CN202256158U - Real-time online detection analyzer for poisonous particles in smoke - Google Patents
Real-time online detection analyzer for poisonous particles in smoke Download PDFInfo
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- CN202256158U CN202256158U CN2011204072299U CN201120407229U CN202256158U CN 202256158 U CN202256158 U CN 202256158U CN 2011204072299 U CN2011204072299 U CN 2011204072299U CN 201120407229 U CN201120407229 U CN 201120407229U CN 202256158 U CN202256158 U CN 202256158U
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Abstract
The utility model relates to a real-time online detection analyzer for poisonous particles in a smoke, which comprises a sample collecting mechanism for collecting air pollutant; an optical analysis measurement mechanism for receiving the air pollutant collected by the sample collecting mechanism, analyzing the air pollutant by an optical principle and then converting optical signals into electrical signals; and an analysis system for converting the electric signals output from the optical analysis measurement mechanism into digital signals and then performing analysis. Thus, the analyzer of the utility model is advantageous in enriching the poisonous particles onto a filter membrane to greatly reduce a detection limit, detecting the pollutants such as iron, copper, aluminum, lead, cadmium, mercury and arsenic in the smoke and concentration of the pollutants at the same time, and greatly increasing the fluctuation caused by the change of a focus position by keeping the distance between a focus lens and the filter membrane constantly equal to a focal distance of the focus lens by use of distance detection and a feedback system. The analyzer of the utility model is simple in structure and convenient in operation, and is suitable for real-time online monitoring of poisonous particles in the smoke.
Description
Technical field
The utility model relates to a kind of real-time online check and analysis appearance, especially relates to the real-time online check and analysis appearance of poisonous particle in a kind of flue gas.
Background technology
Along with economic growth and social progress, people's environmental consciousness also strengthens day by day.Research and practice show that all the flue gas that burning is produced is the maximum pollution source of atmospheric environment." the national environmental protection Eleventh Five-Year Plan " of China proposed concrete requirement to the improvement of fume emission, also formulated the strict technical standard of " fume continuous monitoring system technical requirement of fixed-contamination source emission and detection method " simultaneously.Therefore, the discharging of how to control and to administer the combustion product gases pollutant has effectively become the focus that the government department and even the whole society pay close attention to, also becomes the focus and the forward position of related science research work simultaneously.
The pollutant kind that produces in the combustion process is a lot, and its harm form also has nothing in common with each other.The many harmful gases such as the CO of fume emission
x, SO
x, NO
xDeng, the influence of ecologic environment and global climate is come into one's own already, and or take measures to reduce its harm.But the harm to the multiple hazardous particle element in the fume emission such as As, Hg, Pb, Cr, Cd etc. then just causes people's attention gradually up to latter stage in last century.Environmental Defense once pointed out: in the multiple pollutant of combustion product gases discharging, with the hazardous particle element of sub-micrometer scale human beings'health is constituted the threat of maximum especially.These hazardous particle elements can be through the discharging of processes such as coal combustion, gas firing, waste incineration, ferrous metal and non-ferrous metal metallurgy, and diffusion and resident for a long time in atmosphere then is difficult for degraded.Not only can cause pollution to atmosphere, water body and soil etc.; Destroy ecologic environment; And in a single day these poisonous pellets suck human body, just can deposit in vivo, and be converted into the bigger corresponding organic compound of toxicity; Produce effects such as carcinogenic, teratogenesis and mutagenesis, human health is caused serious harm.Therefore, very urgent to the demand of hazardous particle element in monitoring, control and the improvement flue gas.
