CN207276625U - A kind of high microbial culture dish of survival rate - Google Patents

A kind of high microbial culture dish of survival rate Download PDF

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Publication number
CN207276625U
CN207276625U CN201721163666.4U CN201721163666U CN207276625U CN 207276625 U CN207276625 U CN 207276625U CN 201721163666 U CN201721163666 U CN 201721163666U CN 207276625 U CN207276625 U CN 207276625U
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China
Prior art keywords
fixedly connected
protective
culture dish
culture
framework
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Expired - Fee Related
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CN201721163666.4U
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Chinese (zh)
Inventor
刘伯阳
姚淑娟
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Qiqihar Medical University
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Qiqihar Medical University
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Priority to CN201721163666.4U priority Critical patent/CN207276625U/en
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Abstract

The utility model discloses a kind of high microbial culture dish of survival rate, belong to and be related to microbial cultivation equipment technical field, including lid, the bottom of lid is fixedly connected with the first sealant, the bottom of first sealant is movably connected in the top of culture framework, one end of culture framework is fixedly connected through protective and at the top of the insulating layer of bottom, the bottom of bottom insulating layer is fixedly connected on the top of heater, the bottom of heater is fixedly connected on the inner wall of protective bottom, the side of protective layer is fixedly connected with connector, the inner wall of connector bottom is fixedly connected with anaerobism gas tank, the output terminal of anaerobism gas tank is fixedly connected with tracheae.Coordinated by heater and humidifier, it is effective to be always maintained at the temperature that microorganism needs inside culture dish, effective lifting Microbial survival rate, moisture detector facilitate staff to measure the humidity inside culture dish, it is possible to the temperature inside culture dish is quickly adjusted easy to staff.

