CN208238849U - Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system - Google Patents

Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system Download PDF

Info

Publication number
CN208238849U
CN208238849U CN201820902371.2U CN201820902371U CN208238849U CN 208238849 U CN208238849 U CN 208238849U CN 201820902371 U CN201820902371 U CN 201820902371U CN 208238849 U CN208238849 U CN 208238849U
Authority
CN
China
Prior art keywords
ozone
particulate matter
analysis
data acquisition
laser radar
Prior art date
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.)
Active
Application number
CN201820902371.2U
Other languages
Chinese (zh)
Inventor
曹开法
汪飞
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.)
Anhui Kechuang Zhongguang Technology Co ltd
Original Assignee
Anhui Technovo Lidar Technology Co ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Anhui Technovo Lidar Technology Co ltd filed Critical Anhui Technovo Lidar Technology Co ltd
Priority to CN201820902371.2U priority Critical patent/CN208238849U/en
Application granted granted Critical
Publication of CN208238849U publication Critical patent/CN208238849U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Other Investigation Or Analysis Of Materials By Electrical Means (AREA)
  • Investigating Or Analysing Materials By Optical Means (AREA)

Abstract

The utility model relates to air monitoring technical fields, in particular mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system, spatial distribution detection and the disposal of pollutants of particulate matter supervision of the scan-type particulate matter laser radar for particulate matter, ozone stereoscopic monitoring laser radar is for the spatial distribution detection of ozone and the secondary source analysis of ozone, the accurate lock of second grade VOCs and foul gas mass spectrograph for the origin analysis and gaseous pollutant of particulate matter and ozone, particle size spectrometer is used for the origin analysis and city particulate matter path partial size Spectral structure of particulate matter, for analyzing particulate matter origin analysis, high-definition camera system is used to carry out the locking of picture evidence to contaminated sites and enterprise.The utility model, data server and data collection and analysis platform software system collect the data of each equipment acquisition, and data carry out the storage of point data according to GPS positioning unit, and carry out real-time exhibition and analysis to the data of acquisition.

