CN205084446U - Extraction device of overcritical xanthopicrite - Google Patents
Extraction device of overcritical xanthopicrite Download PDFInfo
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- CN205084446U CN205084446U CN201520763205.5U CN201520763205U CN205084446U CN 205084446 U CN205084446 U CN 205084446U CN 201520763205 U CN201520763205 U CN 201520763205U CN 205084446 U CN205084446 U CN 205084446U
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- carbon dioxide
- extractor
- liquid outlet
- storage tank
- separator
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Abstract
The utility model discloses an extraction device of overcritical xanthopicrite, including carbon dioxide storage tank, carbon dioxide filter, condenser, high -pressure pump, first extraction jar, second extraction jar, heater and separator, separate into the independent storage chamber of several by horizontally sealed bulkhead in the carbon dioxide storage tank, carbon dioxide storage tank outer wall all is equipped with the thermometer rather than the inside intercommunication with the position that several independent storage chamber corresponds, a first extraction jar and a second extraction jar liquid outlet all are equipped with the extract and collect the subassembly the liquid outlet and the inlet of carbon dioxide filter of carbon dioxide storage tank are connected. The utility model discloses the energy loss of super supercritical carbon dioxide fluid extraction in -process has been reduced.
Description
Technical field
The utility model belongs to carbon dioxide extraction apparatus field, is specifically related to a kind of extraction equipment of overcritical xanthopicrite.
Background technology
In the extraction process of xanthopicrite, need, by syringe pump, the carbon dioxide of liquid is sent into extraction equipment, to extract.Traditional SFE-CO2 technologic study adopts condensation unit refrigeration, stores with CO2 storage tank, squeeze into extracting system start circulation through high-pressure pump after CO2 cooling is formed fluid; Heat, adopt the mode preparing hot water or steam.To heat and refrigeration two overlaps independently system, and the cold energy that under supercriticality, CO2 produces with the change of pressure change high temperature or heat energy are not fully used.
Utility model content
Technical problem to be solved in the utility model is for above-mentioned the deficiencies in the prior art, provides a kind of extraction equipment of overcritical xanthopicrite, reduces the energy loss in supercritical carbon dioxide extraction process.
The technical scheme that the utility model adopts is: a kind of extraction equipment of overcritical xanthopicrite, comprise carbon dioxide storage tank, carbon dioxide filter, condenser, high-pressure pump, first extractor, second extractor, heater and separator, several independently storage chamber is divided into by the seal diaphragm of level in described carbon dioxide storage tank, the position that described carbon dioxide storage tank outer wall is corresponding with several independently storage chamber is equipped with the thermometer that be communicated with inner with it, described first extractor and the second extractor liquid outlet are equipped with extract collection assembly, described extract collection assembly comprises the housing be tightly connected with the first extractor and the second extractor liquid outlet, described enclosure interior establishes Packed screen, described housing is provided with liquid level display near the position at top, the bleeding point being respectively equipped with Pressure gauge in the middle part of described housing exterior walls and being communicated with enclosure interior, described bleeding point is connected with an aspiration pump by exhaust tube, described housing exterior walls bottom is provided with on-liquid material clean-up port, the liquid outlet of described carbon dioxide storage tank is connected with the inlet of carbon dioxide filter, the pipeline that described carbon dioxide storage tank is connected with carbon dioxide filter is provided with high-pressure pump, the liquid outlet of described carbon dioxide filter is connected with the inlet of condenser, the liquid outlet of described condenser is connected with the inlet of the first extractor, the liquid outlet of described first extractor is connected with the inlet of the second extractor, the described liquid outlet of the second extractor is connected with the inlet of heater, the liquid outlet of described heater is connected with the inlet of separator, described separator outer wall is provided with single-chip microcomputer, the liquid outlet of described separator is provided with extract collection vessel by pipeline, the pipeline of described separator liquid outlet is provided with magnetic valve, described extract collection vessel is made up of transparent material, liquid level sensor is provided with in described extract collector, the signal output part of described liquid level sensor is connected with the signal input part of single-chip microcomputer, the signal output part of described single-chip microcomputer is connected with the signal input part of magnetic valve.
As preferably, described several independently storage chamber shape, consistent size.
As preferably, described liquid level display is glass pipe type fluid level indicator.
As preferably, between described bleeding point and exhaust tube, be provided with sealing ring.