The method of pollutant is representational in the detection flue gas at present commonly used has inductively coupled plasma emission spectrography ICP-AES and a flame photometric analysis method.Though these two kinds of methods have improved the accuracy of detection to polluter; But must accomplish in the laboratory; And before detection, need carry out processing in early stage to sample, therefore, strict to testing environment, test period is long; Need the human and material resources resource of labor, can't in the process of burning, detect in real time.XRF analysis concentration range broad, but only be suitable for measuring atomic number greater than 11 element, and its accuracy of detection and sensitivity are not high; AAS is highly sensitive, but once can only detect a kind of element, carries out multielement and measures still simultaneously and have any problem.These methods all are not suitable in the combustion process real time on-line monitoring of poisonous particle in the flue gas.
Propose to adopt laser breakdown spectrum LIBS technology to solve this problem at present in the world.LIBS is a kind of brand-new material element analytical approach that grows up latter stage in 20th century.The high energy laser beam that this method utilization focuses on punctures the formation high-temperature plasma with material to be detected; Because various materials all are excited to high-energy state; They will give off characteristic spectrum separately in getting back to the process of ground state, through analyzing kind and the content that these spectrum can obtain material to be detected.LIBS detects the research ground zero of heavy metal element in the flue gas; General direct flue gas is measured as sample; Of patent 200820190025.2, but owing to the content of toxic heavy metal element in the flue gas is lower, the method detectability of this direct detection is not enough.
The utility model content
The utility model mainly is to solve the existing in prior technology technical matters; Provide a kind of and to filter membrane, can reduce detectability greatly through earlier poisonous particle being carried out enrichment; Can detect the real-time online check and analysis appearance of poisonous particle in a kind of flue gas of pollutants such as iron in the flue gas, copper, aluminium, lead, cadmium, mercury, arsenic and concentration thereof simultaneously.
It is the technical matters that solves existing in prior technology etc. that the utility model also has a purpose; Provide a kind of and made the position of condenser lens and filter membrane keep the constant focal length that equals condenser lens, improved greatly because the focal position changes the fluctuation that causes through range finding and feedback system; And simple in structure, easy to operate, be fit to real-time online check and analysis appearance to poisonous particle in a kind of flue gas of the real time on-line monitoring of poisonous particle in the flue gas.
The above-mentioned technical matters of the utility model mainly is able to solve through following technical proposals:
The real-time online check and analysis appearance of poisonous particle in a kind of flue gas; It is characterized in that, comprise the sample collecting mechanism that is used to gather air pollutants, receive the air pollutants that sample collecting mechanism gathered and utilize optical principle that it is analyzed the back and converts light signal into the optical analysis measuring mechanism of electric signal and the analytic system that the electrical signal conversion of optical analysis measuring mechanism output is analyzed after for digital signal.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, described sample collecting mechanism comprises the sample collecting chamber, be arranged on sample collecting apparatus in the sample collecting chamber, be provided with in the sample collecting chamber and air intake opening is located at the air extractor that is arranged on the draft tube of sample collecting apparatus top and is arranged on below, sample collecting chamber and is communicated with the sample collecting chamber with the atmosphere gas outlet outside the sample collecting chamber.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, described air extractor comprise a vacuum pump that is communicated with above-mentioned sample collecting chamber through snorkel, also are provided with flow valve on the said snorkel.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas; Described sample collecting apparatus comprises travelling belt and evenly is arranged on the filter membrane on the travelling belt that said travelling belt two ends are wrapped in respectively on the power wheel through the stepper motor driven rotary.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas; Said optical analysis measuring mechanism comprises the sample analysis chamber that communicates with above-mentioned sample collecting chamber; Above-mentioned travelling belt one end is arranged in the sample collecting chamber, and the other end is delivered in the sample analysis chamber by stepper motor; Said travelling belt other end top is provided with the condenser lens in order to optically focused, and the below is provided with in order to measure the stadimeter of said condenser lens and belt position; Said condenser lens top is provided with the laser instrument in order to the emitting detection light source; Said laser instrument is provided with on the filter membrane of travelling belt after through condenser lens source of parallel light being incident upon focusing; Also be provided with hollow catoptron between said condenser lens and the laser instrument in order to receive the filter membrane reflected light and this reflected light is launched; This optical analysis measuring mechanism comprises also and is arranged on other receipts photosystem and the beam splitting system in order to receive the radiative of hollow catoptron and to connect successively of hollow catoptron that said beam splitting system exit end is provided with photodetector.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, said optical analysis measuring mechanism comprise that also one links to each other with above-mentioned laser instrument in order to the pulse producer of control laser instrument transmission frequency.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, said analytic system comprise that one links to each other with above-mentioned photodetector and is arranged on the A/D converter in the sample analysis chamber and is arranged on the control analysis device outside the sample analysis chamber.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, described condenser lens links to each other with a condenser lens stepper motor through gear train, in order to the vertical movement up and down of control condenser lens.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, said stadimeter, stepper motor, A/D converter and condenser lens stepper motor all link to each other with above-mentioned control analysis device.