Description

Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system
Technical field
The utility model relates to air monitoring technical field, specially mobile Brownish haze and ozone stereoscopic monitoring With pollution traceability system.
Background technique
The situation is tense for China city and Regional Atmospheric Pollution, and especially more ground ozone has become primary pollutant.And as thin The key precursor object of particulate matter (PM2.5) and ozone (O3), the discharge amount of volatile organic matter (VOCs) present surprising quick Growing trend, these substances can further cause the atmospheric environments problem such as gray haze, photochemical fog, and VOCs is more than a certain concentration When, it can make us feeling headache, Nausea and vomiting, limbs fatigue in a short time, can twitch, go into a coma when serious, memory subtracts, also Lung, liver, kidney, brain and nervous system may be injured.
In recent years, atmospheric laser radar has played more and more important in terms of stereoscopic monitoring and Particulate Pollution emission monitoring Effect.But in particulate matter the lesser part of partial size and atmospheric ozone be by gas pollutant (VOCs, NH3 and NOX) secondary generation.The difficult point of the supervision of these pollutions and the always environment protection field of tracing to the source.
Utility model content
The purpose of this utility model is to provide mobile Brownish haze and ozone stereoscopic monitoring and traceability system is polluted, with Solve the problems mentioned above in the background art.
To achieve the above object, the utility model provides the following technical solutions:
Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system, including scan-type particulate matter laser radar, Ozone stereoscopic monitoring laser radar, second grade VOCs and foul gas mass spectrograph, particle size spectrometer, meteorologic parameter detector, High-definition camera system, vehicle-mounted power supply management system, data server and data acquisition and analysis system,
Wherein: spatial distribution detection and the pollution of particulate matter row of the scan-type particulate matter laser radar for particulate matter Supervision is put, and its monitor information is transferred to the data acquisition and analysis system;
Spatial distribution of the ozone stereoscopic monitoring laser radar for ozone detects and the secondary source analysis of ozone, and Its detection information is sent to the data acquisition and analysis system;
The origin analysis and gaseous pollutant of second grade VOCs and foul gas mass spectrograph for particulate matter and ozone Accurate lock, and the information for being parsed and being locked is transferred to data acquisition and analysis system;
The particle size spectrometer is used for the origin analysis and city particulate matter path partial size Spectral structure of particulate matter, is used for Particulate matter origin analysis is analyzed, and the information parsed is sent to data acquisition and analysis system;
Meteorologic parameter detector is sent for meteorologic parameter information collection and by the meteorologic parameter information of acquisition to data acquisition Analysis system;
The high-definition camera system is used to carry out the locking of picture evidence to contaminated sites and enterprise, and the information of locking is passed It is sent to data acquisition and analysis system;
The data server is connect with data acquisition and analysis system bidirectional bus.
Preferably, the high-definition camera system is based on CCD camera.
Preferably, the data acquisition and analysis system includes industrial personal computer and the multi-channel data that connect with its serial communication Collector.
Preferably, the data server is based on RAID disk array.
Preferably, the vehicle-mounted power supply management system is electrically connected at scan-type particulate matter laser radar, ozone solid prison Survey laser radar, second grade VOCs and foul gas mass spectrograph, particle size spectrometer, meteorologic parameter detector, high-definition camera system System, data server and data acquisition and analysis system.
Compared with prior art, the utility model has the beneficial effects that scan-type particulate matter laser radar is to particulate matter Spatial distribution detection and the disposal of pollutants supervision of particulate matter (including fugitive dust, flue dust etc.), ozone stereoscopic monitoring laser radar is to smelly The spatial distribution of oxygen detects and the secondary source analysis of ozone;Second grade VOCs and foul gas mass spectrograph are to particulate matter and ozone The accurate lock of origin analysis and gaseous pollutant;Particle size spectrometer is used for the origin analysis and city particulate matter of particulate matter Path partial size Spectral structure, for analyzing particulate matter origin analysis;High-definition camera system carries out picture card to contaminated sites and enterprise According to locking.Data server and data collection and analysis platform software system collect the data of each equipment acquisition, and data are according to GPS Positioning units carry out the storage of point data, and carry out real-time exhibition and analysis to the data of acquisition.
By integrated scanning formula particulate matter laser radar, ozone stereoscopic monitoring laser radar, ozone laser radar and second grade VOCs and foul gas mass spectrograph realize the Tri-dimension Pollution transmission of monitoring to ozone and particulate matter, pollution source analysis and dirt Dye is traced to the source.
Detailed description of the invention
Fig. 1 is the block diagram of the utility model.
In figure: 1 scan-type particulate matter laser radar, 2 ozone stereoscopic monitoring laser radars, 3 seconds grade VOCs and foul gas Mass spectrograph, 4 particle size spectrometers, 5 meteorologic parameter detectors, 6 high-definition camera systems, 7 vehicle-mounted power supply management systems, 8 data Server, 9 data acquisition and analysis systems.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Referring to Fig. 1, the utility model provides technical solution:
Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system, including vehicle-mounted scan-type particulate matter laser Radar 1, ozone stereoscopic monitoring laser radar 2, second grade VOCs and foul gas mass spectrograph 3, particle size spectrometer 4, meteorological ginseng Number detector 5, high-definition camera system 6, vehicle-mounted power supply management system 7, data server 8 and data acquisition and analysis system 9, institute State the Multichannel data acquisition device that data acquisition and analysis system 9 includes industrial personal computer and connect with its serial communication;Wherein: described Scan-type particulate matter laser radar 1, using MPL-AS scan-type particulate matter laser radar, the spatial distribution for particulate matter is detected And the disposal of pollutants supervision of particulate matter (including fugitive dust, flue dust etc.), the particulate matter that scan-type particulate matter laser radar 1 monitors are dirty Emission information is contaminated, Particulate Pollution emission information is transferred to the Multichannel data acquisition device connecting with its multithreading, it is described smelly Oxygen stereoscopic monitoring laser radar 2, be LGO-01 type atmospheric ozone detecting laser radar, for ozone spatial distribution detection and it is smelly The secondary source analysis of oxygen, and the information of the detection of the spatial distribution of ozone and the secondary source analysis of ozone is sent to and is communicated with The Multichannel data acquisition device of connection;Second grade VOCs and foul gas mass spectrograph 3, using PTR-MS analyzer, for The accurate lock of the origin analysis and gaseous pollutant of grain object and ozone, and by the origin analysis and gaseous state of particulate matter and ozone The accurate lock information of pollutant is acquired by the Multichannel data acquisition device for communicating with connection;The particle size spectrometer 4, Using TSI 3910NanoScan type, for the origin analysis and city particulate matter path partial size Spectral structure of particulate matter, for dividing Particulate matter origin analysis is analysed, analysis particulate matter origin analysis information is transmitted to the Multichannel data acquisition device for communicating with connection; Meteorologic parameter detector 5, using VI type Meterological parameter measurer of PTH-, for meteorologic parameter information collection and by the meteorology of acquisition Parameter information is sent to Multichannel data acquisition device;High-definition camera system 6 described in the high-definition camera system 6 is based on CCD camera, For carrying out the locking of picture evidence to contaminated sites and enterprise, and by the contaminated sites of shooting and enterprise's photo be transferred to together with The Multichannel data acquisition device acquisition of its its communication connection;Multichannel data acquisition device uses SZSC-32S type data collector, SZSC-32S type data collector will be by scan-type particulate matter laser radar 1, ozone stereoscopic monitoring laser radar 2, second grade VOCs And foul gas mass spectrograph 3, particle size spectrometer 4, meteorologic parameter detector 5, the signal that high-definition camera system 6 acquires pass through Amplification, input a/d converter, which are converted to be acquired by industrial personal computer after digital signal, carries out real-time exhibition and analysis;The data service Device 8 is connect with 9 bidirectional bus of data acquisition and analysis system, and the data server 8 is based on RAID disk array;Data server 8 and data acquisition and analysis system 9 (industrial personal computer onboard data collection analysis platform software) collect the data of each equipment acquisition, number The storage of point data is carried out according to according to GPS positioning unit, and real-time exhibition and analysis are carried out to the data of acquisition.
The vehicle-mounted power supply management system 7 is electrically connected at scan-type particulate matter laser radar 1, ozone stereoscopic monitoring laser Radar 2, second grade VOCs and foul gas mass spectrograph 3, particle size spectrometer 4, meteorologic parameter detector 5, high-definition camera system 6, data server 8 and data acquisition and analysis system 9 realize and provide the power supply and safeguard protection of vehicle-mounted instrument.
Wherein, the design of vehicle-mounted power supply management system 7 referring to 2009 volume 4 the 5th May phase electrotechnics journal.
By integrating particulate matter laser radar, that is, scan-type particulate matter laser radar 1, ozone stereoscopic monitoring laser radar 2, Ozone stereoscopic monitoring laser radar 2 and second grade VOCs and foul gas mass spectrograph 3, realize the Tri-dimension Pollution to ozone and particulate matter Transmission of monitoring, pollution source analysis and pollution are traced to the source.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (5)

1. mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system, which is characterized in that including scan-type particulate matter Laser radar (1), ozone stereoscopic monitoring laser radar (2), second grade VOCs and foul gas mass spectrograph (3), particle size spectrum Instrument (4), meteorologic parameter detector (5), high-definition camera system (6), vehicle-mounted power supply management system (7), data server (8) and Data acquisition and analysis system (9),
Wherein: spatial distribution detection and the pollution of particulate matter row of the scan-type particulate matter laser radar (1) for particulate matter Supervision is put, and its monitor information is transferred to the data acquisition and analysis system (9);
Spatial distribution of the ozone stereoscopic monitoring laser radar (2) for ozone detects and the secondary source analysis of ozone, and Its detection information is sent to the data acquisition and analysis system (9);
The essence of the origin analysis and gaseous pollutant of the second grade VOCs and foul gas mass spectrograph (3) for particulate matter and ozone Really locking, and the information for being parsed and being locked is transferred to data acquisition and analysis system (9);
The particle size spectrometer (4) is used for the origin analysis and city particulate matter path partial size Spectral structure of particulate matter, is used for Particulate matter origin analysis is analyzed, and the information parsed is sent to data acquisition and analysis system (9);
Meteorologic parameter detector (5) is sent for meteorologic parameter information collection and by the meteorologic parameter information of acquisition to data acquisition point Analysis system (9);
The high-definition camera system (6) is used to carry out the locking of picture evidence to contaminated sites and enterprise, and the information of locking is passed It is sent to data acquisition and analysis system (9);
The data server (8) connect with data acquisition and analysis system (9) bidirectional bus.
2. movable type Brownish haze according to claim 1 and ozone stereoscopic monitoring and pollution traceability system, feature exist In: the high-definition camera system (6) is based on CCD camera.
3. movable type Brownish haze according to claim 1 and ozone stereoscopic monitoring and pollution traceability system, feature exist In the Multichannel data acquisition device that: the data acquisition and analysis system (9) includes industrial personal computer and is connect with its serial communication.
4. movable type Brownish haze according to claim 1 and ozone stereoscopic monitoring and pollution traceability system, feature exist In: the data server (8) is based on RAID disk array.
5. mobile Brownish haze and ozone stereoscopic monitoring described in any one of -4 trace to the source with pollution and are according to claim 1 System, it is characterised in that: it is vertical that the vehicle-mounted power supply management system (7) is electrically connected at scan-type particulate matter laser radar (1), ozone Body monitors laser radar (2), second grade VOCs and foul gas mass spectrograph (3), particle size spectrometer (4), meteorologic parameter detection Instrument (5), high-definition camera system (6), data server (8) and data acquisition and analysis system (9).
CN201820902371.2U 2018-06-12 2018-06-12 Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system Active CN208238849U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820902371.2U CN208238849U (en) 2018-06-12 2018-06-12 Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820902371.2U CN208238849U (en) 2018-06-12 2018-06-12 Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system

