CN211284045U - Probiotics separation filter equipment - Google Patents

Probiotics separation filter equipment Download PDF

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Publication number
CN211284045U
CN211284045U CN201921912450.2U CN201921912450U CN211284045U CN 211284045 U CN211284045 U CN 211284045U CN 201921912450 U CN201921912450 U CN 201921912450U CN 211284045 U CN211284045 U CN 211284045U
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filter
pipeline
baffle
cavity
separation
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CN201921912450.2U
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Chinese (zh)
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吴常忠
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Anhui Tiankai Biotechnology Co ltd
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Anhui Tiankai Biotechnology Co ltd
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Abstract

The utility model discloses a benefit fungus separation and filtration device, which comprises a supporting shell body, go up the baffle, lower baffle, the funnel, go up the pipeline, filter the cavity, lower pipeline and holding ware, it sets up to support the square cavity of top open-ended, go up the baffle and locate upper portion in the support casing, lower baffle is located lower part in the support casing, go up the pipeline and locate on the baffle, the pipeline top is located to the funnel, baffle below is located down to the lower pipeline, it locates between baffle and the lower baffle to filter the cavity, filter the cavity top and go up the pipeline connection, it is connected with lower pipeline top to filter the cavity top and pass down the baffle, it locates on the support casing diapire and locates under the pipeline export down to hold the ware. The utility model belongs to the technical field of benefit fungus preparation facilities, specifically be one kind can be with the impurity filtering separation in the zymotic fluid, to the inside bacterial contamination zymotic fluid of avoiding in the air and the device that disinfects in advance of device, carry out the activity decline that temperature control avoided benefit fungus to filter the cavity.

