CN207483765U - A kind of saccharifying tank feed arrangement for avoiding microbiological contamination - Google Patents
A kind of saccharifying tank feed arrangement for avoiding microbiological contamination Download PDFInfo
- Publication number
- CN207483765U CN207483765U CN201721282606.4U CN201721282606U CN207483765U CN 207483765 U CN207483765 U CN 207483765U CN 201721282606 U CN201721282606 U CN 201721282606U CN 207483765 U CN207483765 U CN 207483765U
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- sections
- loop
- feed
- tubes
- saccharifying tank
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Abstract
The utility model is related to a kind of saccharifying tank feed arrangements for avoiding microbiological contamination, it includes charging supervisor, a sections of loop tubes, b sections of loop tubes, a sections of loop tubes are connect to form loop tube and converge by connecting tube with b sections of loop tubes and be connected with charging supervisor, loop feed unit, the feed inlet connection of loop feed unit and saccharifying tank are arranged at intervals on a sections of loop tubes, b sections of loop tubes.The utility model can realize that feed liquid is the virgin material absolutely not defective material of flow regime all the time in all feed-inputing branched pipe roads, saccharifying microbiological contamination can effectively be prevented, it consumed so as to reduce enzyme preparation, keep saccharified liquid index stabilization, improve product quality, and easy to operate.
Description
Technical field
The utility model is related to a kind of saccharifying tank feed arrangements for avoiding microbiological contamination, belong to starch sugar sacchariferous equipment technology neck
Domain.
Background technology
In traditional starch sugar saccharification apparatus, always there is part defective material to be stored in pipeline after the charging of distal end saccharifying tank, directly
Tank after to the tank or the tank can be just flowed into saccharifying tank when feeding again, while there is also one section of envelopes above tube for entering can road valve
Space is closed, tank charging next time can enter saccharifying tank.And this period of time miscellaneous bacteria amount reproduction in pipeline defective material, into sugar
Just serving as strain after change tank leads to saccharifying microbiological contamination, material liquid pH decline, enzyme preparation is made to decline using increase, product quality, now
There is the apparatus for feeding for avoiding living contaminants from source not yet.
Chinese patent literature CN202224141U discloses a kind of sugar refining technology equipment, is specifically related to one kind for refining sugar
The novel saccharification tank feeding structure of technique.For the novel saccharification tank feeding structure of sugar refining technology, including saccharifying tank, the saccharification
Tank top is equipped with feed hopper, has built operating platform, the top of the feed hopper by 3-4 root posts around the saccharifying tank
It is placed on operating platform;The saccharifying tank is additionally provided with detection device, and the detection device is placed on operating platform.The charging
The pure improvement of equipment is feed operation for the ease of material, still there is that material is remaining on feed-inputing branched pipe road, for a long time, miscellaneous bacteria
The amount reproduction in defective material, the feed arrangement do not avoid the generation of miscellaneous bacteria.
Utility model content
In view of the deficiencies of the prior art, the utility model provides a kind of saccharifying tank feed arrangement for avoiding microbiological contamination, the charging
Device avoids the residual of material in the saccharifying tank pipeline of distal end, and feed liquid is the new of flow regime all the time in feed-inputing branched pipe road
Material can effectively prevent saccharifying microbiological contamination without defective material.
The utility model is achieved by the following technical solution:
A kind of saccharifying tank feed arrangement for avoiding microbiological contamination, including charging supervisor, a sections of loop tubes, b sections of loop tubes, a sections of loops
Pipe is connect to form loop tube and converge by connecting tube with b sections of loop tubes and be connected with charging supervisor, a sections of loop tubes, b sections of loop tubes
On be arranged at intervals with loop feed unit, the feed inlet of loop feed unit and saccharifying tank connects.
Preferred according to the utility model, loop feed unit includes a sections of parallel transistors, b sections of parallel transistors, a sections of parallel transistors, b
One end of section parallel transistor is connect with a sections of loop tubes or b sections of loop tubes, and the other end converges to be connect jointly with feed-inputing branched pipe, charging branch
Pipe is connect with the feed inlet of saccharifying tank.
It is preferred according to the utility model, a sections of parallel transistors, b sections of parallel transistors the other end converge by triple valve jointly with
Feed-inputing branched pipe connects.
Preferred according to the utility model, a sections of loop tubes, b sections of loop tubes converge through threeway and charging supervisor's connection.
The course of work of the utility model and the principle for avoiding microbiological contamination:
The saccharifying tank feed arrangement for avoiding microbiological contamination of the utility model, source of the charging supervisor for feed liquid to be saccharified, passes through
Charging supervisor is divided into two-way, and two-way connects to form closed loop, and feed liquid is along a directions into tank all the way, all the way feed liquid along b directions into
Tank, loop feed unit include a sections of parallel transistors, b sections of parallel transistors, a sections of parallel transistors, b sections of parallel transistors by triple valve jointly with into
Expect branch pipe connection, triple valve has two states of either on or off, and opening state feed liquid leads to lower-left (i.e. a sections of parallel transistor-feed-inputing branched pipe),
Closed state leads to left and right (i.e.-b sections of parallel transistors of a sections of parallel transistor), and under not feed state, the feed liquid in loop feed unit is with returning
Road cycle connection, avoids feed liquid from remaining, miscellaneous bacteria is avoided to grow under flow regime.
The beneficial effects of the utility model are:
The utility model can realize that feed liquid is that the virgin material of flow regime is absolutely not residual all the time in all feed-inputing branched pipe roads
Material, can effectively prevent saccharifying microbiological contamination, consumed so as to reduce enzyme preparation, keep saccharified liquid index stabilization, improve product
Quality, and it is easy to operate.
