CN216947003U - Illumination inflatable microbial cultivation equipment - Google Patents

Illumination inflatable microbial cultivation equipment Download PDF

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Publication number
CN216947003U
CN216947003U CN202122733647.3U CN202122733647U CN216947003U CN 216947003 U CN216947003 U CN 216947003U CN 202122733647 U CN202122733647 U CN 202122733647U CN 216947003 U CN216947003 U CN 216947003U
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lower cone
pipe
liner
inner container
cone
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CN202122733647.3U
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Chinese (zh)
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杨石
闫玉涛
贾吉冬
薛鹏
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Yucheng Zeyu Mechanical Equipment Co ltd
Zhuhai Guangzao Life Science Co ltd
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Yucheng Zeyu Mechanical Equipment Co ltd
Zhuhai Guangzao Life Science Co ltd
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Priority to CN202122733647.3U priority Critical patent/CN216947003U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A40/00Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
    • Y02A40/80Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in fisheries management

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Abstract

The utility model relates to the technical field of microorganism culture equipment, and discloses illumination inflatable microorganism culture equipment, which solves the problems that the existing microorganism culture equipment cannot realize sealed sterility, the utilization rate of a light source is low, and the existing microorganism culture equipment is inconvenient to clean and comprises an inner container cylinder, an inner container lower cone, support legs and a dish-shaped end socket, wherein the inner container lower cone is welded at the lower end of the inner container cylinder, the support legs are circumferentially connected at the lower end of the inner container lower cone, the dish-shaped end socket is connected at the upper end of the inner container cylinder, a lighting connecting pipe is connected at the middle part of the upper end of the dish-shaped end socket, a transparent pipe is connected inside the lighting connecting pipe, a light lamp is arranged inside the transparent pipe, and a manhole is connected to one side of the upper end of the dish-shaped end socket, the washing pipe and the rotary washing ball are matched, so that the washing is convenient.

