CN203728834U - Solar microorganism fermentation device - Google Patents
Solar microorganism fermentation device Download PDFInfo
- Publication number
- CN203728834U CN203728834U CN201420111872.0U CN201420111872U CN203728834U CN 203728834 U CN203728834 U CN 203728834U CN 201420111872 U CN201420111872 U CN 201420111872U CN 203728834 U CN203728834 U CN 203728834U
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- inlet pipe
- fermentor tank
- lodicule
- water inlet
- rotating shaft
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Abstract
The utility model discloses a solar microorganism fermentation device. By arranging a hollow stirring device with pores and by communicating a gas inlet tube and a water inlet pipe with the stirring device, oxygen can be uniformly added in the stirring process, and the stability of the oxygen content in the fermentation process is effectively maintained; meanwhile by connecting the gas inlet tube with the water inlet tube through a solar heat collection device and an electric heater, on one hand, the temperature can be regulated and controlled in the oxygen supply process, and on the other hand, water can be ejected out from the pores of the stirring device to form high-pressure water columns; through rotation of blades, the interior of a fermentation tank is washed and disinfected. In addition, due to arrangement of a lower support plate with a double-layer structure, not only is the collection efficiency of a fermentation broth effectively improved, but also the fermentation broth is primarily filtered. The solar microorganism fermentation device has the advantages of uniform and stable oxygen content, easy fermentation temperature control, convenient washing and disinfection, and the like.
Description
Technical field
The utility model relates to field of solar energy utilization and fermentation equipment field, relates in particular to a kind of sun power microbial ferment device.
Background technology
Fermentor tank is a kind of usual means for microorganism or cell cultures, can be used for research, analyzes or produces.Different microorganisms needs different fermentation conditions, such as the fermentation of aerobic microbiological needs oxygen content certain in fermentor tank, and oxygen level is how many and stability directly affects fermentation time and the tunning etc. of microorganism, so often adopt the mode of stirring to carry out oxygenation for the fermentor tank of aerobic microbiological at present, alr mode generally has two kinds, one is at tank deck mounted motor, agitator main shaft gos deep into downwards in pipe from tank deck, agitating vane is arranged at an angle, shortcoming is fermentor tank poor stability, submerged fermentation liquid ingress of air amount is few, ferment insufficient.Another kind is at fermentor tank bottom mounted motor, and the main shaft of agitator upwards rises up in tank at the bottom of by tank, and it is slower that shortcoming is that fermented liquid seethes mixing, and top fermentation materials ingress of air amount is few, and gas and mixing of materials are abundant not, and fermentation period is long.
In addition, for some to the highstrung microorganism of leavening temperature, while carrying out ferment at constant temperature, the fluctuation meeting of leavening temperature brings material impact to fermenting process, therefore, effective constant-temperature heating system need to be installed, and in the time that appearring in temperature, fluctuation can regulate leavening temperature fast, the fluctuation time is shortened as far as possible, and still, existing heating unit often can not carry out effectively regulating uniformly to temperature in rapidity ground.On the other hand, sun power is subject to applying more and more widely as a kind of new type resource, so, utilizes sun power to provide heat to fermentor tank, can effectively utilize solar energy resources.In industrial production, due to fermentor tank complex structure, volume is larger, and the cleaning and sterilizing work difficulty of fermentor tank is also larger.
Utility model content
The purpose of this utility model is the deficiency for general microbial ferment device, a kind of sun power microbial ferment device is provided, by being provided with the whipping appts of hollow in aperture, and by inlet pipe and water inlet pipe are communicated with described whipping appts, make the utility model in whipping process, carry out even oxygenation, in effective maintenance fermenting process, oxygen level is stable, simultaneously, inlet pipe is connected with solar energy heat collector by heat exchanger tube with water inlet pipe, can utilize sun power to provide heat to heat inlet pipe and water inlet pipe, can in the process of carrying out oxygenation, synchronously carry out the regulation and control of temperature on the one hand, on the other hand by regulating the water temperature in water inlet pipe, and by water inlet pipe is connected with pressure pump, can make water eject from the hole of whipping appts, form water jets under high pressure, and by the rotation of lodicule, fermentor tank inside is carried out automatically, cleanse and disinfect completely.