The real-time online check and analysis appearance of poisonous particle in above-mentioned a kind of flue gas, said receipts photosystem comprises the convex lens of at least two coaxial settings.
Therefore, the utlity model has following advantage: 1, to filter membrane, can reduce detectability greatly through earlier poisonous particle being carried out enrichment; 2, can detect pollutant and concentration thereof such as iron in the flue gas, copper, aluminium, lead, cadmium, mercury, arsenic simultaneously; 3, make the position of condenser lens and filter membrane keep the constant focal length that equals condenser lens through range finding and feedback system, improved greatly because the focal position changes the fluctuation that causes; 4, simple in structure, easy to operate, be fit to real time on-line monitoring to poisonous particle in the flue gas.
Description of drawings
Fig. 1 is the structural representation of the utility model.
Fig. 2 is with the curve map of Cd element 226.5 nanofeature spectral lines " spectral intensity-concentration " in the detected flue gas of the utility model.
Embodiment
Pass through embodiment below, and combine accompanying drawing, do further bright specifically the technical scheme of the utility model.Among the figure, draft tube 1, sample collecting chamber 2, constricting nozzle 3, flow valve 4, vacuum pump 5, filter membrane 6, power wheel 7, stepper motor 8, stadimeter 9, condenser lens 10, condenser lens stepper motor 11, mesopore catoptron 12, receipts photosystem 13, beam splitting system 14, photodetector 15, laser instrument 16, pulse producer 17, A/D converter 18, control analysis device 19, sample analysis chamber 20.
Embodiment:
The real-time online check and analysis appearance of poisonous particle in a kind of flue gas comprises the sample collecting mechanism that is used to gather air pollutants, receives the air pollutants that sample collecting mechanism gathered and utilizes optical principle that it is analyzed the back and converts light signal into the optical analysis measuring mechanism of electric signal and the analytic system that the electrical signal conversion of optical analysis measuring mechanism output is analyzed after for digital signal.
Sample collecting mechanism comprises sample collecting chamber 2, be arranged on sample collecting apparatus in the sample collecting chamber 2, be provided with in the sample collecting chamber 2 and air intake opening be located at sample collecting chamber 2 outer with draft tube 1 above the atmosphere gas outlet is arranged on sample collecting apparatus and the air extractor that is arranged on 2 belows, sample collecting chamber and is communicated with sample collecting chamber 2; The gas outlet end of described draft tube 1 also is provided with constricting nozzle 3, in order to measure the air knife that constituent content in the different-grain diameter particle can connect different size in the porch of draft tube; Sample collecting apparatus comprises travelling belt and evenly is arranged on the filter membrane 6 on the travelling belt that said travelling belt two ends are wrapped in respectively on the power wheel 7 through stepper motor 8 driven rotary; Air extractor comprises a vacuum pump 5 that is communicated with above-mentioned sample collecting chamber 2 through snorkel, also is provided with flow valve 4 on the said snorkel.Here, the nozzle of constricting nozzle 3 is in filter membrane 6 top 1-3 millimeters, and diameter is 1mm, with the snorkel air intake opening that links to each other of vacuum pump 5 be in constricting nozzle 3 under 10-25 millimeter place.The glass plate that passes through in sample analysis chamber 20 is divided into two parts up and down with it.
