Review of sensors for air quality monitoring
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Barbiere Maurizio | Lagler Friedrich | Borowiak Annette | Kotsev Alexander | Karagulian Federico | Gerboles Michel | Gerboles Michel | Kotsev Alexander | Karagulian Federico | B. Annette | Lagler Friedrich | Barbiere Maurizio
[1] Chun Lin,et al. Personal exposure monitoring of PM2.5 in indoor and outdoor microenvironments. , 2015, The Science of the total environment.
[2] Gerboles Michel,et al. Evaluation of Metal Oxides Sensors for the Monitoring of O3 in Ambient Air at Ppb Level , 2016 .
[3] Li Sun,et al. Impact Analysis of Temperature and Humidity Conditions on Electrochemical Sensor Response in Ambient Air Quality Monitoring , 2018, Sensors.
[4] Olalekan Popoola,et al. Development of a baseline-temperature correction methodology for electrochemical sensors and its implications for long-term stability , 2016 .
[5] Bin Ouyang,et al. Developing a Relative Humidity Correction for Low-Cost Sensors Measuring Ambient Particulate Matter , 2018, Sensors.
[6] Gb Stewart,et al. The use of electrochemical sensors for monitoring urban air quality in low-cost, high-density networks , 2013 .
[7] Anna Pederzoli,et al. Performance criteria to evaluate air quality modeling applications , 2012 .
[8] Ali Marjovi,et al. Extending Urban Air Quality Maps Beyond the Coverage of a Mobile Sensor Network: Data Sources, Methods, and Performance Evaluation , 2017, EWSN.
[9] Chun Lin,et al. Evaluation and calibration of Aeroqual Series 500 portable gas sensors for accurate measurement of ambient ozone and nitrogen dioxide , 2015 .
[10] E. Seto,et al. Correction: Laboratory Evaluation of the Shinyei PPD42NS Low-Cost Particulate Matter Sensor , 2015, PloS one.
[11] Laura Hallett,et al. Evaluation of the Alphasense optical particle counter (OPC-N2) and the Grimm portable aerosol spectrometer (PAS-1.108) , 2016, Aerosol science and technology : the journal of the American Association for Aerosol Research.
[12] Joshua Rickard,et al. Long-term evaluation of air sensor technology under ambient conditions in Denver, Colorado , 2018, Atmospheric measurement techniques.
[13] S. Laurent,et al. Report of the laboratory and in-situ validation of micro-sensors for monitoring ambient air pollution - O12: CairClipO3/NO2 of CAIRPOL (F) , 2013 .
[14] Michael Johnson,et al. Small, Smart, Fast, and Cheap: Microchip-Based Sensors to Estimate Air Pollution Exposures in Rural Households , 2017, Sensors.
[15] Juyoung Yoon,et al. Recent Progress on the Development of Chemosensors for Gases. , 2015, Chemical reviews.
[16] Francesca Borghi,et al. Precision and Accuracy of a Direct-Reading Miniaturized Monitor in PM2.5 Exposure Assessment , 2018, Sensors.
[17] Gustavo Olivares,et al. The Outdoor Dust Information Node (ODIN) – development and performance assessment of a low cost ambient dust sensor , 2015 .
[18] Jonas Meyer,et al. Design of an ozone and nitrogen dioxide sensor unit and its long-term operation within a sensor network in the city of Zurich , 2017 .
[19] P. Schneider,et al. Performance Assessment of a Low-Cost PM2.5 Sensor for a near Four-Month Period in Oslo, Norway , 2019, Atmosphere.
[20] Li Sun,et al. Development and Evaluation of A Novel and Cost-Effective Approach for Low-Cost NO2 Sensor Drift Correction , 2017, Sensors.
[21] Michael L. Wheeler,et al. Performance Evaluation and Community Application of Low-Cost Sensors for Ozone and Nitrogen Dioxide , 2016, Sensors.
[22] Anondo Mukherjee,et al. Assessing the Utility of Low-Cost Particulate Matter Sensors over a 12-Week Period in the Cuyama Valley of California , 2017, Sensors.
[23] L. Shang,et al. The next generation of low-cost personal air quality sensors for quantitative exposure monitoring , 2014 .
[24] Geb Thomas,et al. Inter-comparison of low-cost sensors for measuring the mass concentration of occupational aerosols , 2016, Aerosol science and technology : the journal of the American Association for Aerosol Research.
[25] Piotr Batog,et al. Optical particulate matter sensors in PM2.5 measurements in atmospheric air , 2018 .