Another object of the present utility model is, there is double-deck bolster by setting, and fermentor tank is connected with air compressor, after making to have fermented, in airtight fermentor tank, inject high pressure gas by air compressor, make to present in fermentor tank the state of high pressure, regulate the upset lattice coral of bolster simultaneously, fermented liquid can be discharged by the screen plate of bolster fast, not only improve the collection effciency of fermented liquid, and can make fermented liquid obtain preliminary filtration.
The technical solution of the utility model is:
A kind of sun power microbial ferment device, comprising:
Fermentation unit main body, it comprises fermentor tank, whipping appts and bolster, wherein said fermentor tank is an airtight hollow cylinder, described whipping appts is arranged at described fermentor tank inside, described whipping appts is connected to form by lodicule and rotating shaft, and wherein said rotating shaft and described lodicule are hollow setting, in addition, described lodicule is the reticulated structure being made up of hollow tube, and hollow tube surface offers multiple holes; It is inner and vertical with described rotating shaft that described bolster is arranged at described fermentor tank, between described bolster and the base plate of described fermentor tank, has certain distance, and the outer rim of described bolster is supported mutually with described fermentor tank inwall;
Heat exchanger, it comprises thermoelectric heating device, inlet pipe and water inlet pipe, wherein said thermoelectric heating device is wrapped in respectively described inlet pipe and water inlet pipe outside, the first end of described inlet pipe and water inlet pipe be connected with described rotating shaft respectively and with its internal communication;
Solar energy heat collector, it comprises solar panel and store battery, and the two is electrically connected, and described store battery is connected with the thermoelectric heating device of described heat exchanger by wire.
Preferably, in described sun power microbial ferment device, between described lodicule and rotating shaft, be connected by locating shaft, described locating shaft is vertical with described rotating shaft to be arranged, the first end of described locating shaft and described rotating shaft are fixed, and the second end and the described lodicule of described locating shaft are rotatably connected and fixed.
Preferably, in described sun power microbial ferment device, described locating shaft the second end connects and fixes by snap ring and coordinating of draw-in groove with described lodicule.
Preferably, in described sun power microbial ferment device, the access section of described lodicule and described locating shaft is provided with the rotary positioning apparatus that makes described lodicule carry out 180 degree upsets taking described locating shaft as axle center, this rotary positioning apparatus comprises the steady brace being arranged on described snap ring, and is arranged at the pin-and-hole matching with described steady brace in described draw-in groove.
Preferably, in described sun power microbial ferment device, described bolster is bilayer structure, its upper strata is the screen plate that is provided with multiple mesh, its lower floor is the upset lattice coral being formed by multiple strip board material splices that carry out 90 degree upsets, and the two ends of described multiple strip sheet materials are consistent with the radian of fermentor tank inwall corresponding section; In addition, described multiple strip sheet material two ends and described fermentor tank inwall are rotatably hinged fixing.
Preferably, in described sun power microbial ferment device, described water inlet pipe and inlet pipe form by thermally conductive material, and described water inlet pipe is communicated with described rotating shaft bottom by T-valve with inlet pipe, and described water inlet pipe and inlet pipe are respectively arranged with valve.
The utlity model has following beneficial effect: sun power microbial ferment device described in the utility model, by being provided with the whipping appts of hollow of hole, and by inlet pipe and water inlet pipe are communicated with described whipping appts, make the utility model can carry out even oxygenation in whipping process, effectively keep the stability of the oxygen level in fermenting process, simultaneously, inlet pipe is connected with solar energy heat collector by heat exchanger tube with water inlet pipe, can utilize sun power to provide heat to heat inlet pipe and water inlet pipe, in the process of carrying out oxygenation, synchronously carry out on the one hand the regulation and control of temperature, on the other hand by regulating the temperature of water in water inlet pipe, and by water inlet pipe is connected with pressure pump, can make water eject from the hole of whipping appts, form water jets under high pressure, and by the rotation of lodicule, carry out automatic to fermentor tank, cleanse and disinfect completely.