Description

Illumination inflatable microbial cultivation equipment
Technical Field
The utility model belongs to the technical field of microorganism culture equipment, and particularly relates to illumination inflatable microorganism culture equipment.
Background
The existing microalgae culture equipment uses a square plastic container, the upper part is open, oxygen supply is carried out by utilizing the fish tank inflation equipment, a light source can only be installed on the wall or the upper part of the container, the service life of the container is short, resource waste exists, the whole sealing cannot be realized, the contamination is easily caused, the oxygen supply cannot be accurately controlled by the simple inflation equipment, the utilization rate of the edge light source is low, the manual brushing is realized, the manual labor intensity is increased, and sanitary dead angles exist.
Disclosure of Invention
Aiming at the situation, in order to overcome the defects of the prior art, the utility model provides illumination inflatable microorganism culture equipment, which effectively solves the problems that the existing microorganism culture equipment cannot realize sealing and sterility, has low light source utilization rate and is inconvenient to clean.
In order to achieve the purpose, the utility model provides the following technical scheme: an illumination inflatable microorganism culture device comprises an inner container cylinder body, an inner container lower cone, supporting legs and a dish-shaped end enclosure, the utility model discloses a beverage bottle, including inner bag barrel, funnel barrel, manhole cover, funnel barrel lower extreme welding have the landing leg under the inner bag barrel lower extreme welding, inner bag barrel upper end is connected with dish-shaped head, dish-shaped head upper end middle part is connected with the illumination takeover, illumination takeover internal connection has the hyaline tube, hyaline tube internally mounted has the light, dish-shaped head upper end one side is connected with the manhole, manhole one side is connected with the hops and adds the mouth, dish-shaped head upper end is kept away from manhole one side and is connected with the breather valve takeover, inner bag cone lower extreme one side is connected with the material pipe down, inner bag cone lower extreme one side is inlayed and is equipped with carbon dioxide and aerifys the takeover, inner bag cone upper portion one side is connected with the thermometer blind pipe down, the inner bag cone is kept away from carbon dioxide and is aerifyd takeover one side and is inlayed and is equipped with out the wine mouth, it is connected with the sample connection to go out wine mouth top.
Preferably, the outer end of the liner barrel is connected with a barrel Maitreya plate, one side of the lower portion of the barrel Maitreya plate is connected with a barrel refrigerant inlet pipe, one side of the upper portion of the barrel Maitreya plate is connected with a barrel refrigerant outlet pipe, the outer portion of the liner barrel is connected with an outer package barrel, the outer end of a lower cone of the liner is connected with the lower cone Maitreya plate, one side of the lower portion of the lower cone Maitreya plate is connected with a lower cone refrigerant inlet pipe, one side of the upper portion of the lower cone Maitreya plate is connected with a lower cone refrigerant outlet pipe, and the outer portion of the lower cone of the liner is connected with an outer package lower cone.
Preferably, heat insulation materials are filled between the outer-coated cylinder body and the inner container cylinder body and between the outer-coated lower cone and the inner container lower cone, and the heat insulation materials are polyurethane.
Preferably, the lower end of the supporting leg is connected with an adjusting bolt group, the adjusting bolt group comprises a threaded sleeve, the inner part of the threaded sleeve is in threaded connection with a screw rod, and the lower end of the screw rod is connected with a supporting block.
Preferably, the upper end of the supporting leg is welded with the contact part of the liner cylinder and the liner lower cone, an upper reinforcing plate is welded at the welding part of the liner cylinder and the supporting leg, and a lower reinforcing plate is welded at the welding part of the liner lower cone and the supporting leg.
Preferably, lifting lugs are symmetrically welded on two sides of the upper end of the dish-shaped seal head, and an escalator hanging lug is welded on one side of the dish-shaped seal head.
Preferably, the inside of the lighting connecting pipe is connected with a washing pipe, the lower end of the washing pipe is connected with a rotary washing ball, the outside of the washing pipe is connected with the outer barrel through a support, one end, far away from the rotary washing ball, of the washing pipe is connected with a mechanical adjusting valve connecting pipe, and one end, far away from the rotary washing ball, of the mechanical adjusting valve connecting pipe is provided with a diaphragm pressure gauge.
