (41), and the third valve (44) is installed on the gas delivery pipe (43).

6. A device for sterilizing an enteral feeding tube according to claim 5, wherein The sterilization mechanism (05) comprises a gas storage tank (51), an oxygen delivery pipe (52), a fourth valve (53), a backflow pipe (54) and a fifth valve (55), the gas storage tank (51) is installed on the working surface, the oxygen delivery pipe (52) is installed on the gas storage tank (51) and in communication with the interior of the transfer tube (12), the fourth valve (53) is installed on the oxygen delivery pipe (52), the backflow pipe (54) is installed on the gas storage tank (51) and in communication with the interior of the gas delivery pipe (43), and the fifth valve (55) is installed on the backflow pipe (54).

7. A device for sterilizing an enteral feeding tube according to claim 6, wherein The gas storage tank (51) is provided with a pressure gauge, and the gas storage tank (51) is in communication with an ozone generator.

Citation Information

Patent Citations

  • Probiotic seed transfer pipeline sterilization device

    CN220860393U