CN205902516U - Carbon dioxide management and control system - Google Patents

Carbon dioxide management and control system Download PDF

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Publication number
CN205902516U
CN205902516U CN201620897368.7U CN201620897368U CN205902516U CN 205902516 U CN205902516 U CN 205902516U CN 201620897368 U CN201620897368 U CN 201620897368U CN 205902516 U CN205902516 U CN 205902516U
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CN
China
Prior art keywords
carbon dioxide
main line
branch pipeline
hand
valve
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201620897368.7U
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Chinese (zh)
Inventor
王平
唐先志
粟正波
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sichuan New Born Sail Agricultural Technology Co Ltd
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Sichuan New Born Sail Agricultural Technology Co Ltd
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Priority to CN201620897368.7U priority Critical patent/CN205902516U/en
Application granted granted Critical
Publication of CN205902516U publication Critical patent/CN205902516U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The present invention provides a carbon dioxide management and control system is including the main line and spare duct and at least one the branch pipeline that are parallelly connected relation, be equipped with first manual valve, first solenoid valve and the manual valve of second in proper order along its carbon dioxide flow path on the main line, be equipped with the manual valve of third on the spare duct, the gas outlet of main line is connected the air inlet that divides the pipeline, it is equipped with manual valve of fourth and second solenoid valve in proper order to be in charge of its flow path of curb, the gas outlet of branch pipeline is equipped with connection director's carbon dioxide sensor. The utility model relates to an it is simple reasonable, automatic control, convenient maintenance, the security is high.