Description

A kind of high microbial culture dish of survival rate
Technical field
Microbial cultivation equipment technical field is the utility model is related to, is specially a kind of high microculture of survival rate Ware.
Background technology
Culture dish is initially by the bacteriologist Zhu Lisilicha in the subordinate work of German biologist Robert kock Moral Petri was designed in 1887, therefore also known as " Petri ware ", culture dish is fragile, frangible, therefore in cleaning and taking and placing When should be careful, handle with care, preferably cleaned up in time using the culture dish finished, be stored in safety, fixed position, Prevent from damaging, break, culture dish is a kind of labware for microorganism or cell culture, by flat circle plate-like Bottom and a lid composition, are generally made, culture dish material is essentially divided into two classes, predominantly plastic and glass of glass or plastics , glass can be used for vegetable material, and the adhere-wall culture of microculture and zooblast may also be used, the possibility of plastics Polythene material, once property and it is nonexpondable, be adapted to laboratory inoculation, line, the operation of separation of bacterial can be with Culture for vegetable material.
But the survival rate of most of culture dish culture microorganism currently on the market is not high, most of all there are work people Member cannot preferably control temperature and humidity inside culture dish etc., so that it is easily dead to be easy to cause microorganism.
Utility model content
In view of the deficiencies of the prior art, the utility model provides a kind of high microbial culture dish of survival rate, possesses energy The advantages that improving the survival rate of culture dish culture microorganism, solves asking for the survival rate that cannot improve culture dish culture microorganism Topic.
Technical solution is used by the utility model solves its technical problem:A kind of high microculture of survival rate Ware, including lid, the bottom of the lid are fixedly connected with the first sealant, and the bottom of first sealant is movably connected in The top of framework is cultivated, one end of the culture framework is fixedly connected through protective and at the top of the insulating layer of bottom, described The bottom of bottom insulating layer is fixedly connected on the top of heater, and the bottom of the heater is fixedly connected on protective bottom Inner wall, the side of the protective are fixedly connected with connector, and the inner wall of the connector bottom is fixedly connected with anaerobism gas tank, The output terminal of the anaerobism gas tank is fixedly connected with tracheae, and one end of the tracheae sequentially passes through protective, the second sealant, training Support framework and sterility protection layer and extend to the inside of culture framework.
The opposite side of the protective is fixedly connected with support plate, and humidifier is fixedly connected with the top of the support plate, described The output terminal of humidifier is fixedly connected with exhaust pipe, and one end of the exhaust pipe sequentially passes through the second sealant, culture framework, nothing Bacterium protective layer is simultaneously connected with one end of connecting tube, one end of the connecting tube through fixed plate and with small injection spray pipe, it is described solid One end of fixed board is fixedly connected on the inner wall at the top of sterility protection layer, and the opposite side of the protective is fixedly connected with support plate, Centralized Control body is fixedly connected with the top of the support plate.
Preferably, the surface of the tracheae is fixedly connected with control valve, and second sealant is fixedly connected on culture frame The side of body.
Preferably, the side of the sterility protection layer is fixedly connected on the inner wall of culture framework side, the sterility protection The side of layer is fixedly connected with temperature detector.
Preferably, the quantity of the small injection spray pipe is six, and six small injection spray pipes equidistantly distribute together.
Preferably, the opposite side of the protective is fixedly connected with pressure detector, one end of the pressure detector according to It is secondary to pass through protective, the second sealant, culture framework and sterility protection layer and the inside for extending to sterility protection layer.
Preferably, the opposite side of the protective is fixedly connected with moisture detector, one end of the moisture detector according to It is secondary to pass through protective, the second sealant, culture framework and sterility protection layer and the inside for extending to culture framework.
The beneficial effects of the utility model are:
1st, the high microbial culture dish of the survival rate, is coordinated by heater and humidifier, and staff, which observes, concentrates control The temperature that body processed is shown, controls heater to run further according to demand, so as to effectively be always maintained at microorganism inside culture dish The temperature needed, effectively lifts Microbial survival rate, then sees moisture detector by staff, it is possible to easily work Personnel measure the humidity inside culture dish, it is possible to the temperature inside culture dish is quickly adjusted easy to staff.
2nd, the high microbial culture dish of the survival rate, by pressing oxygen tank and the first sealant to coordinate, staff can be with Anaerobic gas are discharged according to demand, it is possible to the air inside culture dish is given off, it is effective to reduce culture dish inner air In bacterium, then observe pressure detector to adjust the air pressure inside culture dish, the effective survival rate for improving culture microorganism, Culture experiment effect is improved, is cooperated by the first sealant and the second sealant, effectively prevents the air of outside from entering The inside of culture dish, the effective influence for reducing extraneous air to culture dish inside microorganism.
Brief description of the drawings
Fig. 1 is the utility model structure diagram;
Fig. 2 is enlarged structure schematic diagram at the A of the utility model Fig. 1;.