Description

Probiotics separation filter equipment
Technical Field
The utility model belongs to the technical field of living fungus preparation facilities of benefit specifically indicates a living fungus separation and filtration device of benefit.
Background
The probiotics are microorganisms which have medical and health care effects on human and animal organisms by improving the balance of microorganisms and enzymes of the organisms and stimulating specific or non-specific immune mechanisms, and at present, two main production processes of probiotic products are a solid fermentation method and a liquid submerged fermentation method. The fermentation liquor is filtered after the liquid fermentation, the probiotics is filtered and separated out, a filtering device is not configured at the bottom of a small fermentation tank in a laboratory, the common filtering device is not provided with a temperature control and a sterilizing device, the probiotics can be polluted during filtering, and meanwhile, the survival rate of the probiotics with special requirements on the temperature can be reduced due to the fact that the temperature cannot be controlled.
SUMMERY OF THE UTILITY MODEL
For solving the above-mentioned current difficult problem, the utility model provides a novel living fungus of benefit separates filter equipment not only can carry out the filtration separation with the impurity in the zymotic fluid, can disinfect in advance to the device is inside simultaneously to guarantee filterable in-process air and the inside bacterium of device can not pollute the zymotic fluid, thereby can carry out temperature control to the filter chamber body simultaneously and make the filter process be in the suitable temperature of living fungus of benefit, avoid the activity decline of living fungus of benefit.
The utility model adopts the following technical scheme: the utility model provides a probiotic separation and filtration device, includes support casing, last baffle, lower baffle, funnel, top tube way, filters cavity, lower pipeline and holds the ware, the support casing is the setting of square open-ended rectangle cavity, go up the baffle and locate upper portion in the support casing, lower part in the support casing is located to the baffle down, the top tube way is located on the baffle, the pipeline top is located to the funnel, baffle below is located down to the lower pipeline, it locates between baffle and the lower baffle to filter the cavity, it is connected with the top tube way to filter the cavity top, it passes down the baffle and is connected with lower pipeline top to filter the cavity top, it locates on the support casing diapire and locates under the pipeline export down to hold the ware.
Further, filter cavity inside filter screen one, filter screen two, filtration membrane and filter chamber bactericidal lamp be equipped with, filter screen one is located on the cross-section of filter cavity upper portion, filter screen two is located on the cross-section of filter cavity and is located the filter screen below, filter screen locates on the cross-section of filter cavity, and locates two below of filter screen, the filter chamber bactericidal lamp is the annular setting and locates on the lateral wall of filter cavity, the filter chamber bactericidal lamp is equipped with three groups and locates respectively filter screen one top, filter screen one and between the filter screen two, filter the membrane below.
Furthermore, be equipped with bracing piece and last bactericidal lamp in going up the pipeline, go up the bracing piece and locate on the pipeline inner wall, go up the bactericidal lamp and be rectangular shape and locate bracing piece center.
Further, be equipped with lower support rod and lower bactericidal lamp in the lower pipeline, the lower support rod is located on the lower pipeline inner wall, lower bactericidal lamp is rectangular shape and locates the support rod center.
Furthermore, the filter cavity bactericidal lamp, the upper bactericidal lamp and the lower bactericidal lamp are ultraviolet bactericidal lamps, and the interiors of the filter cavity, the upper pipeline and the lower pipeline can be sterilized after the filter cavity bactericidal lamp, the upper bactericidal lamp and the lower bactericidal lamp are electrified.
Furthermore, the upper partition plate is connected with the upper pipeline in a sealing mode, the lower partition plate is connected with the lower pipeline in a sealing mode, and a water bath cavity is formed between the upper partition plate and the lower partition plate.
Furthermore, the side wall of the supporting shell is provided with an electric heating wire, and the electric heating wire is arranged between the upper partition plate and the lower partition plate.
Furthermore, the heating wire is arranged on the inner side wall of the support shell and is arranged between the upper partition plate and the lower partition plate.
Furthermore, a water inlet and a water outlet are arranged between the upper partition plate and the lower partition plate on the side wall of the supporting shell, and the water inlet and the water outlet are arranged on two opposite side walls of the supporting shell.
Furthermore, the mesh number of the first filter screen is smaller than that of the second filter screen, and the impurities filtered and separated by the first filter screen are larger than those filtered and separated by the second filter screen.
Adopt above-mentioned structure the utility model discloses the beneficial effect who gains as follows: according to the probiotic separation and filtration device, the ultraviolet sterilization devices are arranged inside the pipeline and the filtration cavity, so that the pipeline and the interior of the filtration cavity are sterilized, and the problem that bacteria in the air neutralization device pollute fermentation liquid and influence the purity of probiotics is avoided; meanwhile, a water bath cavity is arranged outside the filtering cavity, so that the temperature of the filtering cavity can be controlled, and the influence of the temperature on the activity of probiotics is avoided.
