CN204047298U - A kind of feeding device utilizing tagging plant - Google Patents
A kind of feeding device utilizing tagging plant Download PDFInfo
- Publication number
- CN204047298U CN204047298U CN201420539645.8U CN201420539645U CN204047298U CN 204047298 U CN204047298 U CN 204047298U CN 201420539645 U CN201420539645 U CN 201420539645U CN 204047298 U CN204047298 U CN 204047298U
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- China
- Prior art keywords
- reative cell
- valve
- sealed bag
- conduit
- liquid chamber
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Abstract
The utility model discloses a kind of feeding device utilizing tagging plant, it is characterized in that comprising: reative cell (1), liquid chamber (7), air extractor (3) and sealed bag (10), liquid chamber (7), air extractor (3) are connected with reative cell (1) respectively by conduit (5) with sealed bag (10), the conduit (5) that liquid chamber (7) and air extractor (3) are connected with reative cell (1) is provided with valve, i.e. valve A (4) and valve B (6).Compared with prior art, the features such as it is simple that the utility model has structure, easy to operate, time saving and energy saving.
Description
Technical field
The utility model relates to a kind of feeding device utilizing tagging plant.
Background technology
Isotope tracer technique mainly studies the turnover of mineral element in plant corpus in soil, from security consideration, usual employing 13C labeling technique, isotope labelling method mainly contains following two kinds of modes, continous way mark and batch (-type) mark, labeling method is by crop-planting in airtight space, to the CO of confined space conveying 13C mark
2, do the space that needs one are larger like this, and need by crop-planting in certain circumstances, during practical operation, need to pass into a large amount of CO
2gas, wastes time and energy.
Therefore, one is applicable to batch (-type) mark, structure is simple, and easy to operate, the time saving and energy saving feeding device of tagging plant that utilizes is suggested.
Summary of the invention
The purpose of this utility model is to provide a kind of feeding device utilizing tagging plant.
The utility model is characterized in that comprising: reative cell (1), liquid chamber (7), air extractor (3) and sealed bag (10), liquid chamber (7), air extractor (3) are connected with reative cell (1) respectively by conduit (5) with sealed bag (10), the conduit (5) that liquid chamber (7) and air extractor (3) are connected with reative cell (1) is provided with valve, i.e. valve A (4) and valve B (6).
Above-mentioned reative cell (1) is preferably the container that is provided with opening, and reative cell (1) opening part is provided with stopper (2), and conduit (5) is communicated with in reative cell (5) through stopper (2).
During actual use: put into the BaCO that appropriate 13C marks in reative cell (1)
3put into appropriate HCl liquid chamber (7) is inner, concrete operation step is as follows: be enclosed within by sealed bag (10) on the crop leaf that will feed, valve-off B (6), open valve A (4) simultaneously, by air extractor (3), the air in reative cell (1) and sealed bag (10) is taken away, valve-off A (4) afterwards, open valve B (6), make the HCl solution in liquid chamber (7) flow into reative cell (1) and BaCO
3reaction, the obtained CO of reaction
2, when sealed bag is heaved, be full of CO
2after, conduit (5) and sealed bag (10) are disconnected, and sealed bag (10) is sealed.
As preferably, the conduit (5) that sealed bag (10) is connected with reative cell (1) is provided with valve, i.e. valve C (9).
During actual use: put into the BaCO that appropriate 13C marks in reative cell (1)
3put into appropriate HCl liquid chamber (7) is inner, concrete operation step is as follows: be enclosed within by sealed bag (10) on the crop leaf that will feed, valve-off B (6), open valve A (4) and valve C (9) simultaneously, by air extractor (3), the air in reative cell (1) and sealed bag (10) is taken away, valve-off A (4) afterwards, open valve B (6) and valve C (9), make the HCl solution in liquid chamber (7) flow into reative cell (1) and BaCO
3reaction, the obtained CO of reaction
2, when sealed bag is heaved, be full of CO
2after, conduit (5) and sealed bag (10) are disconnected, and sealed bag (10) is sealed.
The advantage being provided with valve C (9) is: when the gas in reative cell (1) has been full of after sealed bag (10), can valve-off C (9), open valve A (4) afterwards, use air extractor that the gas in reative cell (1) is taken away and preserved, now can select syringe etc. can the air extractor (3) of gas collection, directly air extractor (4) can be connected and next sealed bag (10) afterwards, gas injection.
Conduit (5) between above-mentioned sealed bag (10) and reative cell (1) is provided with flexible pipe (8).
During actual use: the object increasing flexible pipe (8) is mainly excessively slow in order to solve reaction velocity, the gas generated very little, sealed bag (10) cannot be full of fast, reative cell (1) can be shaken, increase reaction velocity, in shake process, be unlikely to conduit (5) and sealed bag (10) are come off.
During actual use, if it is very few to run into reative cell (1) interior gas, when cannot be full of sealed bag (10), filling clear water can be continued in reative cell (1) from liquid chamber (7), make the liquid level in reative cell (1) rise to conduit (5) apopore place between sealed bag (10) and reative cell (1), the gas failing to enter sealed bag (10) can be clamp-oned sealed bag (10).