In figure:1 lid, 2 first sealants, 3 culture frameworks, 4 sterility protection layers, 5 protectives, 6 bottom insulating layers, 7 add Hot device, 8 connectors, 9 anaerobism gas tanks, 10 control valves, 11 tracheaes, 12 temperature detectors, 13 second sealants, 14 support plates, 15 add Wet device, 16 exhaust pipes, 17 connecting tubes, 18 fixed plates, 19 small injection spray pipes, 20 pressure detectors, 21 moisture detectors, 22 are concentrated Control volume, 23 support plates.
Embodiment
The utility model is further illustrated with reference to the accompanying drawings and detailed description.
- 2 are please referred to Fig.1, a kind of high microbial culture dish of survival rate, including lid 1, the bottom of lid 1 are fixedly connected There is the first sealant 2, the bottom of the first sealant 2 is movably connected in the top of culture framework 3, and the first sealant 2 and second is close Sealing 13 cooperates, and the air that can effectively prevent outside enters the inside of culture dish, effective to reduce extraneous air pair Company is fixed in the influence of microorganism inside culture dish, one end of culture framework 3 through protective 5 and in the top of bottom insulating layer 6 Connect, the bottom of bottom insulating layer 6 is fixedly connected on the top of heater 7, and staff observes the temperature of the display of centralized Control body 22 Degree, controls heater 7 to run, heater 7 will quickly lift bottom insulating layer 6, and bottom insulating layer 6 is just further according to demand Meeting temperature propagation effectively prevents the temperature inside culture framework 3 from quickly raising, bottom insulating layer 6 to the bottom of culture framework 3 The temperature that microorganism needs inside culture dish can be effectively always maintained at, effectively lifts Microbial survival rate, heater 7 Bottom is fixedly connected on the inner wall of 5 bottom of protective, and the side of protective 5 is fixedly connected with connector 8,8 bottom of connector Inner wall is fixedly connected with anaerobism gas tank 9, and the output terminal of anaerobism gas tank 9 is fixedly connected with tracheae 11, and the surface of tracheae 11, which is fixed, to be connected Control valve 10 is connected to, one end of tracheae 11 sequentially passes through protective 5, the second sealant 13, culture framework 3 and sterility protection layer 4 And the inside of culture framework 3 is extended to, staff can discharge anaerobic gas according to demand, and staff beats control valve 10 Open, it is possible to give off the air inside culture dish, the effective air removed inside culture dish, effectively reduces culture dish Bacterium in inner air, the effective air quality lifted inside culture dish, then pressure detector 20 is observed to adjust culture Air pressure inside ware, the effective survival rate for improving culture microorganism, improves culture experiment effect, and the second sealant 13, which is fixed, to be connected The side of culture framework 3 is connected on, the side of sterility protection layer 4 is fixedly connected on the inner wall of 3 side of culture framework, sterility protection layer 4 side is fixedly connected with temperature detector 12.
The opposite side of protective 5 is fixedly connected with support plate 14, and the top of support plate 14 is fixedly connected with humidifier 15, humidifier 15 output terminal is fixedly connected with exhaust pipe 16, and one end of exhaust pipe 16 sequentially passes through the second sealant 13, culture framework 3, nothing Bacterium protective layer 4 is simultaneously connected with one end of connecting tube 17, one end of connecting tube 17 through fixed plate 18 and with small injection spray pipe 19, it is micro- The quantity of small injection spray pipe 19 is six, and six small injection spray pipes 19, with equidistantly distributing, one end of fixed plate 18, which is fixed, to be connected The inner wall at the top of sterility protection layer 4 is connected on, the opposite side of protective 5 is fixedly connected with pressure detector 20, pressure detector 20 One end sequentially pass through protective 5, the second sealant 13, culture framework 3 and sterility protection layer 4 and extend to sterility protection layer 4 Inside, the opposite side of protective 5 is fixedly connected with support plate 23, and the opposite side of protective 5 is fixedly connected with moisture detector 21, staff sees moisture detector 21, it is possible to which very convenient staff measures the humidity inside culture dish, it is possible to is easy to Staff quickly adjusts the temperature inside culture dish, the humidity that can effectively keep culture experiment to need, and lifting culture is micro- The survival rate of biology, one end of moisture detector 21 sequentially pass through protective 5, the second sealant 13, culture framework 3 and sterile guarantor Sheath 4 and the inside for extending to culture framework 3, the top of support plate 23 is fixedly connected with centralized Control body 22.
The electric elements occurred in this article are electrically connected with extraneous main controller and 220V alternating currents, and main controller can be meter Calculation machine etc. plays the conventionally known equipment of control.
In conclusion the microbial culture dish that a kind of survival rate is high, is coordinated by heater 7 and humidifier 15, work The temperature that personal observations' centralized Control body 22 is shown, controls heater 7 to run, so as to effectively be always maintained at further according to demand The temperature that microorganism needs inside culture dish, effectively lifts Microbial survival rate, then see moisture detector by staff 21, it is possible to which very convenient staff measures the humidity inside culture dish, it is possible to quickly adjusts culture dish easy to staff Internal temperature, by pressing oxygen tank and the first sealant 2 to coordinate, staff can discharge anaerobic gas according to demand, just Air inside culture dish can be given off, the effective bacterium reduced in culture dish inner air, then observe pressure detecting Device 20 adjusts the air pressure inside culture dish, and the effective survival rate for improving culture microorganism, improves culture experiment effect, pass through First sealant 2 and the second sealant 13 cooperate, and effectively prevent the air of outside from entering the inside of culture dish, effectively Reduce influence of the extraneous air to culture dish inside microorganism.