Description of the drawings
Fig. 1 is the structure diagram for the saccharifying tank feed arrangement that the utility model avoids microbiological contamination.
In figure:1st, charging supervisor, 2, main threeway, 3, a sections of loop tubes, 4, b sections of loop tubes, 5, b sections of parallel transistors, 6, threeway
Valve, 7, a sections of parallel transistors, 8, feed-inputing branched pipe, 9, saccharifying tank, 10, connecting tube.
Specific embodiment
With reference to specific embodiment and attached drawing to the utility model avoid microbiological contamination saccharifying tank feed arrangement do into
One step illustrates, but the protection scope of the utility model is not limited thereto.
Embodiment 1
A kind of saccharifying tank feed arrangement for avoiding microbiological contamination, structure is as shown in Figure 1, including charging supervisor 1, a sections of loop tubes 3, b
Section loop tube 4, a sections of loop tubes 3 connect to form loop tube and converge by connecting tube 10 with b sections of loop tubes 4 to be connected with charging supervisor 1
It is logical, it is arranged at intervals with loop feed unit on a sections of loop tubes 3, b sections of loop tubes 4;Loop feed unit includes a sections of parallel transistors 5, b
Section parallel transistor 6, a section parallel transistors 5, b sections of parallel transistors 6 one end connect with a sections of loop tubes or b sections of loop tubes, the other end converge is total to
It is connect with feed-inputing branched pipe 8, feed-inputing branched pipe 8 is connect with the feed inlet of saccharifying tank 9.A sections of parallel transistors 5, b sections of parallel transistors 6 it is another
End is converged to be connect by triple valve 6 with feed-inputing branched pipe jointly.
A sections of loop tubes, b sections of loop tubes converge through main threeway 2 and charging supervisor's connection.
Source of the charging supervisor for feed liquid to be saccharified is divided into two-way, a sections of loop tubes 3 and b sections of loop tubes by charging supervisor
Two-way connects to form closed circuit, and feed liquid is along a directions into tank all the way, and along b directions into tank, loop feed unit includes feed liquid all the way
A sections of parallel transistors, b sections of parallel transistors, a sections of parallel transistors, b sections of parallel transistors are connect by triple valve with feed-inputing branched pipe jointly, and triple valve has
Two states of either on or off, opening state, feed liquid is along a sections of parallel transistors -8 direction of triple valve 6- feed-inputing branched pipes into saccharifying tank 9.Saccharification
After the completion of tank 9 is fed, the triple valve for treating head tank is opened, feed liquid enters next saccharifying tank, and then closes charging and completes tank 9
Triple valve, feed liquid are flowed to along parallel transistor b- triple valves-parallel transistor a directions or opposite direction flowing, the direction with feed liquid in loop tube
Unanimously, feed liquid is avoided to remain, miscellaneous bacteria is avoided to grow under flow regime.
It is to illustrate this patent described in above-described embodiment, though it is illustrated in text by specific term, not
The protection domain of this patent can be limited with this, be familiar with this technical field personage can understand this patent spirit with it is right after principle
It changes or changes and reaches equivalent purpose, and this equivalent change and modification, should all be covered by right institute circle
Determine in scope.
Claims (4)
1. a kind of saccharifying tank feed arrangement for avoiding microbiological contamination, including charging supervisor, a sections of loop tubes, b sections of loop tubes, a sections of loop tubes
It connect to form loop tube and converge by connecting tube with b sections of loop tubes and be connected with charging supervisor, on a sections of loop tubes, b sections of loop tubes
It is arranged at intervals with loop feed unit, the feed inlet connection of loop feed unit and saccharifying tank.
2. the saccharifying tank feed arrangement according to claim 1 for avoiding microbiological contamination, which is characterized in that loop feed unit includes
A sections of parallel transistors, b sections of parallel transistors, a sections of parallel transistors, b sections of parallel transistors one end connect with a sections of loop tubes or b sections of loop tubes, it is another
End is converged to be connect jointly with feed-inputing branched pipe, the feed inlet connection of feed-inputing branched pipe and saccharifying tank.
3. the saccharifying tank feed arrangement according to claim 2 for avoiding microbiological contamination, which is characterized in that a sections of parallel transistors, b sections simultaneously
The other end of union converges through triple valve jointly and feed-inputing branched pipe.
4. the saccharifying tank feed arrangement according to claim 1 for avoiding microbiological contamination, which is characterized in that a sections of loop tubes, b sections of rings
Road manifold is closed through threeway and charging supervisor's connection.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721282606.4U CN207483765U (en) | 2017-09-30 | 2017-09-30 | A kind of saccharifying tank feed arrangement for avoiding microbiological contamination |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201721282606.4U CN207483765U (en) | 2017-09-30 | 2017-09-30 | A kind of saccharifying tank feed arrangement for avoiding microbiological contamination |
Publications (1)
Publication Number | Publication Date |
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CN207483765U true CN207483765U (en) | 2018-06-12 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201721282606.4U Expired - Fee Related CN207483765U (en) | 2017-09-30 | 2017-09-30 | A kind of saccharifying tank feed arrangement for avoiding microbiological contamination |
Country Status (1)
Country | Link |
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CN (1) | CN207483765U (en) |
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2017
- 2017-09-30 CN CN201721282606.4U patent/CN207483765U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20180612 Termination date: 20180930 |
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CF01 | Termination of patent right due to non-payment of annual fee |