Compared with prior art, the features such as it is simple that the utility model has structure, easy to operate, time saving and energy saving.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model embodiment 1.
Shown in figure: 1 is reative cell, 2 is stoppers, and 3 is air extractors, and 4 is valve A, and 5 is conduits, and 6 is valve B, and 7 is liquid chambers, and 8 is flexible pipes, and 9 is valve C, and 10 is sealed bags.
Embodiment
Embodiment 1: with reference to Fig. 1, for the structural representation of the utility model embodiment 1, it is characterized in that comprising: reative cell 1, liquid chamber 7, air extractor 3 and sealed bag 10, liquid chamber 7, air extractor 3 are connected with reative cell 1 respectively by conduit 5 with sealed bag 10, the conduit 5 that liquid chamber 7 and air extractor 3 are connected with reative cell 1 is provided with valve, i.e. valve A4 and valve B6.
Above-mentioned reative cell 1 is preferably the container that is provided with opening, and reative cell 1 opening part is provided with stopper 2, and conduit 5 is communicated with in reative cell 5 through stopper 2.
During actual use: put into the BaCO that appropriate 13C marks in reative cell 1
3appropriate HCl is put in liquid chamber 7, concrete operation step is as follows: be enclosed within by sealed bag 10 on the crop leaf that will feed, valve-off B6, open valve A4 simultaneously, by air extractor 3, the air in reative cell 1 and sealed bag 10 is taken away, afterwards valve-off A4, open valve B6, make the HCl solution in liquid chamber 7 flow into reative cell 1 and BaCO
3reaction, the obtained CO of reaction
2, when sealed bag is heaved, be full of CO
2after, conduit 5 and sealed bag 10 are disconnected, and sealed bag 10 is sealed.
Embodiment 2: compared with embodiment 1, the difference of the present embodiment is: the conduit 5 that sealed bag 10 is connected with reative cell 1 is provided with valve, i.e. valve C9.
During actual use: put into the BaCO that appropriate 13C marks in reative cell 1
3appropriate HCl is put in liquid chamber 7, concrete operation step is as follows: be enclosed within by sealed bag 10 on the crop leaf that will feed, valve-off B6, open valve A4 and valve C9 simultaneously, by air extractor 3, the air in reative cell 1 and sealed bag 10 is taken away, afterwards valve-off A4, open valve B6 and valve C9, make the HCl solution in liquid chamber 7 flow into reative cell 1 and BaCO
3reaction, the obtained CO of reaction
2, when sealed bag is heaved, be full of CO
2after, conduit 5 and sealed bag 10 are disconnected, and sealed bag 10 is sealed.
Embodiment 3: compared with embodiment 1, the difference of the present embodiment is: the conduit 5 between sealed bag 10 and reative cell 1 is provided with flexible pipe 8.
During actual use: the object increasing flexible pipe 8 is mainly excessively slow in order to solve reaction velocity, and the gas of generation very little, cannot be full of sealed bag 10 fast, reative cell 1 can be shaken, increase reaction velocity, in shake process, be unlikely to conduit 5 and sealed bag 10 are come off.
Claims (3)
1. one kind utilizes the feeding device of tagging plant, it is characterized in that comprising: reative cell (1), liquid chamber (7), air extractor (3) and sealed bag (10), liquid chamber (7), air extractor (3) are connected with reative cell (1) respectively by conduit (5) with sealed bag (10), the conduit (5) that liquid chamber (7) and air extractor (3) are connected with reative cell (1) is provided with valve, i.e. valve A (4) and valve B (6).
2. the feeding device utilizing tagging plant according to claim 1, is characterized in that: the conduit (5) that sealed bag (10) is connected with reative cell (1) is provided with valve, i.e. valve C (9).
3. the feeding device utilizing tagging plant according to claim 1 and 2, is characterized in that: the conduit (5) between sealed bag (10) and reative cell (1) is provided with flexible pipe (8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420539645.8U CN204047298U (en) | 2014-09-19 | 2014-09-19 | A kind of feeding device utilizing tagging plant |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420539645.8U CN204047298U (en) | 2014-09-19 | 2014-09-19 | A kind of feeding device utilizing tagging plant |
Publications (1)
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CN204047298U true CN204047298U (en) | 2014-12-31 |
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CN201420539645.8U Expired - Fee Related CN204047298U (en) | 2014-09-19 | 2014-09-19 | A kind of feeding device utilizing tagging plant |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106248874A (en) * | 2016-07-22 | 2016-12-21 | 北京林业大学 | Isotope13c(13cO2) integration unit of labelling bough bar and labeling method |
CN107356708A (en) * | 2017-06-22 | 2017-11-17 | 浙江农林大学 | A kind of Portable field CO2Isotope marks device and application method |
-
2014
- 2014-09-19 CN CN201420539645.8U patent/CN204047298U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106248874A (en) * | 2016-07-22 | 2016-12-21 | 北京林业大学 | Isotope13c(13cO2) integration unit of labelling bough bar and labeling method |
CN107356708A (en) * | 2017-06-22 | 2017-11-17 | 浙江农林大学 | A kind of Portable field CO2Isotope marks device and application method |
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Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141231 Termination date: 20150919 |
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EXPY | Termination of patent right or utility model |