CN109030767A - A kind of new energy detection technique means of defence - Google Patents

A kind of new energy detection technique means of defence Download PDF

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Publication number
CN109030767A
CN109030767A CN201810785240.5A CN201810785240A CN109030767A CN 109030767 A CN109030767 A CN 109030767A CN 201810785240 A CN201810785240 A CN 201810785240A CN 109030767 A CN109030767 A CN 109030767A
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operation box
aseptic operation
oxygen
nitrogen
gas
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CN201810785240.5A
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CN109030767B (en
Inventor
邵文雨
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Shenzhen Siking Technology Co ltd
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Foshan Kuifeng Business Consulting Service Co Ltd
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/22Fuels, explosives
    • G01N33/222Solid fuels, e.g. coal

Abstract

The invention discloses a kind of new energy detection technique means of defences, the following steps are included: S1, environmental preparation: the selection higher aseptic operation box of air-tightness, the gas that combustible ice is sublimed into inside aseptic operation box is avoided to flow out inside aseptic operation box, oxygen sensor is installed in aseptic operation box top inner wall, then the outlet side of one side bottom of aseptic operation box and oxygen generator is connected, and oxygen air valve is installed between the outlet side and aseptic operation box of oxygen generator, the outlet side of a side bottom of aseptic operation box connection oxygen generator and nitrogen gas generator is connected simultaneously, the present invention is carried out by will be placed on inside aseptic operation box in laboratory to the experiment of combustible ice, the air for the pernicious gas pollution laboratory internal for avoiding combustible ice from generating, and by control to the nitrogen for being passed through appropriate concentration inside aseptic operation box Or oxygen is conducive to preferably carry out different types of combustible ice test experience to create environment required for different types of experiment.