Drawings
Fig. 1 is an overall schematic view of the probiotic separation and filtration device of the present invention;
fig. 2 is a schematic view of the internal structure of the probiotic separation and filtration device of the present invention;
fig. 3 is the outside schematic view of the filtering cavity of the probiotic separation and filtration device of the present invention.
Wherein, 1, support the casing, 2, go up the baffle, 3, lower baffle, 4, funnel, 5, go up the pipeline, 6, filter the cavity, 7, lower pipeline, 8, hold the ware, 9, filter screen one, 10, filter screen two, 11, filtration membrane, 12, filter chamber bactericidal lamp, 13, go up the bracing piece, 14, go up the bactericidal lamp, 15, lower support bar, 16, lower bactericidal lamp, 17, water bath cavity, 18, heating wire, 19, the water inlet, 20, the delivery port.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1-3, the technical scheme adopted by the utility model is as follows: the utility model provides a probiotic separation and filtration device, is including supporting casing 1, last baffle 2, lower baffle 3, funnel 4, last pipeline 5, filtering cavity 6, lower pipeline 7 and holding ware 8, support casing 1 and be the setting of upper portion open-ended rectangle cavity, it locates upper portion in supporting casing 1 to go up baffle 2, lower baffle 3 is located and is supported casing 1 well lower part down, go up pipeline 5 and locate on baffle 2, funnel 4 locates 5 tops of last pipeline, baffle 3 below is located down to pipeline 7, it locates between baffle 2 and the lower baffle 3 to filter cavity 6, it is connected with last pipeline 5 to filter 6 tops of cavity, it passes baffle 3 and is connected with 7 tops of lower pipeline down to filter 6 tops of cavity, it locates on the 1 diapire of support casing and locates under 7 exports of lower pipeline to hold ware 8.
Filter 6 inside filter screens 9, two 10 of filter screens, filtration membrane 11 and the filter chamber bactericidal lamp 12 of being equipped with, filter screen 9 is located on the 6 upper portion cross-sections of filter chamber, filter screen two 10 are located and are filtered on the 6 cross-sections of chamber and locate filter screen 9 below, filtration membrane 11 is located and is filtered on the 6 cross-sections of chamber, and locates filter screen two 10 below, filter chamber bactericidal lamp 12 is the annular setting and locates on the lateral wall of filtering chamber 6, filter chamber bactericidal lamp 12 is equipped with three groups and locates respectively filter screen 9 top, between filter screen 9 and the two 10 of filter screen, filter membrane 11 below.
Go up and be equipped with bracing piece 13 and last bactericidal lamp 14 in the pipeline 5, go up bracing piece 13 and locate on the 5 inner walls of last pipeline, go up bactericidal lamp 14 and be rectangular shape and locate bracing piece 13 center.
The lower pipeline 7 is internally provided with a lower support rod 15 and a lower germicidal lamp 16, the lower support rod 15 is arranged on the inner wall of the lower pipeline 7, and the lower germicidal lamp 16 is in a long strip shape and is arranged at the center of the upper support rod 13.
The filter chamber germicidal lamp 12, the upper germicidal lamp 14 and the lower germicidal lamp 16 are ultraviolet germicidal lamps.
Go up between baffle 2 and the upper pipeline 5 sealing connection, sealing connection between baffle 3 and the lower pipeline 7 down, it forms water bath cavity 17 to go up between baffle 2 and the lower baffle 3.
The side wall of the supporting shell 1 is provided with a heating wire 18, and the heating wire 18 is arranged between the upper partition plate 2 and the lower partition plate 3.
An electric heating wire 18 is arranged on the inner side wall of the supporting shell 1, and the electric heating wire 18 is arranged between the upper partition plate 2 and the lower partition plate 3.
A water inlet 19 and a water outlet 20 are arranged between the upper partition plate 2 and the lower partition plate 3 on the side wall of the support shell 1, and the water inlet 19 and the water outlet 20 are arranged on two opposite side walls of the support shell 1.
The mesh number of the first filter screen 9 is smaller than that of the second filter screen 10.
When the device is used specifically, the filter cavity sterilizing lamp 12, the upper sterilizing lamp 14 and the lower sterilizing lamp 16 are turned on to carry out ultraviolet sterilization on the upper pipeline 5, the filter cavity 6 and the lower pipeline 7, water with the suitable temperature for probiotics is injected from the water inlet 19, the flow of the water outlet 20 is controlled to ensure that the water bath cavity 17 can be filled with the water, if the temperature required by the probiotics is higher than the temperature of normal water, the electric heating wire 18 can be turned on to ensure that the temperature of the water in the water bath cavity 17 meets the suitable temperature for the probiotics, the filter cavity sterilizing lamp 12, the upper sterilizing lamp 14 and the lower sterilizing lamp 16 are turned off, fermentation liquor is poured in from the funnel 4, the fermentation liquor flows through the upper pipeline 5 to enter the filter cavity 6, the fermentation liquor passes through the filter screen I9, the filter screen II 10 and the filter membrane 11, impurities in the fermentation liquor stop on the filter screen I9, the filter, in the process, the pollution of the probiotics in the fermentation liquor by external bacteria is avoided, and meanwhile, the probiotics are ensured to be always at a proper temperature in the whole filtering process, so that the activity reduction is avoided.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.