Preferably, a pull brace rod is connected between the support legs, a support sleeve is connected to the upper end of one pull brace rod, and the material pipe is located in the support sleeve.
Compared with the prior art, the utility model has the beneficial effects that:
according to the utility model, the device is designed to be an integral cylinder, the bottom part is designed to be a cone with 60 degrees, the upper part is designed to be a dome, the side wall is provided with the barrel body Maitreya plate and the lower cone Maitreya plate, the constant-temperature water circulation device is externally provided with a polyurethane heat-insulating material layer, and meanwhile, the adjustment of the oxygen environment in the device can be realized through the carbon dioxide gas charging connecting pipe additionally arranged at the bottom part of the device, so that the device can be sealed and sterile, accurately control the temperature, accurately control the oxygen supply amount, realize automatic culture, and in addition, the immersion type illumination structure additionally arranged at the middle position of the upper part of the device enables the utilization rate of a light source to be high, and the device is convenient to clean by matching with a washing pipe and a rotary washing ball.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the principles of the utility model and not to limit the utility model.
In the drawings:
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is an enlarged schematic view of A of FIG. 1 according to the present invention;
FIG. 3 is an enlarged schematic view of B of FIG. 1 according to the present invention;
in the figure: 1. a liner cylinder; 2. a lower cone of the inner container; 3. a support leg; 4. a dish-shaped end enclosure; 5. an illumination adapter; 6. a transparent tube; 7. a light; 8. a manhole; 9. a hop addition port; 10. a breather valve is connected with the pipe; 11. a material pipe; 12. a carbon dioxide gas charging connection pipe; 13. a thermometer blind pipe; 14. a wine outlet; 15. a sampling port; 16. a barrel Maillard plate; 17. a cylinder refrigerant inlet pipe; 18. a cylinder refrigerant outlet pipe; 19. wrapping the cylinder body outside; 20. a lower cone miller plate; 21. a lower cone refrigerant inlet pipe; 22. a lower cone refrigerant outlet pipe; 23. wrapping a lower cone; 24. a thermal insulation material; 25. adjusting the bolt group; 2501. a threaded sleeve; 2502. a screw; 2503. a support block; 26. an upper reinforcing plate; 27. a lower reinforcing plate; 28. lifting lugs; 29. an escalator hanging lug; 30. a wash pipe; 31. rotating the washing ball; 32. a support; 33. a mechanical regulating valve connecting pipe; 34. a diaphragm pressure gauge; 35. a stay bar is pulled; 36. and a support sleeve.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments; all other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In the first embodiment, as shown in fig. 1, 2 and 3, the utility model comprises a liner cylinder 1, a liner lower cone 2, support legs 3 and a dish-shaped end enclosure 4, the liner lower cone 2 is welded at the lower end of the liner cylinder 1, the support legs 3 are circumferentially connected at the lower end of the liner lower cone 2, the upper ends of the support legs 3 are welded with the contact parts of the liner cylinder 1 and the liner lower cone 2, an upper reinforcing plate 26 is welded at the welding part of the liner cylinder 1 and the support legs 3, a lower reinforcing plate 27 is welded at the welding part of the liner lower cone 2 and the support legs 3, the firmness of the support legs 3 can be increased during welding by arranging the upper reinforcing plate 26 and the lower reinforcing plate 27, the dish-shaped end enclosure 4 is connected at the upper end of the dish-shaped end enclosure 4, a lighting pipe 5 is connected at the middle part of the upper end of the dish-shaped enclosure 4, a transparent pipe 6 is connected inside the lighting pipe 5, a light lamp 7 is arranged inside the transparent pipe 6 and the light lamp 7 extend to the lower side inside the device, thereby the light source utilization rate of the device is high, one side of the upper end of the disc-shaped seal head 4 is connected with a manhole 8, one side of the manhole 8 is connected with a hop adding port 9, one side of the upper end of the disc-shaped seal head 4, which is far away from the manhole 8, is connected with a breather valve connecting pipe 10, two sides of the upper end of the disc-shaped seal head 4 are symmetrically welded with lugs 28, one side of the disc-shaped seal head 4 is welded with an