In addition, the utility model has double-deck bolster by setting, and fermentor tank is connected with air compressor, after making to have fermented, in airtight fermentor tank, inject high pressure gas by air compressor, make the inner high pressure conditions that forms of fermentor tank, regulate the upset lattice coral of bolster simultaneously, fermented liquid can be discharged by the screen plate of bolster fast, not only can effectively improve the collection effciency of fermented liquid, and can make fermented liquid obtain preliminary filtration.The utlity model has that oxygen level is uniform and stable, leavening temperature is easy to control, cleaning and sterilizing is convenient and can save energy etc. advantage.
Brief description of the drawings
Fig. 1 is the structural representation of sun power microbial ferment device described in the utility model;
Fig. 2 is the structural representation of the lodicule of sun power microbial ferment device described in the utility model.
Embodiment
Below in conjunction with accompanying drawing, the utility model is elaborated, after making those of ordinary skill in the art consult this specification sheets, can implement according to this.
As depicted in figs. 1 and 2, described sun power microbial ferment device, comprising:
Fermentation unit main body, it comprises fermentor tank 1, whipping appts and bolster, wherein said fermentor tank 1 is an airtight hollow cylinder, described whipping appts is arranged at described fermentor tank 1 inside, described whipping appts is connected to form by lodicule 3 and rotating shaft 2, and wherein said rotating shaft 2 is hollow setting with described lodicule 3, in addition, the reticulated structure of described lodicule 3 for being formed by hollow tube, and hollow tube surface offers multiple holes; It is inner and vertical with described rotating shaft 2 that described bolster is arranged at described fermentor tank 1, between the base plate of described bolster and described fermentor tank 1, there is certain distance, this distance is less than 0.5 meter, makes to form certain space between described bolster and fermentor tank 1 base plate, to carry out the filtration of tunning; The outer rim of described bolster is supported mutually with described fermentor tank 1 inwall, and is provided with sealed strip, prevents from the one hand leaking material in fermenting process, can effectively avoid on the other hand the pollution of miscellaneous bacteria in fermenting process.
Heat exchanger 9, it comprises thermoelectric heating device, inlet pipe 8 and water inlet pipe 7, wherein said thermoelectric heating device is wrapped in respectively described inlet pipe 8 and water inlet pipe 7 outsides, the first end of described inlet pipe 8 and water inlet pipe 7 be connected with described rotating shaft 2 respectively and with its internal communication;
Solar energy heat collector 10, it comprises solar panel and store battery, and the two is electrically connected, and described store battery is connected with the thermoelectric heating device of described heat exchanger 9 by wire.
In described sun power microbial ferment device, between described lodicule 3 and rotating shaft 2, be connected by locating shaft 4, the setting vertical with described rotating shaft 2 of described locating shaft 4, its first end and described rotating shaft 2 are fixing, and its second end and described lodicule 3 are rotatably connected and fixed.
In described sun power microbial ferment device, described locating shaft 4 second ends connect and fix by snap ring and coordinating of draw-in groove with described lodicule 3.
In described sun power microbial ferment device, described lodicule 3 is provided with the access section of described locating shaft 4 rotary positioning apparatus that makes described lodicule 3 carry out 180 degree upsets as axle center taking described locating shaft 4, this rotary positioning apparatus comprises the steady brace being arranged on described snap ring, and is arranged at the pin-and-hole matching with described steady brace in described draw-in groove.By the setting of described rotary positioning apparatus, make the angle between described lodicule 3 and the cross section of fermentor tank 1 adjustable, and can be fixed, in the time stirring, described lodicule 3 is set to 45-90 degree with the angle of fermentor tank 1 cross section; In the time that cleaning and sterilizing is carried out in fermentor tank 1 inside, this angle can be set to 0-180 degree, so that omnibearing cleaning and sterilization are realized in its inside.