Description

Carbon dioxide management and control system
Technical field
The utility model is related to the fields such as seedling culture, plant culture and in particular to a kind of carbon dioxide management and control system.
Background technology
Carbon dioxide is increasingly paid attention to by plant production person as one of the primary raw material of photosynthesis of plant, During plant production using carbon dioxide as a kind of Fertilizer application, enrich in right amount carbon-dioxide gasfertilizer be conducive to plant give birth to Long.To human body non-hazardous when carbon dioxide is few, but the breathing of people or other biological when it exceedes a certain amount of, can be affected, reason is blood Carbonate concentration in liquid increases, acid enhancing, and produces acid poisoning.Enrich carbon-dioxide gasfertilizer way at present all more rough, It is nearly all directly to use bottled gas or using chemical reaction self-control carbon dioxide, nothing in application in cultivating facility kind Method accurately detects administration space carbon dioxide concentration, thus also cannot accomplish accurately to apply and control, excessive carbon dioxide Exist and not only caused waste in cultivating facility but also potential safety hazard is defined to human body.
Utility model content
For the problems referred to above, the utility model proposes one kind automatically controls, convenient keep in repair, safe carbon dioxide Managing and control system.
The technical solution of the utility model is: a kind of carbon dioxide management and control system, including the main line in parallel relationship and Spare duct and at least one branch pipeline, on described main line along its carbon dioxide stream be sequentially provided with first manual valve, One magnetic valve and the second hand-operated valve;Described spare duct is provided with the 3rd hand-operated valve;The gas outlet of described main line connects described The air inlet of branch pipeline, described branch pipeline is sequentially provided with the 4th hand-operated valve and the second magnetic valve along its stream;Described branch pipeline Gas outlet is provided with the carbon dioxide sensor connecting controller.
By this scheme, work at ordinary times in the middle of except the 3rd hand-operated valve be closed mode, other valves are all open shapes State, carbon dioxide management and control system, by gas concentration lwevel in the real-time measurement space of sensor in space, timely feeds back to Controller, controller is judged by preliminary setting parameter, if close higher than the corresponding magnetic valve of setup parameter, if be less than setting at once Parameter then continues transport of carbon dioxide and reaches preset parameter value until measured value.
It may further be preferable that in each described branch pipeline, parallel connection is provided with a hand-operated valve spare duct, when being used as maintenance Stream, open bypass hand-operated valve, close branch pipeline hand-operated valve, convenient going wrong in the second magnetic valve is by keeping in repair or replacing Change, also meet the continuation conveying of carbon dioxide simultaneously, if occurring reporting to the police when being in charge of way solenoid valve maintenance, can temporary close the One magnetic valve is ensuring safety.
It is even furthermore preferable that the inlet end of described main line is provided with pressure gauge, it is easy to monitor the pressure of described main line Power, prevents hypertonia from security incident.
It is even furthermore preferable that described pressure gauge is the pressure transmitter connecting controller, facilitate remote real-time monitoring, In time Monitoring Data, automatic alarm reacting during hypertonia.
The beneficial effects of the utility model are:
1st, the drawbacks of avoid traditional application process amount of application and cannot accurately monitor, the personnel that reduce work in space Risk, also greatly make use of carbon dioxide, it is to avoid waste.When the first magnetic valve breaks down, open 3rd hand-operated valve, cuts out first manual valve and the second hand-operated valve, the first magnetic valve is keeped in repair, facilitates magnetic valve more Change, also assures that the conveying of carbon dioxide and control during replacing simultaneously.When sensor measure carbon dioxide exceeded when, can close Corresponding pipeline electromagnetic valve, then can close total magnetic valve when all exceeded, convenient, safety, quick.
2nd, hand-operated valve spare duct is used as stream during maintenance, opens bypass hand-operated valve, closes branch pipeline hand-operated valve, convenient Go wrong in the second magnetic valve and be by keeping in repair or replace, also meet the continuation conveying of carbon dioxide, branch pipeline electricity simultaneously If occurring reporting to the police during magnet valve maintenance, can temporary close first magnetic valve ensuring safety.
3rd, pressure gauge is easy to monitor the pressure of described main line, prevents hypertonia from security incident.
4th, pressure transmitter facilitates remote real-time monitoring, timely Monitoring Data, automatic alarm make anti-during hypertonia Should
Brief description
Fig. 1 is the schematic diagram of carbon dioxide management and control system of the present utility model.
Reference: 1- main line, 2- spare duct, 3- branch pipeline, 4- first manual valve, 5- first magnetic valve, 6- Two hand-operated valves, 7- the 3rd hand-operated valve, 8- the 4th hand-operated valve, 9- second magnetic valve, 10- carbon dioxide sensor, 11- pressure gauge.
Specific embodiment
Below in conjunction with the accompanying drawings embodiment of the present utility model is described in detail.
Embodiment one
As shown in figure 1, a kind of carbon dioxide management and control system, including the main line 1 in parallel relationship and spare duct 2, with And at least one branch pipeline 3, described main line 1 is sequentially provided with first manual valve 4, the first magnetic valve along its carbon dioxide stream 5 and second hand-operated valve 6;Described spare duct 2 is provided with the 3rd hand-operated valve 7;The gas outlet of described main line 1 is in charge of described in connecting The air inlet on road 3, described branch pipeline 3 is sequentially provided with the 4th hand-operated valve 8 and the second magnetic valve 9 along its stream;Described branch pipeline 3 Gas outlet is provided with the carbon dioxide sensor 10 connecting controller.
Embodiment two
As shown in figure 1, a kind of carbon dioxide management and control system, including the main line 1 in parallel relationship and spare duct 2, with And at least one branch pipeline 3, described main line 1 is sequentially provided with first manual valve 4, the first magnetic valve along its carbon dioxide stream 5 and second hand-operated valve 6;Described spare duct 2 is provided with the 3rd hand-operated valve 7;The gas outlet of described main line 1 is in charge of described in connecting The air inlet on road 3, described branch pipeline 3 is sequentially provided with the 4th hand-operated valve 8 and the second magnetic valve 9 along its stream;Described branch pipeline 3 Gas outlet is provided with the carbon dioxide sensor 10 connecting controller.
Parallel connection in each described branch pipeline 3 is provided with a hand-operated valve spare duct, is used as stream during maintenance, opens bypass Hand-operated valve, cuts out branch pipeline hand-operated valve, and convenient going wrong in the second magnetic valve is by keeping in repair or replaces, and also meets simultaneously The continuation conveying of carbon dioxide, if occurring reporting to the police when being in charge of way solenoid valve maintenance, can temporary close first magnetic valve ensureing Safety.
Embodiment three
As shown in figure 1, a kind of carbon dioxide management and control system, including the main line 1 in parallel relationship and spare duct 2, with And at least one branch pipeline 3, described main line 1 is sequentially provided with first manual valve 4, the first magnetic valve along its carbon dioxide stream 5 and second hand-operated valve 6;Described spare duct 2 is provided with the 3rd hand-operated valve 7;The gas outlet of described main line 1 is in charge of described in connecting The air inlet on road 3, described branch pipeline 3 is sequentially provided with the 4th hand-operated valve 8 and the second magnetic valve 9 along its stream;Described branch pipeline 3 Gas outlet is provided with the carbon dioxide sensor 10 connecting controller.
Parallel connection in each described branch pipeline 3 is provided with a hand-operated valve spare duct, is used as stream during maintenance, opens bypass Hand-operated valve, cuts out branch pipeline hand-operated valve, and convenient going wrong in the second magnetic valve is by keeping in repair or replaces, and also meets simultaneously The continuation conveying of carbon dioxide, if occurring reporting to the police when being in charge of way solenoid valve maintenance, can temporary close first magnetic valve ensureing Safety.
The inlet end of described main line 1 is provided with pressure gauge 10, is easy to monitor the pressure of described main line, prevents hypertonia Security incident occurs.
Example IV
As shown in figure 1, a kind of carbon dioxide management and control system, including the main line 1 in parallel relationship and spare duct 2, with And at least one branch pipeline 3, described main line 1 is sequentially provided with first manual valve 4, the first magnetic valve along its carbon dioxide stream 5 and second hand-operated valve 6;Described spare duct 2 is provided with the 3rd hand-operated valve 7;The gas outlet of described main line 1 is in charge of described in connecting The air inlet on road 3, described branch pipeline 3 is sequentially provided with the 4th hand-operated valve 8 and the second magnetic valve 9 along its stream;Described branch pipeline 3 Gas outlet is provided with the carbon dioxide sensor 10 connecting controller.
Parallel connection in each described branch pipeline 3 is provided with a hand-operated valve spare duct, is used as stream during maintenance, opens bypass Hand-operated valve, cuts out branch pipeline hand-operated valve, and convenient going wrong in the second magnetic valve is by keeping in repair or replaces, and also meets simultaneously The continuation conveying of carbon dioxide, if occurring reporting to the police when being in charge of way solenoid valve maintenance, can temporary close first magnetic valve ensureing Safety.
The inlet end of described main line 1 is provided with pressure gauge 10, is easy to monitor the pressure of described main line, prevents hypertonia Security incident occurs.
Described pressure gauge 10 is the pressure transmitter connecting controller, facilitates remote real-time monitoring, timely Monitoring Data, pressure Automatic alarm reacting when power is too high.
Embodiment described above only have expressed specific embodiment of the present utility model, and its description is more concrete and detailed, But therefore can not be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that it is common for this area For technical staff, without departing from the concept of the premise utility, some deformation can also be made and improve, these all belong to In protection domain of the present utility model.