Description

A kind of new energy detection technique means of defence
Technical field
The present invention relates to new energy detection technique field, specially a kind of new energy detection technique means of defence.
Background technique
Gas hydrates are distributed across in the permafrost of halmeic deposit or land-based area, by natural gas and water in high pressure The crystalline material of the class ice-like formed under cryogenic conditions;Because of its appearance as ice and also meet fire be incendivity, so claimed again Make " combustible ice " or " solid gas " and " gas ice ".It is a solid block object in fact.
When it is found that a kind of new energy when could after needing to detect new energy, assess, test Enough determine constituent, performance and its application prospect of new energy.
But there are some drawbacks in operation in traditional new energy detection method, such as:
Traditional detection for combustible ice is typically all in the directly outdoor detection in laboratory, but since combustible ice is readily volatilized More methane gas is released, therefore traditional outdoor experiment is carried out to combustible ice in laboratory easily lead to laboratory Interior Methane in Air concentration over-standard is easy for causing the methane in air when experimenter accidentally generates open fire in operation Gas generates detonation, causes fire when serious;It is also easy to release a certain amount of hydrogen sulfide gas when combustible ice volatilization simultaneously, and Hydrogen sulfide gas is harmful to the human body, and human body is be easy to cause to damage.
Summary of the invention
The purpose of the present invention is to provide a kind of new energy detection technique means of defences, to solve to mention in above-mentioned background technique Out the problem of.
To achieve the above object, the invention provides the following technical scheme: a kind of new energy detection technique means of defence, including Following steps:
S1, environmental preparation:
The higher aseptic operation box of air-tightness is selected, avoids combustible ice is sublimed into inside aseptic operation box gas from sterile working Outflow inside case installs oxygen sensor in aseptic operation box top inner wall, then by one side bottom of aseptic operation box and oxygen The outlet side of generator is connected, and oxygen air valve is installed between the outlet side and aseptic operation box of oxygen generator, simultaneously will The outlet side of a side bottom and nitrogen gas generator that aseptic operation box connects oxygen generator is connected, and going out in nitrogen gas generator Nitrogen air valve is installed between gas end and aseptic operation box, finally installs and arranges far from one side bottom of oxygen generator in aseptic operation box Air valve;
S2, test experience:
S21, physical test: when needing to carry out combustible ice cutting detection, temperature detection, generating gas componant sample detection It waits, by opening simultaneously exhaust valve and nitrogen air valve, and it is sufficient clean to being passed through inside aseptic operation box to open nitrogen gas generator Net nitrogen continues to be passed through nitrogen to the inside of aseptic operation box, and take simultaneously small when being full of nitrogen inside aseptic operation box Block combustible ice and experiment appliance are placed on inside aseptic operation box, and aseptic operation box is sealed, and are closed in time after the completion Exhaust valve and nitrogen air valve, and nitrogen gas generator is closed, then tested;
S22, combustion experiment: when needing to carry out combustion experiment to the gas that combustible ice generates, oxygen air valve is opened simultaneously Oxygen generator is opened, continues to be passed through trace oxygen, user into the aseptic operation box full of nitrogen using oxygen generator The oxygen concentration inside aseptic operation box can be observed in real time by oxygen sensor, so that the oxygen concentration in aseptic operation box Always it is not higher than 30%, oxygen supply is closed by oxygen air valve when oxygen concentration is more than 30%;
S3, vent gas treatment:
Pass through opening exhaust valve after the completion of the test experience so that the higher nitrogen of density is flowed out from exhaust valve, and density compared with Low methane gas and oxygen is gathered in sterile working box top, oxygen air valve and oxygen generator is opened at this time, to sterile behaviour Make to be passed through sufficient oxygen inside case, and by the full combustion inside it of the methane gas inside aseptic operation box.
Further, the combustible ice is wrapped combustible ice using liquid nitrogen before being placed into aseptic operation box inside Wrap up in freezing.
Further, the nitrogen gas generator and oxygen generator are mounted on aseptic operation box same side.
Further, methane alarm is installed outside the exhaust valve.
Further, the aseptic operation box is made of implosion guard.
Further, its internal nitrogen gas concn is not less than when carrying out Physical Experiment inside the aseptic operation box 80%。
Further, pass through after the S3 vent gas treatment and open nitrogen air valve, by nitrogen gas generator to sterile working Enough nitrogen is passed through inside case.
Further, the aseptic operation box carry out after vent gas treatment using air pump by its internal residual gas extract to In the gas container of sealing.
Further, sealant is all made of at the oxygen sensor power lug to be sealed.
Further, it is surveyed when carrying out temperature detection to combustible ice in the S21 Physical Experiment using infrared thermometer Amount.
Compared with prior art, the beneficial effects of the present invention are:
It is carried out by will be placed on inside aseptic operation box in laboratory to the experiment of combustible ice, the nocuousness for avoiding combustible ice from generating The air of gaseous contamination laboratory internal, and by control to the nitrogen or oxygen for being passed through appropriate concentration inside aseptic operation box Gas is conducive to preferably carry out different types of combustible ice detection in fact to create environment required for different types of experiment It tests.
Specific embodiment
The technical scheme in the embodiments of the invention will be clearly and completely described below, it is clear that described implementation Example is only a part of the embodiment of the present invention, instead of all the embodiments.Based on the embodiments of the present invention, this field is common Technical staff's every other embodiment obtained without making creative work belongs to the model that the present invention protects It encloses.
The present invention provides a kind of technical solution: a kind of new energy detection technique means of defence, comprising the following steps:
S1, environmental preparation:
The higher aseptic operation box of air-tightness is selected, avoids combustible ice is sublimed into inside aseptic operation box gas from sterile working Outflow inside case, the methane and hydrogen sulfide for avoiding combustible ice from volatilizing are flow in laboratory, due in sterile working box top Inner wall installs oxygen sensor, the oxygen concentration inside aseptic operation box is observed in real time convenient for experimenter, then by sterile working The outlet side of one side bottom of case and oxygen generator is connected, and is installed between the outlet side and aseptic operation box of oxygen generator Oxygen air valve is passed through required oxygen concentration inside aseptic operation box convenient for controlling to adjust, while aseptic operation box is connected oxygen One side bottom of gas generator and the outlet side of nitrogen gas generator are connected, and in the outlet side of nitrogen gas generator and aseptic operation box Between nitrogen air valve is installed,, can in order to using the inert nature of nitrogen convenient for being passed through nitrogen inside aseptic operation box Enough protective gas as reaction finally install exhaust valve far from one side bottom of oxygen generator in aseptic operation box, convenient for row Unwanted gas inside aseptic operation box out;
S2, test experience:
S21, physical test: when needing to carry out combustible ice cutting detection, temperature detection, generating gas componant sample detection It waits, by opening simultaneously exhaust valve and nitrogen air valve, and it is sufficient clean to being passed through inside aseptic operation box to open nitrogen gas generator Net nitrogen, so that combustible ice and other gases can be prevented since nitrogen is inert gas full of nitrogen inside aseptic operation box It reacts, guarantees that experiment is not disturbed to the greatest extent, when nitrogen is full of inside aseptic operation box, continue to sterile Nitrogen is passed through inside control box, what air was excessive when can be avoided placement combustible ice enters aseptic operation box, guarantees sterile Nitrogen gas concn inside control box, and fritter combustible ice and experiment appliance is taken to be placed on inside aseptic operation box simultaneously, and by nothing Bacterium control box is sealed, and closes exhaust valve and nitrogen air valve in time after the completion, and close nitrogen gas generator, is then carried out real It tests, guarantees that Physical Experiment is in always in the nitrogen of higher concentration, in order to protect using nitrogen to Physical Experiment;
S22, combustion experiment: when needing to carry out combustion experiment to the gas that combustible ice generates, oxygen air valve is opened simultaneously Oxygen generator is opened, continues to be passed through trace oxygen into the aseptic operation box full of nitrogen using oxygen generator, persistently lead to Sufficient oxygen supply can be provided for the burning of combustible ice by entering oxygen, and user can observe in real time nothing by oxygen sensor Oxygen concentration inside bacterium control box, so that the oxygen concentration in aseptic operation box is not higher than 30% always, when oxygen concentration is more than Oxygen supply is closed by oxygen air valve when 30%, due to the methane gas that combustible ice generates when oxygen concentration is excessively high Deflagration phenomenon occurs under conditions of lighting for body and easy and oxygen, and deflagration phenomenon is easy to cause fire, it is therefore desirable to reduce Oxygen concentration avoids deflagration phenomenon;
S3, vent gas treatment:
Pass through opening exhaust valve after the completion of the test experience so that the higher nitrogen of density is flowed out from exhaust valve, and density compared with Low methane gas and oxygen is gathered in sterile working box top, oxygen air valve and oxygen generator is opened at this time, to sterile behaviour Make to be passed through sufficient oxygen inside case, sufficient oxygen supply can be provided for methyl hydride combustion by being passed through enough oxygen, and at this time Methane concentration inside aseptic operation box is lower, the deflagration phenomenon of higher-strength will not occur, and will be inside aseptic operation box Methane gas full combustion inside it.
Wherein, combustible ice wrap up cold by the combustible ice before being placed into aseptic operation box inside using liquid nitrogen Freeze, can prevent combustible ice from volatilizing the pernicious gases such as methane and hydrogen sulfide during transhipment, and can become after liquid nitrogen gasification At nitrogen, the experimental result to combustible ice will not influence;
Wherein, the nitrogen gas generator and oxygen generator are mounted on aseptic operation box same side, so that by nitrogen and oxygen Two kinds of gases are independent of each other when being passed through inside to aseptic operation box;
Wherein, methane alarm is installed outside the exhaust valve, avoids being discharged at exhaust valve when carrying out exhaust emissions The air of methane gas, Protection chamber interior will not be polluted by methane;
Wherein, the aseptic operation box is made of implosion guard, guarantee it is transparent convenient for operation in the case where can be avoided production Life injures after firing for experimenter's bring;
Wherein, the nitrogen gas concn that it is internal when Physical Experiment is carried out inside the aseptic operation box and be not less than 80%, so that nitrogen Gas to the protection of experiment more preferably;
Wherein, pass through after the S3 vent gas treatment and open nitrogen air valve, by nitrogen gas generator to leading to inside aseptic operation box Enter enough nitrogen;Convenient for remaining pernicious gas inside dilution aseptic operation box, the concentration of pernicious gas is reduced, it is reduced with this Detrimental extent;
Wherein, the aseptic operation box is extracted its internal residual gas to the gas of sealing using air pump after carrying out vent gas treatment In body container, in order to be transported through processing to remaining pernicious gas;
Wherein, sealant is all made of at the oxygen sensor power lug to be sealed, avoid the electricity generated at power lug Spark lights the methane gas inside aseptic operation box;
Wherein, it is measured when carrying out temperature detection to combustible ice in the S21 Physical Experiment using infrared thermometer, so that right The temperature detection of combustible ice is more accurate.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment Intrinsic element.
It although an embodiment of the present invention has been shown and described, for the ordinary skill in the art, can be with A variety of variations, modification, replacement can be carried out to these embodiments without departing from the principles and spirit of the present invention by understanding And modification, the scope of the present invention is defined by the appended.