Claims (10)

1. A probiotic separation filter equipment which characterized in that: including supporting the casing, going up baffle, lower baffle, funnel, going up the pipeline, filtering the cavity, lower pipeline and holding the ware, it sets up to support the casing to be the square open-ended rectangle cavity in the top, go up the baffle and locate upper portion in supporting the casing, lower part in the support casing is located to the baffle down, go up on the pipeline locates the baffle, the pipeline top is located to the funnel, lower pipeline locates the baffle below down, filter the cavity and locate between baffle and the lower baffle, filter the cavity top and go up the pipeline connection, it passes down the baffle and is connected with lower pipeline top to filter the cavity top, it locates on the support casing diapire and locates under the pipeline export down to hold the ware.
2. The probiotic separation and filtration device according to claim 1, characterized in that: the filter chamber is internally provided with a first filter screen, a second filter screen, a filter membrane and a filter chamber bactericidal lamp, the first filter screen is arranged on the cross section of the upper part of the filter chamber, the second filter screen is arranged on the cross section of the filter chamber and is arranged below the filter screen, the filter membrane is arranged on the cross section of the filter chamber and is arranged below the filter screen, the filter chamber bactericidal lamp is arranged on the side wall of the filter chamber in an annular shape, and the filter chamber bactericidal lamp is provided with three groups of filter screens, is arranged above the first filter screen and between the first filter screen and the second filter screen and is arranged below the filter membrane.
3. The probiotic separation and filtration device according to claim 2, characterized in that: the upper pipeline is internally provided with an upper supporting rod and an upper sterilizing lamp, the upper supporting rod is arranged on the inner wall of the upper pipeline, and the upper sterilizing lamp is in a long strip shape and is arranged at the center of the upper supporting rod.
4. The probiotic separation and filtration device according to claim 3, characterized in that: the lower pipeline is internally provided with a lower support rod and a lower bactericidal lamp, the lower support rod is arranged on the inner wall of the lower pipeline, and the lower bactericidal lamp is in a long strip shape and is arranged at the center of the upper support rod.
5. The probiotic separation and filtration device according to claim 4, wherein: the filter cavity germicidal lamp, the upper germicidal lamp and the lower germicidal lamp are ultraviolet germicidal lamps.
6. The probiotic separation and filtration device according to claim 5, characterized in that: the upper baffle plate is connected with the upper pipeline in a sealing mode, the lower baffle plate is connected with the lower pipeline in a sealing mode, and a water bath cavity is formed between the upper baffle plate and the lower baffle plate.
7. The probiotic separation and filtration device according to claim 6, characterized in that: the side wall of the supporting shell is provided with an electric heating wire, and the electric heating wire is arranged between the upper partition plate and the lower partition plate.
8. The probiotic separation and filtration device according to claim 7, characterized in that: the heating wire is arranged on the inner side wall of the supporting shell and is arranged between the upper partition plate and the lower partition plate.
9. The probiotic separation and filtration device according to claim 8, wherein: a water inlet and a water outlet are arranged between the upper partition plate and the lower partition plate on the side wall of the supporting shell, and the water inlet and the water outlet are arranged on two opposite side walls of the supporting shell.
10. The probiotic separation and filtration device according to claim 9, characterized in that: the mesh number of the first filter screen is smaller than that of the second filter screen.
CN201921912450.2U 2019-11-07 2019-11-07 Probiotics separation filter equipment Active CN211284045U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921912450.2U CN211284045U (en) 2019-11-07 2019-11-07 Probiotics separation filter equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921912450.2U CN211284045U (en) 2019-11-07 2019-11-07 Probiotics separation filter equipment

Publications (1)

Publication Number Publication Date
CN211284045U true CN211284045U (en) 2020-08-18

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ID=72031730

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921912450.2U Active CN211284045U (en) 2019-11-07 2019-11-07 Probiotics separation filter equipment

Country Status (1)

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CN (1) CN211284045U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111991937A (en) * 2020-09-10 2020-11-27 南京航空航天大学 Air purification device based on online virus killing of multilevel filtration

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111991937A (en) * 2020-09-10 2020-11-27 南京航空航天大学 Air purification device based on online virus killing of multilevel filtration

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