The optical analysis measuring mechanism comprises the sample analysis chamber 20 that communicates with above-mentioned sample collecting chamber 2, and above-mentioned travelling belt one end is arranged in the sample collecting chamber 2, and the other end is delivered in the sample analysis chamber 20 by stepper motor; Said travelling belt other end top is provided with the condenser lens 10 in order to optically focused, and the below is provided with in order to measure the stadimeter 9 of said condenser lens 10 and belt position; Condenser lens 10 links to each other with a condenser lens stepper motor 11 through gear train, in order to the vertical movement up and down of control condenser lens 10; Said condenser lens 10 tops are provided with the laser instrument 16 in order to the emitting detection light source; Here, laser instrument 16 adopts the Nd:YAG laser instrument, and output wavelength is 1064 nanometers, and range of laser energy is that 100~500 millis are burnt.Said laser instrument is provided with on the filter membrane 6 of travelling belt after through condenser lens 10 source of parallel light being incident upon focusing; Also be provided with hollow catoptron 12 between said condenser lens 10 and the laser instrument 16 in order to receive filter membrane 6 reflected light and this reflected light is launched; This optical analysis measuring mechanism also comprises and is arranged on the other receipts photosystems 13 and beam splitting systems 14 in order to receive the radiative of hollow catoptron 12 and to connect successively of hollow catoptron 12; Said beam splitting system 14 exit ends are provided with photodetector 15; Receive the convex lens that photosystem 13 comprises at least two coaxial settings, the optical analysis measuring mechanism comprises that also one links to each other in order to control the pulse producer 17 of laser instrument 16 transmission frequencies with above-mentioned laser instrument 16.
Analytic system comprise one in the sample analysis chamber 20 that links to each other with above-mentioned photodetector 15 and be arranged on A/D converter 18 and be arranged on the outer control analysis device 19 in sample analysis chamber 20.
The job step of this analysis appearance under the following mask body introduction:
A, the laser breakdown spectrum real-time online check and analysis appearance of poisonous particle in the flue gas is placed near the flue gas that needs to detect, opens the vacuum pump 5 of bleeding and regulate flow valves 4, make the flow control of bleeding, bled 1 minute at 1L/s;
B, at this moment; Stepper motor 8 is started working and the sample on the filter membrane 6 is moved on to the along of condenser lens 10; Stadimeter 9 is measured the distance of condenser lens 10 and filter membrane 6, feeds back to control analysis device 19 then, is made the constant all the time focal length that equals condenser lens 10 of distance of condenser lens 10 and filter membrane 6 by control analysis device 19 control step motors 11; Pulse producer 17 is given 16 1 pulse signals of Nd:YAG laser instrument then; Nd:YAG laser instrument 16 trigger end outside receives that a pulse signal just sends a pulse laser, and pulse line focus lens 10 focus on the filter membrane 6;
C, after high energy laser beam that the poisonous particle on the filter membrane 6 is focused punctures; Can form plasma; Various materials in the flue gas will be excited to high-energy state, and before next pulse laser arrives, the various materials of high-energy state will be got back to ground state; In this process, various materials can give off characteristic spectrum separately;
D, plasma send characteristic spectrum can be in flue gas condenser lens 10 collimations of the laser breakdown spectrum real-time online check and analysis appearance of poisonous particle, through 12 reflections of mesopore catoptron, get into and receive photosystem 13 then, directly get into beam splitting system 14 and carry out beam split;
Table 1 is the accuracy of detection and the error of the direct examination criteria sample of existing LIBS technology.