Claims (10)

1. a kind of new energy detection technique means of defence, which comprises the following steps:
S1, environmental preparation:
The higher aseptic operation box of air-tightness is selected, avoids combustible ice is sublimed into inside aseptic operation box gas from sterile working Outflow inside case installs oxygen sensor in aseptic operation box top inner wall, then by one side bottom of aseptic operation box and oxygen The outlet side of generator is connected, and oxygen air valve is installed between the outlet side and aseptic operation box of oxygen generator, simultaneously will The outlet side of a side bottom and nitrogen gas generator that aseptic operation box connects oxygen generator is connected, and going out in nitrogen gas generator Nitrogen air valve is installed between gas end and aseptic operation box, finally installs and arranges far from one side bottom of oxygen generator in aseptic operation box Air valve;
S2, test experience:
S21, physical test: when needing to carry out combustible ice cutting detection, temperature detection, generating gas componant sample detection It waits, by opening simultaneously exhaust valve and nitrogen air valve, and it is sufficient clean to being passed through inside aseptic operation box to open nitrogen gas generator Net nitrogen continues to be passed through nitrogen to the inside of aseptic operation box, and take simultaneously small when being full of nitrogen inside aseptic operation box Block combustible ice and experiment appliance are placed on inside aseptic operation box, and aseptic operation box is sealed, and are closed in time after the completion Exhaust valve and nitrogen air valve, and nitrogen gas generator is closed, then tested;
S22, combustion experiment: when needing to carry out combustion experiment to the gas that combustible ice generates, oxygen air valve is opened simultaneously Oxygen generator is opened, continues to be passed through trace oxygen, user into the aseptic operation box full of nitrogen using oxygen generator The oxygen concentration inside aseptic operation box can be observed in real time by oxygen sensor, so that the oxygen concentration in aseptic operation box Always it is not higher than 30%, oxygen supply is closed by oxygen air valve when oxygen concentration is more than 30%;
S3, vent gas treatment:
Pass through opening exhaust valve after the completion of the test experience so that the higher nitrogen of density is flowed out from exhaust valve, and density compared with Low methane gas and oxygen is gathered in sterile working box top, oxygen air valve and oxygen generator is opened at this time, to sterile behaviour Make to be passed through sufficient oxygen inside case, and by the full combustion inside it of the methane gas inside aseptic operation box.
2. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the combustible ice is being put It sets and combustible ice is subjected to package freezing using liquid nitrogen before entering inside aseptic operation box.
3. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the nitrogen gas generator Aseptic operation box same side is mounted on oxygen generator.
4. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: outside the exhaust valve Methane alarm is installed.
5. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the aseptic operation box It is made of implosion guard.
6. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the aseptic operation box Inside carries out the nitrogen gas concn that it is internal when Physical Experiment and is not less than 80%.
7. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the S3 vent gas treatment Later by opening nitrogen air valve, by nitrogen gas generator to being passed through enough nitrogen inside aseptic operation box.
8. a kind of new energy detection technique means of defence according to claim 7, it is characterised in that: the aseptic operation box Its internal residual gas is extracted into the gas container of sealing using air pump after carrying out vent gas treatment.
9. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the oxygen sensor Sealant is all made of at power lug to be sealed.
10. a kind of new energy detection technique means of defence according to claim 1, it is characterised in that: the S21 physics is real It is measured when carrying out temperature detection to combustible ice in testing using infrared thermometer.
CN201810785240.5A 2018-07-17 2018-07-17 New energy detection technology protection method Active CN109030767B (en)

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002114986A (en) * 2000-10-10 2002-04-16 Tokyo Electric Power Co Inc:The Method and apparatus for producing gas
CN1440832A (en) * 2003-04-01 2003-09-10 中国地质大学(武汉) Comprehensive test equipment for natural gas hydrate
CN103913519A (en) * 2013-01-05 2014-07-09 中国地质科学院矿产资源研究所 Gas chromatography system for natural gas hydrate and detection method for components of natural gas hydrate
CN104676587A (en) * 2015-03-16 2015-06-03 上海锅炉厂有限公司 Composite powder body fuel cyclone combustor
CN105018343A (en) * 2015-07-09 2015-11-04 广州安能特化学科技有限公司 Automated sample processing unit of original state microbial oil gas and hydrate exploration technology and automation workstation
CN205175109U (en) * 2014-12-30 2016-04-20 河北鼎佳炉业有限公司 Atmosphere protection heating furnace
CN107144625A (en) * 2017-06-23 2017-09-08 国家地质实验测试中心 Gas hydrates drill core light hydrocarbon gas content parses test system and method
CN107764868A (en) * 2017-10-23 2018-03-06 大庆东油睿佳石油科技有限公司 A kind of experimental provision for being used to measure gas hydrates physical property

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2002114986A (en) * 2000-10-10 2002-04-16 Tokyo Electric Power Co Inc:The Method and apparatus for producing gas
CN1440832A (en) * 2003-04-01 2003-09-10 中国地质大学(武汉) Comprehensive test equipment for natural gas hydrate
CN103913519A (en) * 2013-01-05 2014-07-09 中国地质科学院矿产资源研究所 Gas chromatography system for natural gas hydrate and detection method for components of natural gas hydrate
CN205175109U (en) * 2014-12-30 2016-04-20 河北鼎佳炉业有限公司 Atmosphere protection heating furnace
CN104676587A (en) * 2015-03-16 2015-06-03 上海锅炉厂有限公司 Composite powder body fuel cyclone combustor
CN105018343A (en) * 2015-07-09 2015-11-04 广州安能特化学科技有限公司 Automated sample processing unit of original state microbial oil gas and hydrate exploration technology and automation workstation
CN107144625A (en) * 2017-06-23 2017-09-08 国家地质实验测试中心 Gas hydrates drill core light hydrocarbon gas content parses test system and method
CN107764868A (en) * 2017-10-23 2018-03-06 大庆东油睿佳石油科技有限公司 A kind of experimental provision for being used to measure gas hydrates physical property

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
贺行良: "天然气水合物气体组成分析的样品前处理技术", 《岩矿测试》 *

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