Claims (6)

1. a kind of high microbial culture dish of survival rate, including lid(1), the lid(1)Bottom be fixedly connected with first Sealant(2), it is characterised in that:First sealant(2)Bottom be movably connected in culture framework(3)Top, it is described Cultivate framework(3)One end pass through protective(5)And in bottom insulating layer(6)Top be fixedly connected, the bottom insulating layer (6)Bottom be fixedly connected on heater(7)Top, the heater(7)Bottom be fixedly connected on protective(5)Bottom Inner wall, the protective(5)Side be fixedly connected with connector(8), the connector(8)The inner wall of bottom is fixedly connected There is anaerobism gas tank(9), the anaerobism gas tank(9)Output terminal be fixedly connected with tracheae(11), the tracheae(11)One end according to It is secondary to pass through protective(5), the second sealant(13), culture framework(3)With sterility protection layer(4)And extend to culture framework(3) Inside;
The protective(5)Opposite side be fixedly connected with support plate(14), the support plate(14)Top be fixedly connected with humidification Device(15), the humidifier(15)Output terminal be fixedly connected with exhaust pipe(16), the exhaust pipe(16)One end wear successively Cross the second sealant(13), culture framework(3), sterility protection layer(4)And and connecting tube(17)One end connection, the connecting tube (17)One end pass through fixed plate(18)And with small injection spray pipe(19), the fixed plate(18)One end be fixedly connected on it is sterile Protective layer(4)The inner wall at top, the protective(5)Opposite side be fixedly connected with support plate(23), the support plate(23) Top be fixedly connected with centralized Control body(22).
A kind of 2. high microbial culture dish of survival rate according to claim 1, it is characterised in that:The tracheae(11)'s Surface is fixedly connected with control valve(10), second sealant(13)It is fixedly connected on culture framework(3)Side.
A kind of 3. high microbial culture dish of survival rate according to claim 1, it is characterised in that:The sterility protection layer (4)Side be fixedly connected on culture framework(3)The inner wall of side, the sterility protection layer(4)Side be fixedly connected with temperature Spend detector(12).
A kind of 4. high microbial culture dish of survival rate according to claim 1, it is characterised in that:The small injection spray pipe (19)Quantity be six, and six small injection spray pipes(19)It is same to equidistantly distribute.
A kind of 5. high microbial culture dish of survival rate according to claim 1, it is characterised in that:The protective(5) Opposite side be fixedly connected with pressure detector(20), the pressure detector(20)One end sequentially pass through protective(5), Two sealants(13), culture framework(3)With sterility protection layer(4)And extend to sterility protection layer(4)Inside.
A kind of 6. high microbial culture dish of survival rate according to claim 1, it is characterised in that:The protective(5) Opposite side be fixedly connected with moisture detector(21), the moisture detector(21)One end sequentially pass through protective(5), Two sealants(13), culture framework(3)With sterility protection layer(4)And extend to culture framework(3)Inside.
CN201721163666.4U 2017-09-12 2017-09-12 A kind of high microbial culture dish of survival rate Expired - Fee Related CN207276625U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201721163666.4U CN207276625U (en) 2017-09-12 2017-09-12 A kind of high microbial culture dish of survival rate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201721163666.4U CN207276625U (en) 2017-09-12 2017-09-12 A kind of high microbial culture dish of survival rate

Publications (1)

Publication Number Publication Date
CN207276625U true CN207276625U (en) 2018-04-27

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113444629A (en) * 2021-06-18 2021-09-28 杭州电子科技大学 Culture dish capable of controlling humidity of microorganism culture environment and application thereof
CN113637567A (en) * 2021-06-29 2021-11-12 安徽曦强乳业集团有限公司 Production is with miscellaneous fungus detection device of fermented milk sampling

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113444629A (en) * 2021-06-18 2021-09-28 杭州电子科技大学 Culture dish capable of controlling humidity of microorganism culture environment and application thereof
CN113637567A (en) * 2021-06-29 2021-11-12 安徽曦强乳业集团有限公司 Production is with miscellaneous fungus detection device of fermented milk sampling

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Granted publication date: 20180427

Termination date: 20180912