Table 1
Table 2 is the accuracy of detection and the error of the laser breakdown spectrum real-time online check and analysis appearance examination criteria sample of poisonous particle in the flue gas.
Table 2
Specific embodiment described herein only is that the utility model spirit is illustrated.The utility model person of ordinary skill in the field can make various modifications or replenishes or adopt similar mode to substitute described specific embodiment, but can't depart from the spirit of the utility model or surmount the defined scope of appended claims.
Although this paper has used draft tube 1, sample collecting chamber 2, constricting nozzle 3, flow valve 4, vacuum pump 5, filter membrane 6, power wheel 7, stepper motor 8, stadimeter 9, condenser lens 10, condenser lens stepper motor 11, mesopore catoptron 12, received terms such as photosystem 13, beam splitting system 14, photodetector 15, laser instrument 16, pulse producer 17, A/D converter 18, control analysis device 19, sample analysis chamber 20 morely, do not get rid of the possibility of using other term.Using these terms only is in order to describe and explain the essence of the utility model more easily; It all is contrary with the utility model spirit being construed to any additional restriction to them.
Claims (10)
1. the real-time online check and analysis appearance of poisonous particle in the flue gas; It is characterized in that, comprise the sample collecting mechanism that is used to gather air pollutants, receive the air pollutants that sample collecting mechanism gathered and utilize optical principle that it is analyzed the back and converts light signal into the optical analysis measuring mechanism of electric signal and the analytic system that the electrical signal conversion of optical analysis measuring mechanism output is analyzed after for digital signal.
2. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 1; It is characterized in that described sample collecting mechanism comprises sample collecting chamber (2), be arranged on sample collecting apparatus in the sample collecting chamber (2), be provided with in the sample collecting chamber (2) and air intake opening is located at that sample collecting chamber (2) is outer to be arranged on the draft tube (1) of sample collecting apparatus top with the atmosphere gas outlet and to be arranged on below the sample collecting chamber (2) and the air extractor that is communicated with sample collecting chamber (2).
3. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 2; It is characterized in that; Described air extractor comprises a vacuum pump (5) that is communicated with above-mentioned sample collecting chamber (2) through snorkel, also is provided with flow valve (4) on the said snorkel.
4. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 2; It is characterized in that; Described sample collecting apparatus comprises travelling belt and evenly is arranged on the filter membrane (6) on the travelling belt that said travelling belt two ends are wrapped in respectively on the power wheel (7) through stepper motor (8) driven rotary.
5. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 2; It is characterized in that; Said optical analysis measuring mechanism comprises the sample analysis chamber (20) that communicates with above-mentioned sample collecting chamber (2); Above-mentioned travelling belt one end is arranged in the sample collecting chamber (2), and the other end is delivered in the sample analysis chamber (20) by stepper motor; Said travelling belt other end top is provided with the condenser lens (10) in order to optically focused, and the below is provided with in order to measure the stadimeter (9) of said condenser lens (10) and belt position; Said condenser lens (10) top is provided with the laser instrument (16) in order to the emitting detection light source; Said laser instrument is provided with on the filter membrane (6) of travelling belt after through condenser lens (10) source of parallel light being incident upon focusing; Also be provided with hollow catoptron (12) between said condenser lens (10) and the laser instrument (16) in order to receive filter membrane (6) reflected light and this reflected light is launched; This optical analysis measuring mechanism comprises also and is arranged on other receipts photosystem (13) and the beam splitting system (14) in order to receive the radiative of hollow catoptron (12) and to connect successively of hollow catoptron (12) that said beam splitting system (14) exit end is provided with photodetector (15).
6. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 5; It is characterized in that said optical analysis measuring mechanism comprises that also one links to each other with above-mentioned laser instrument (16) in order to the pulse producer (17) of control laser instrument (16) transmission frequency.
7. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 6; It is characterized in that, said analytic system comprise one in the sample analysis chamber (20) that links to each other with above-mentioned photodetector (15) and be arranged on A/D converter (18) and be arranged on the outer control analysis device (19) in sample analysis chamber (20).
8. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 5; It is characterized in that; Described condenser lens (10) links to each other with a condenser lens stepper motor (11) through gear train, in order to the vertical movement up and down of control condenser lens (10).
9. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 7; It is characterized in that said stadimeter (9), stepper motor (8), A/D converter (18) and condenser lens stepper motor (22) all link to each other with above-mentioned control analysis device (29).
10. the real-time online check and analysis appearance of poisonous particle in a kind of flue gas according to claim 7; It is characterized in that; Said receipts photosystem (13) comprises the convex lens of at least two coaxial settings, and the gas outlet end of described draft tube (1) also is provided with constricting nozzle (3).
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Cited By (8)
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CN102866091A (en) * | 2012-07-19 | 2013-01-09 | 武汉市天虹仪表有限责任公司 | Particulate matter differential concentration measuring system based on beta ray method |
CN102928322A (en) * | 2012-11-02 | 2013-02-13 | 杭州富铭环境科技有限公司 | Method and system for on-line monitoring of atmospheric pollutants |
CN103499520A (en) * | 2013-10-12 | 2014-01-08 | 杭州富铭环境科技有限公司 | Method and system for online monitoring smoke particulate matters |
CN104020090A (en) * | 2014-06-06 | 2014-09-03 | 北京中晟泰科环境科技发展有限责任公司 | Double-ring-groove driving component and particulate monitoring instrument with same |
CN104122236A (en) * | 2014-07-28 | 2014-10-29 | 张蕾 | Automatic prompting-warning method and system for harm variables of traffic environment of tunnel |
CN105223187A (en) * | 2015-10-16 | 2016-01-06 | 中国计量学院 | A kind of device based on heavy metal element in LIBS measurement gas |
CN111766587A (en) * | 2020-06-11 | 2020-10-13 | 苏州玖物互通智能科技有限公司 | Multi-line laser radar optical system |
CN113188967A (en) * | 2021-04-15 | 2021-07-30 | 镇江新宇固体废物处置有限公司 | Particulate matter on-line monitoring system based on laser analyzer |
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2011
- 2011-10-24 CN CN2011204072299U patent/CN202256158U/en not_active Expired - Lifetime
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
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CN102866091A (en) * | 2012-07-19 | 2013-01-09 | 武汉市天虹仪表有限责任公司 | Particulate matter differential concentration measuring system based on beta ray method |
CN102928322A (en) * | 2012-11-02 | 2013-02-13 | 杭州富铭环境科技有限公司 | Method and system for on-line monitoring of atmospheric pollutants |
CN103499520A (en) * | 2013-10-12 | 2014-01-08 | 杭州富铭环境科技有限公司 | Method and system for online monitoring smoke particulate matters |
CN104020090A (en) * | 2014-06-06 | 2014-09-03 | 北京中晟泰科环境科技发展有限责任公司 | Double-ring-groove driving component and particulate monitoring instrument with same |
CN104020090B (en) * | 2014-06-06 | 2016-04-13 | 北京中晟泰科环境科技发展有限责任公司 | Dicyclo groove driven unit and there is its particle monitoring instrument |
CN104122236A (en) * | 2014-07-28 | 2014-10-29 | 张蕾 | Automatic prompting-warning method and system for harm variables of traffic environment of tunnel |
CN105223187A (en) * | 2015-10-16 | 2016-01-06 | 中国计量学院 | A kind of device based on heavy metal element in LIBS measurement gas |
CN111766587A (en) * | 2020-06-11 | 2020-10-13 | 苏州玖物互通智能科技有限公司 | Multi-line laser radar optical system |
CN113188967A (en) * | 2021-04-15 | 2021-07-30 | 镇江新宇固体废物处置有限公司 | Particulate matter on-line monitoring system based on laser analyzer |
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