In described sun power microbial ferment device, described bolster is bilayer structure, its upper strata is the screen plate 5 that is provided with multiple mesh, its lower floor is the upset lattice coral 6 being formed by multiple strip board material splices that carry out 90 degree upsets, the two ends of described multiple strip sheet materials are consistent with the radian of fermentor tank 1 inwall corresponding section, when described multiple strip sheet material is horizontally disposed with, its dual-side can offset and be spliced into a plane, the splicing seams place of this plane is also provided with sealed strip, and the outer rim of this plane is supported mutually with described fermentor tank 1 inwall; In addition, described multiple strip sheet material two ends and described fermentor tank 1 inwall are rotatably hinged fixing.Carry out in fermenting process, described strip sheet material is all horizontally disposed with, its formation one connects plane closely, fermentation materials ferments on described bolster, after fermentation completes, by described air compressor to the interior pressurization of described fermentor tank 1, rotate described strip sheet material simultaneously, make to form between it certain gap, under High Pressure, fermented liquid is under the upper strata of described bolster screen plate 5 is filtered fast, and solid fermentation material is held back, and completes preliminary filtration and the collection of fermented liquid.In addition, between described bolster and described fermentor tank 1, be connected in detachable mode, after fermented liquid has been collected, discharge the pressure in described fermentor tank 1, dismantle described bolster, discharge solid fermentation material.
In described sun power microbial ferment device, described water inlet pipe 7 forms by thermally conductive material with inlet pipe 8, and described thermoelectric heating device can be heated uniformly to the gas in the liquid in water inlet pipe 7 and inlet pipe 8; Described water inlet pipe 7 is communicated with described rotating shaft 2 bottoms by T-valve with inlet pipe 8, and described water inlet pipe 7 is respectively arranged with valve with inlet pipe 8.In the time fermenting, close the valve of described water inlet pipe 7, open the valve of described inlet pipe 8; In the time that needs clean fermentor tank 1, close the valve of described inlet pipe 8, open the valve of described water inlet pipe 7, make water under the effect of pressure pump, enter described whipping appts inside, and eject water jets under high pressure by the hole 11 on lodicule.
In described sun power microbial ferment device, the second end of described water inlet pipe 7 is connected with a pressure pump; The second end of described inlet pipe 8 is connected with an oxygen generator 13 and air filter 12; Described fermentor tank 1 is connected with an air compressor.
In described sun power microbial ferment device, described rotary positioning apparatus and described upset lattice coral 6 are connected with controller by wire respectively, can be by controller the angle of the strip sheet material to described lodicule 3 and upset lattice coral 6 regulate.
In described sun power microbial ferment device, in described fermentor tank 1, be provided with hygrosensor, the thermoelectric heating device of described heat exchanger 9 is connected with a temperature regulator, and described temperature regulator is connected with described hygrosensor and controlled by it.Set certain leavening temperature by described temperature regulator as required, by the leavening temperature in fermentor tank 1 described in described hygrosensor Real-Time Monitoring, in the time that the temperature head between monitor temperature and design temperature is greater than a certain threshold values, described temperature regulator regulates the Heating temperature of described electric heater automatically, thereby make the gas temperature in inlet pipe 8 adjusted, finally make leavening temperature be regulated and controled fast and effectively.
In described sun power microbial ferment device, described whipping appts is connected with a rotating machine and is rotated by its driving.
Although embodiment of the present utility model is open as above, but it is not restricted to listed utilization in specification sheets and embodiment, it can be applied to the various fields of the present utility model that are applicable to completely, for those skilled in the art, can easily realize other amendment, therefore do not deviating under the universal that claim and equivalency range limit, the utility model is not limited to specific details and illustrates here and the legend of describing.