Publications (1)

Publication Number Publication Date
CN208238849U true CN208238849U (en) 2018-12-14

Family

ID=64575602

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820902371.2U Active CN208238849U (en) 2018-06-12 2018-06-12 Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system

Country Status (1)

Country Link
CN (1) CN208238849U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108469278A (en) * 2018-06-12 2018-08-31 安徽科创中光科技有限公司 Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system
CN109633680A (en) * 2019-01-30 2019-04-16 安徽科创中光科技有限公司 Four step closed loop atmosphere pollution traceability systems and method based on laser radar

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108469278A (en) * 2018-06-12 2018-08-31 安徽科创中光科技有限公司 Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system
CN109633680A (en) * 2019-01-30 2019-04-16 安徽科创中光科技有限公司 Four step closed loop atmosphere pollution traceability systems and method based on laser radar

Similar Documents

Publication Publication Date Title
CN108469278A (en) Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system
Wang et al. Spatial and temporal changes of the ozone sensitivity in China based on satellite and ground-based observations
US5719396A (en) Systems and methods for determining compliance of moving vehicles with emission-concentration standards
Shinozuka et al. Modeling the smoky troposphere of the southeast Atlantic: a comparison to ORACLES airborne observations from September of 2016
Ghanem et al. Sensor grids for air pollution monitoring
Nemitz et al. An eddy-covariance system for the measurement of surface/atmosphere exchange fluxes of submicron aerosol chemical species—first application above an urban area
CN103245757A (en) Gas environment emergency detection system
CN208238849U (en) Mobile Brownish haze and ozone stereoscopic monitoring and pollution traceability system
CN203259191U (en) Vehicle-mounted environment emergency monitoring system
Mohr et al. Spatial variation of aerosol chemical composition and organic components identified by positive matrix factorization in the Barcelona region
Petäjä et al. Transportable aerosol characterization trailer with trace gas chemistry: Design, instruments and verification
CN105303778A (en) Dual-mode air peculiar smell monitoring and early warning system based on characteristic pollutants and electron nose
Bousiotis et al. Assessing the sources of particles at an urban background site using both regulatory instruments and low-cost sensors–a comparative study
Tesfaldet et al. The effects of meteorology and biomass burning on urban air quality: The case of Bangkok
Gallo et al. Identifying a regional aerosol baseline in the eastern North Atlantic using collocated measurements and a mathematical algorithm to mask high-submicron-number-concentration aerosol events
Jacob et al. Low-cost air quality monitoring system design and comparative analysis with a conventional method
Boanini et al. Integrated mobile laboratory for air pollution assessment: Literature review and cc-trairer design
Li et al. On the performance parameters of PM2. 5 and PM1 size separators for ambient aerosol monitoring
Nguyen et al. Evaluating the applicability of a low-cost sensor for measuring PM2. 5 concentration in Ho Chi Minh city, Viet Nam
Torres et al. Field inter-comparison of low-cost sensors for monitoring methane emissions from oil and gas production operations
Kumar et al. Detection and long-term quantification of methane emissions from an active landfill
CN205879739U (en) Real -time online haze detects cloud platform
Imami et al. EVALUATION OF ALPHASENSE OPC-N2 SENSOR FOR PM10 MEASUREMENT IN THE NORTH JAKARTA
Joshua et al. Ambient Air Quality Measurements Along High-and Low-Density Traffic Routes in Southwestern Nigeria
Ancelet et al. Hourly variations in particulate matter source contributions in New Zealand's southernmost city

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CP02 Change in the address of a patent holder

Address after: 230088 Building No. 4, 11, Innovation Industrial Park, Hefei High-tech Zone, Anhui Province

Patentee after: Anhui Kechuang Optical Technology Co. Ltd.

Address before: 230088 University Science Park C509, 602 Huangshan Road, Shushan High-tech Zone, Hefei City, Anhui Province

Patentee before: Anhui Kechuang Optical Technology Co. Ltd.

CP02 Change in the address of a patent holder
CP03 Change of name, title or address

Address after: 230000 building D3, phase I, innovation industrial park, No. 800, Wangjiang West Road, high tech Zone, Hefei, China (Anhui) pilot Free Trade Zone, Hefei, Anhui

Patentee after: Anhui Kechuang Zhongguang Technology Co.,Ltd.

Address before: 230088 11th floor, building C4, innovation industrial park, high tech Zone, Hefei City, Anhui Province

Patentee before: ANHUI TECHNOVO LIDAR TECHNOLOGY CO.,LTD.

CP03 Change of name, title or address