escalator hanging lug 29, one side of the lower end of the liner lower cone 2 is connected with a material pipe 11, one side of the lower end of the liner lower cone 2 is embedded with a carbon dioxide inflating connecting pipe 12, the adjustment of the oxygen environment in the device can be realized, one side of the upper part of the liner lower cone 2 is connected with a thermometer blind pipe 13, the internal temperature of the device is conveniently measured, one side of the liner lower cone 2, which is far away from the carbon dioxide inflating connecting pipe 12, is embedded with a wine outlet 14, a sampling port 15 is connected above the wine outlet 14, a pull support rod 35 is connected between the support rods 35, the material tube 11 is located within the support sleeve 36.
In the second embodiment, on the basis of the first embodiment, the outer end of the liner cylinder 1 is connected with a cylinder body miller plate 16, one side of the lower part of the cylinder body miller plate 16 is connected with a cylinder body refrigerant inlet pipe 17, one side of the upper part of the cylinder body miller plate 16 is connected with a cylinder body refrigerant outlet pipe 18, the outer part of the liner cylinder 1 is connected with an outer coating cylinder body 19, the outer end of the liner lower cone 2 is connected with a lower cone miller plate 20, one side of the lower part of the lower cone miller plate 20 is connected with a lower cone refrigerant inlet pipe 21, one side of the upper part of the lower cone miller plate 20 is connected with a lower cone refrigerant outlet pipe 22, the outer coating lower cone 2 is connected with an outer coating lower cone 23, the outer coating cylinder body 19 and the liner cylinder 1, and the space between the outer coating lower cone 23 and the liner lower cone 2 are filled with heat insulation materials 24, and the heat insulation materials 24 are polyurethane;
the device is formed into a constant temperature water circulation device through a cylindrical body Maitreya plate 16 and a lower cone Maitreya plate 20 which are arranged outside the device, and the temperature can be adjusted.
In the third embodiment, on the basis of the first embodiment, the lower end of the supporting leg 3 is connected with an adjusting bolt group 25, the adjusting bolt group 25 comprises a threaded sleeve 2501, a threaded rod 2502 is connected to the inner thread of the threaded sleeve 2501, and a supporting block 2503 is connected to the lower end of the threaded rod 2502, so that the threaded sleeve 2501 is rotated to drive the threaded rod 2502 to move, the height of the supporting block 2503 is adjusted, and the supporting balance of the device is slightly adjusted.
Fourth embodiment, on the basis of first embodiment, illumination takeover 5 internal connection has wash pipe 30, wash pipe 30 lower extreme is connected with rotatory washing ball 31, wash pipe 30 outside is connected with outsourcing barrel 19 through support 32, wash pipe 30 is kept away from rotatory washing ball 31 one end and is connected with mechanical type governing valve takeover 33, diaphragm pressure gauge 34 is installed to mechanical type governing valve takeover 33 one end, through wash pipe 30 and rotatory washing ball 31, can make the water source get into in the rotatory washing ball 31, utilize the rotatory mode to clean the device inner wall, need not artifical cleanness.
The working principle is as follows: when the device is used, a liquid culture medium is positioned in a fermentation containing cavity of a tank body formed by the inner container barrel 1 and the inner container lower cone 2, the fermentation containing cavity is closed under the matching of the disc-shaped end socket 4, the temperature of the inner container barrel 1 and the inner container lower cone 2 can be controlled through the barrel miller plate 16 and the lower cone miller plate 20, so that the temperature of the inner container barrel 1 and the inner container lower cone 2 can reach the temperature required by fermentation, meanwhile, the outer package barrel 19 and the outer package lower cone 23 are sleeved outside the inner container barrel 1 and the inner container lower cone 2 to form a heat preservation containing cavity, polyurethane heat preservation materials 24 are filled in the heat preservation containing cavity, so that the heat preservation effect can be achieved, in addition, the transparent pipe 6 and the illuminating lamp 7 are additionally arranged at the middle position of the upper part of the disc-shaped end socket 4, so that the device can provide the illumination condition required by fermentation, the washing pipe 30 is matched with the rotary washing ball 31, so that the fermentation tank body formed by the inner container barrel 1 and the inner container lower cone 2 can be conveniently cleaned, manual cleaning is not required.