Claims (6)
1. a sun power microbial ferment device, is characterized in that, comprising:
Fermentation unit main body, it comprises fermentor tank, whipping appts and bolster, wherein said fermentor tank is an airtight hollow cylinder, described whipping appts is arranged at described fermentor tank inside, described whipping appts is connected to form by lodicule and rotating shaft, and wherein said rotating shaft and described lodicule are hollow setting, in addition, described lodicule is the reticulated structure being made up of hollow tube, and hollow tube surface offers multiple holes; It is inner and vertical with described rotating shaft that described bolster is arranged at described fermentor tank, between described bolster and the base plate of described fermentor tank, has certain distance, and the outer rim of described bolster is supported mutually with described fermentor tank inwall;
Heat exchanger, it comprises thermoelectric heating device, inlet pipe and water inlet pipe, wherein said thermoelectric heating device is wrapped in respectively described inlet pipe and water inlet pipe outside, the first end of described inlet pipe and water inlet pipe be connected with described rotating shaft respectively and with its internal communication;
Solar energy heat collector, it comprises solar panel and store battery, and the two is electrically connected, and described store battery is connected with the thermoelectric heating device of described heat exchanger by wire.
2. sun power microbial ferment device as claimed in claim 1, it is characterized in that, between described lodicule and rotating shaft, be connected by locating shaft, described locating shaft is vertical with described rotating shaft to be arranged, the first end of described locating shaft and described rotating shaft are fixed, and the second end and the described lodicule of described locating shaft are rotatably connected and fixed.
3. sun power microbial ferment device as claimed in claim 2, is characterized in that, described locating shaft the second end connects and fixes by snap ring and coordinating of draw-in groove with described lodicule.
4. sun power microbial ferment device as claimed in claim 3, it is characterized in that, the access section of described lodicule and described locating shaft is provided with the rotary positioning apparatus that makes described lodicule carry out 180 degree upsets taking described locating shaft as axle center, this rotary positioning apparatus comprises the steady brace being arranged on described snap ring, and is arranged at the pin-and-hole matching with described steady brace in described draw-in groove.
5. sun power microbial ferment device as claimed in claim 1, it is characterized in that, described bolster is bilayer structure, its upper strata is the screen plate that is provided with multiple mesh, its lower floor is the upset lattice coral being formed by multiple strip board material splices that carry out 90 degree upsets, and the two ends of described multiple strip sheet materials are consistent with the radian of fermentor tank inwall corresponding section; In addition, described multiple strip sheet material two ends and described fermentor tank inwall are rotatably hinged fixing.
6. sun power microbial ferment device as claimed in claim 1, it is characterized in that, described water inlet pipe and inlet pipe form by thermally conductive material, and described water inlet pipe is communicated with described rotating shaft bottom by T-valve with inlet pipe, and described water inlet pipe and inlet pipe are respectively arranged with valve.
Priority Applications (1)
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CN201420111872.0U CN203728834U (en) | 2014-03-12 | 2014-03-12 | Solar microorganism fermentation device |
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CN201420111872.0U CN203728834U (en) | 2014-03-12 | 2014-03-12 | Solar microorganism fermentation device |
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CN201420111872.0U Expired - Fee Related CN203728834U (en) | 2014-03-12 | 2014-03-12 | Solar microorganism fermentation device |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105029351A (en) * | 2015-08-31 | 2015-11-11 | 邝嘉豪 | Environment-friendly solar fermenting tank |
CN108504573A (en) * | 2018-06-19 | 2018-09-07 | 汇森生物设备镇江有限公司 | A kind of uniform cell culture medium automatic fermenter of sterilizing |
-
2014
- 2014-03-12 CN CN201420111872.0U patent/CN203728834U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105029351A (en) * | 2015-08-31 | 2015-11-11 | 邝嘉豪 | Environment-friendly solar fermenting tank |
CN108504573A (en) * | 2018-06-19 | 2018-09-07 | 汇森生物设备镇江有限公司 | A kind of uniform cell culture medium automatic fermenter of sterilizing |
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Granted publication date: 20140723 Termination date: 20150312 |
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