Claims (4)

1. a kind of carbon dioxide management and control system is it is characterised in that include the main line in parallel relationship and spare duct, Yi Jizhi A few branch pipeline, described main line is sequentially provided with first manual valve, the first magnetic valve and second along its carbon dioxide stream Hand-operated valve;Described spare duct is provided with the 3rd hand-operated valve;The gas outlet of described main line connects the air inlet of described branch pipeline, Described branch pipeline is sequentially provided with the 4th hand-operated valve and the second magnetic valve along its stream;The gas outlet of described branch pipeline is provided with connection control The carbon dioxide sensor of device processed.
2. carbon dioxide management and control system according to claim 1 it is characterised in that in each described branch pipeline parallel connection be provided with One hand-operated valve spare duct.
3. carbon dioxide management and control system according to claim 1 is it is characterised in that the inlet end of described main line is provided with pressure Power table.
4. carbon dioxide management and control system according to claim 3 is it is characterised in that described pressure gauge is to connect controller Pressure transmitter.
CN201620897368.7U 2016-08-18 2016-08-18 Carbon dioxide management and control system Expired - Fee Related CN205902516U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620897368.7U CN205902516U (en) 2016-08-18 2016-08-18 Carbon dioxide management and control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620897368.7U CN205902516U (en) 2016-08-18 2016-08-18 Carbon dioxide management and control system

Publications (1)

Publication Number Publication Date
CN205902516U true CN205902516U (en) 2017-01-25

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Application Number Title Priority Date Filing Date
CN201620897368.7U Expired - Fee Related CN205902516U (en) 2016-08-18 2016-08-18 Carbon dioxide management and control system

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110030499A (en) * 2019-05-23 2019-07-19 美钻深海能源科技研发(上海)有限公司 Online underwater oil and gas leakage safety monitoring device and method
CN114432809A (en) * 2021-12-31 2022-05-06 安徽华塑股份有限公司 Lime kiln carbon dioxide entrapment utilizes system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110030499A (en) * 2019-05-23 2019-07-19 美钻深海能源科技研发(上海)有限公司 Online underwater oil and gas leakage safety monitoring device and method
CN110030499B (en) * 2019-05-23 2020-01-24 美钻深海能源科技研发(上海)有限公司 Online underwater oil gas leakage safety monitoring device and method
CN114432809A (en) * 2021-12-31 2022-05-06 安徽华塑股份有限公司 Lime kiln carbon dioxide entrapment utilizes system

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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: 20170125

Termination date: 20210818

CF01 Termination of patent right due to non-payment of annual fee