As preferably, institute's single-chip microcomputer is connected with separator outer wall by installing plate.
The beneficial effects of the utility model are: carbon dioxide storage tank, carbon dioxide filter, condenser, high-pressure pump, the first extractor, the second extractor, heater and separator form a complete extracting system, reduce the energy loss in supercritical carbon dioxide extraction process in the process of extraction.The setting of extract collection assembly, can collect extract, and detects the parameters of extract.
Accompanying drawing explanation
Fig. 1 is the utility model structural representation;
Fig. 2 is the utility model extract collection assembly structural representation.
In figure: 1, carbon dioxide storage tank; 2, carbon dioxide filter; 3, condenser; 4, high-pressure pump; 5, the first extractor; 6, the second extractor; 7, heater; 8, separator; 9, thermometer; 10, drive motors; 11, extract collection assembly; 12, single-chip microcomputer; 13, extract collection vessel; 14, magnetic valve; 15, liquid level sensor; 111, housing; 112, screen; 113, liquid level display; 114, Pressure gauge; 115, bleeding point; 116, on-liquid material clean-up port.
Detailed description of the invention
Below in conjunction with the accompanying drawings and the specific embodiments the utility model is described in further detail.
As depicted in figs. 1 and 2, a kind of extraction equipment of overcritical xanthopicrite, comprise carbon dioxide storage tank 1, carbon dioxide filter 2, condenser 3, high-pressure pump 4, first extractor 5, second extractor 6, heater 7 and separator 8, several independently storage chamber is divided into by the seal diaphragm of level in described carbon dioxide storage tank 1, the position that described carbon dioxide storage tank 1 outer wall is corresponding with several independently storage chamber is equipped with the thermometer 9 that be communicated with inner with it, described first extractor 5 and the second extractor 6 liquid outlet are equipped with extract collection assembly 11, described extract collection assembly 11 comprises the housing 111 be tightly connected with the first extractor 5 and the second extractor 6 liquid outlet, Packed screen 112 is established in described housing 111 inside, described housing 111 is provided with liquid level display 113 near the position at top, the bleeding point 115 being respectively equipped with Pressure gauge 114 in the middle part of described housing 111 outer wall and being communicated with housing 111 inside, described bleeding point 115 is connected with an aspiration pump by exhaust tube, described housing 111 outer wall bottom is provided with on-liquid material clean-up port 116, the liquid outlet of described carbon dioxide storage tank 1 is connected with the inlet of carbon dioxide filter 2, the pipeline that described carbon dioxide storage tank 1 is connected with carbon dioxide filter 2 is provided with high-pressure pump 4, the liquid outlet of described carbon dioxide filter 2 is connected with the inlet of condenser 3, the liquid outlet of described condenser 3 is connected with the inlet of the first extractor 5, the liquid outlet of described first extractor 5 is connected with the inlet of the second extractor 6, the liquid outlet of described second extractor 6 is connected with the inlet of heater 7, the liquid outlet of described heater 7 is connected with the inlet of separator 8, described separator 8 outer wall is provided with single-chip microcomputer 12, the liquid outlet of described separator 8 is provided with extract collection vessel 13 by pipeline, the pipeline of described separator 8 liquid outlet is provided with magnetic valve 14, described extract collection vessel 13 is made up of transparent material, liquid level sensor 15 is provided with in described extract collector, the signal output part of described liquid level sensor 15 is connected with the signal input part of single-chip microcomputer 12, the signal output part of described single-chip microcomputer 12 is connected with the signal input part of magnetic valve 14.
In the present embodiment, described several independently storage chamber shape, consistent size.
In the present embodiment, described liquid level display 113 is glass pipe type fluid level indicator.
In the present embodiment, between described bleeding point 115 and exhaust tube, be provided with sealing ring.
In the present embodiment, institute's single-chip microcomputer 12 is connected with separator 8 outer wall by installing plate.
Carbon dioxide storage tank 1, carbon dioxide filter 2, condenser 3, high-pressure pump 4, first extractor 5, second extractor 6, heater 7 and separator 8 form a complete extracting system, reduce the energy loss in supercritical carbon dioxide extraction process in the process of extraction.The setting of extract collection assembly 11, can collect extract, and detects the parameters of extract.