Claims (8)

1. The utility model provides an illumination inflatable microbial cultivation equipment, includes inner bag barrel (1), inner bag cone (2), landing leg (3) and dish head (4) down, its characterized in that: the lower end of the liner barrel (1) is welded with a liner lower cone (2), the lower end of the liner lower cone (2) is circumferentially connected with supporting legs (3), the upper end of the liner barrel (1) is connected with a dish-shaped end socket (4), the middle part of the upper end of the dish-shaped end socket (4) is connected with a lighting connecting pipe (5), the lighting connecting pipe (5) is internally connected with a transparent pipe (6), the transparent pipe (6) is internally provided with a lighting lamp (7), one side of the upper end of the dish-shaped end socket (4) is connected with a manhole (8), one side of the manhole (8) is connected with a hop adding port (9), one side of the upper end of the dish-shaped end socket (4) far away from the manhole (8) is connected with a breather valve connecting pipe (10), one side of the lower end of the liner lower cone (2) is connected with a material pipe (11), one side of the lower end of the liner lower cone (2) is embedded with a carbon dioxide gas-filled connecting pipe (12), one side of the upper part of the liner lower cone (2) is connected with a thermometer blind pipe (13), a wine outlet (14) is embedded in one side of the lower cone (2) of the inner container, which is far away from the carbon dioxide inflation connecting pipe (12), and a sampling port (15) is connected above the wine outlet (14).
2. An illuminated inflatable microbial cultivation apparatus according to claim 1, wherein: the outer end of the inner container barrel body (1) is connected with a barrel body Maitreya plate (16), one side of the lower portion of the barrel body Maitreya plate (16) is connected with a barrel body refrigerant inlet pipe (17), one side of the upper portion of the barrel body Maitreya plate (16) is connected with a barrel body refrigerant outlet pipe (18), the outer portion of the inner container barrel body (1) is connected with an outer wrapping barrel body (19), the outer end of the inner container lower cone body (2) is connected with a lower cone Maitreya plate (20), one side of the lower portion of the lower cone Maitreya plate (20) is connected with a lower cone refrigerant inlet pipe (21), one side of the upper portion of the lower cone Maitreya plate (20) is connected with a lower cone refrigerant outlet pipe (22), and the outer portion of the inner container lower cone body (2) is connected with an outer wrapping lower cone (23).
3. An illuminated inflatable microbial cultivation apparatus according to claim 2, wherein: and heat insulation materials (24) are filled between the outer-coated cylinder body (19) and the inner container cylinder body (1) and between the outer-coated lower cone (23) and the inner container lower cone (2), and the heat insulation materials (24) are made of polyurethane.
4. An illuminated inflatable microbial cultivation apparatus according to claim 1, wherein: the lower end of the supporting leg (3) is connected with an adjusting bolt group (25), the adjusting bolt group (25) comprises a threaded sleeve (2501), a screw rod (2502) is connected to the inner thread of the threaded sleeve (2501), and a supporting block (2503) is connected to the lower end of the screw rod (2502).
5. An illuminated inflatable microbial cultivation apparatus according to claim 1, wherein: the upper end of the supporting leg (3) is welded with the contact part of the liner cylinder body (1) and the liner lower cone (2), an upper reinforcing plate (26) is welded at the welding part of the liner cylinder body (1) and the supporting leg (3), and a lower reinforcing plate (27) is welded at the welding part of the liner lower cone (2) and the supporting leg (3).
6. An illuminated inflatable microbial cultivation apparatus according to claim 1, wherein: lifting lugs (28) are symmetrically welded on two sides of the upper end of the disc-shaped seal head (4), and an escalator hanging lug (29) is welded on one side of the disc-shaped seal head (4).
7. An illuminated inflatable microbial cultivation apparatus according to claim 1, wherein: illumination takeover (5) internal connection has washing pipe (30), and washing pipe (30) lower extreme is connected with rotatory washing ball (31), and washing pipe (30) outside is passed through support (32) and is connected with outsourcing barrel (19), and washing pipe (30) are kept away from rotatory washing ball (31) one end and are connected with mechanical type governing valve takeover (33), and diaphragm gauge (34) are installed to mechanical type governing valve takeover (33) one end.
8. An illuminated inflatable microbial cultivation apparatus according to claim 1, wherein: the material pipe is characterized in that pull support rods (35) are connected between the supporting legs (3), the upper end of one pull support rod (35) is connected with a supporting sleeve (36), and the material pipe (11) is located in the supporting sleeve (36).
CN202122733647.3U 2021-11-10 2021-11-10 Illumination inflatable microbial cultivation equipment Active CN216947003U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122733647.3U CN216947003U (en) 2021-11-10 2021-11-10 Illumination inflatable microbial cultivation equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122733647.3U CN216947003U (en) 2021-11-10 2021-11-10 Illumination inflatable microbial cultivation equipment

Publications (1)

Publication Number Publication Date
CN216947003U true CN216947003U (en) 2022-07-12

Family

ID=82305201

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122733647.3U Active CN216947003U (en) 2021-11-10 2021-11-10 Illumination inflatable microbial cultivation equipment

Country Status (1)

Country Link
CN (1) CN216947003U (en)

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