Claims (5)
1. the extraction equipment of an overcritical xanthopicrite, it is characterized in that: comprise carbon dioxide storage tank (1), carbon dioxide filter (2), condenser (3), high-pressure pump (4), first extractor (5), second extractor (6), heater (7) and separator (8), several independently storage chamber is divided into by the seal diaphragm of level in described carbon dioxide storage tank (1), the position that described carbon dioxide storage tank (1) outer wall is corresponding with several independently storage chamber is equipped with the thermometer (9) that be communicated with inner with it, described first extractor (5) and the second extractor (6) liquid outlet are equipped with extract collection assembly (11), described extract collection assembly (11) comprises the housing (111) be tightly connected with the first extractor (5) and the second extractor (6) liquid outlet, Packed screen (112) is established in described housing (111) inside, described housing (111) is provided with liquid level display (113) near the position at top, the bleeding point (115) being respectively equipped with Pressure gauge (114) in the middle part of described housing (111) outer wall and being communicated with housing (111) inside, described bleeding point (115) is connected with an aspiration pump by exhaust tube, described housing (111) outer wall bottom is provided with on-liquid material clean-up port (116), the liquid outlet of described carbon dioxide storage tank (1) is connected with the inlet of carbon dioxide filter (2), the pipeline that described carbon dioxide storage tank (1) is connected with carbon dioxide filter (2) is provided with high-pressure pump (4), the liquid outlet of described carbon dioxide filter (2) is connected with the inlet of condenser (3), the liquid outlet of described condenser (3) is connected with the inlet of the first extractor (5), the liquid outlet of described first extractor (5) is connected with the inlet of the second extractor (6), the liquid outlet of described second extractor (6) is connected with the inlet of heater (7), the liquid outlet of described heater (7) is connected with the inlet of separator (8), described separator (8) outer wall is provided with single-chip microcomputer (12), the liquid outlet of described separator (8) is provided with extract collection vessel (13) by pipeline, the pipeline of described separator (8) liquid outlet is provided with magnetic valve (14), described extract collection vessel (13) is made up of transparent material, liquid level sensor (15) is provided with in described extract collector, the signal output part of described liquid level sensor (15) is connected with the signal input part of single-chip microcomputer (12), the signal output part of described single-chip microcomputer (12) is connected with the signal input part of magnetic valve (14).
2. the extraction equipment of a kind of overcritical xanthopicrite according to claim 1, is characterized in that: described several independently storage chamber shape, consistent size.
3. the extraction equipment of a kind of overcritical xanthopicrite according to claim 1 and 2, is characterized in that: described liquid level display (113) is glass pipe type fluid level indicator.
4. the extraction equipment of a kind of overcritical xanthopicrite according to claim 1 and 2, is characterized in that: be provided with sealing ring between described bleeding point (115) and exhaust tube.
5. the extraction equipment of a kind of overcritical xanthopicrite according to claim 1 and 2, is characterized in that: institute's single-chip microcomputer (12) is connected with separator (8) outer wall by installing plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520763205.5U CN205084446U (en) | 2015-09-29 | 2015-09-29 | Extraction device of overcritical xanthopicrite |
Applications Claiming Priority (1)
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CN201520763205.5U CN205084446U (en) | 2015-09-29 | 2015-09-29 | Extraction device of overcritical xanthopicrite |
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CN205084446U true CN205084446U (en) | 2016-03-16 |
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CN201520763205.5U Expired - Fee Related CN205084446U (en) | 2015-09-29 | 2015-09-29 | Extraction device of overcritical xanthopicrite |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109126195A (en) * | 2018-09-25 | 2019-01-04 | 武晓丹 | A kind of supercritical carbon dioxide extraction device |
CN111406974A (en) * | 2019-01-07 | 2020-07-14 | 昆明和捷科技有限公司 | Tobacco online countercurrent spiral extraction device |
-
2015
- 2015-09-29 CN CN201520763205.5U patent/CN205084446U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109126195A (en) * | 2018-09-25 | 2019-01-04 | 武晓丹 | A kind of supercritical carbon dioxide extraction device |
CN109126195B (en) * | 2018-09-25 | 2020-12-08 | 博兴兴业精细化工产业发展有限公司 | Supercritical carbon dioxide fluid extraction device |
CN111406974A (en) * | 2019-01-07 | 2020-07-14 | 昆明和捷科技有限公司 | Tobacco online countercurrent spiral extraction device |
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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: 20160316 Termination date: 20200929 |
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CF01 | Termination of patent right due to non-payment of annual fee |