[26] E. Snyder,et al. The changing paradigm of air pollution monitoring. , 2013, Environmental science & technology.
[27] L. Morawska,et al. The rise of low-cost sensing for managing air pollution in cities. , 2015, Environment international.
[28] Alena Bartonova,et al. An evaluation tool kit of air quality micro-sensing units. , 2017, The Science of the total environment.
[29] Constantinos Sioutas,et al. Performance evaluation of the active-flow personal DataRAM PM2.5 mass monitor (Thermo Anderson pDR-1200) designed for continuous personal exposure measurements , 2004 .
[30] K. Kawamura,et al. Ozone and Nitrogen Dioxide in an Urban Atmosphere , 1961 .
[31] Ron Williams. Evaluation of Elm and Speck Sensors , 2015 .
[32] Alena Bartonova,et al. Can commercial low-cost sensor platforms contribute to air quality monitoring and exposure estimates? , 2017, Environment international.
[33] Tracy Allen,et al. A low-cost particle counter as a realtime fine-particle mass monitor. , 2013, Environmental science. Processes & impacts.
[34] Luis Felipe Gonzalez,et al. Towards the Development of a Low Cost Airborne Sensing System to Monitor Dust Particles after Blasting at Open-Pit Mine Sites , 2015, Sensors.
[35] Manuel Aleixandre,et al. Performance evaluation of amperometric sensors for the monitoring of O3 and NO2 in ambient air at ppb level , 2015 .
[36] A. Bartoňová,et al. On the use of small and cheaper sensors and devices for indicative citizen-based monitoring of respirable particulate matter. , 2015, Environmental pollution.
[37] Hao Huang,et al. Development and Application of a Next Generation Air Sensor Network for the Hong Kong Marathon 2015 Air Quality Monitoring , 2016, Sensors.
[38] Randal S. Martin,et al. Ambient and laboratory evaluation of a low-cost particulate matter sensor. , 2017, Environmental pollution.
[39] A. Lewis,et al. Validate personal air-pollution sensors , 2016, Nature.
[40] Michel Gerboles,et al. Evaluation of a portable nephelometer against the Tapered Element Oscillating Microbalance method for monitoring PM(2.5). , 2012, Journal of environmental monitoring : JEM.
[41] Ronak Sutaria,et al. Field evaluation of low-cost particulate matter sensors in high- and low-concentration environments , 2018, Atmospheric Measurement Techniques.
[42] F. Pope,et al. of Birmingham Evaluation of a low-cost optical particle counter (Alphasense OPC-N2) for ambient air monitoring , 2018 .
[43] Manuel Aleixandre,et al. Review of Small Commercial Sensors for Indicative Monitoring of Ambient Gas , 2012 .
[44] Inkyu Han,et al. Feasibility of using low-cost portable particle monitors for measurement of fine and coarse particulate matter in urban ambient air , 2017, Journal of the Air & Waste Management Association.
[45] J. Sunyer,et al. Field comparison of portable and stationary instruments for outdoor urban air exposure assessments , 2015 .
[46] Grazia Ghermandi,et al. Performance of NO, NO2 low cost sensors and three calibration approaches within a real world application , 2018, Atmospheric Measurement Techniques.
[47] E. Seto,et al. A distributed network of low-cost continuous reading sensors to measure spatiotemporal variations of PM2.5 in Xi'an, China. , 2015, Environmental pollution.
[48] P. Hopke,et al. Laboratory assessment of low-cost PM monitors , 2016 .
[49] Matthias Budde,et al. Suitability of the low-cost SDS011 particle sensor for urban PM monitoring , 2018 .
[50] J. Barrett. The Coefficient of Determination—Some Limitations , 1974 .
[52] D. Holstius,et al. Field calibrations of a low-cost aerosol sensor at a regulatory monitoring site in California , 2014 .
[53] S. Laurent,et al. Evaluation of low-cost sensors for air pollution monitoring: Effect of gaseous interfering compounds and meteorological conditions , 2017 .
[54] Michele Penza,et al. Deliberating performance targets workshop: Potential paths for emerging PM2.5 and O3 air sensor progress , 2019, Atmospheric Environment: X.
[55] S. De Vito,et al. Dynamic neural network architectures for on field stochastic calibration of indicative low cost air quality sensing systems , 2016 .
[56] S. G. Santos,et al. GUIDE TO THE DEMONSTRATION OF EQUIVALENCE OF AMBIENT AIR MONITORING METHODS , 2003 .
[57] Rafael Borge,et al. Using statistical methods to carry out in field calibrations of low cost air quality sensors , 2018, Sensors and Actuators B: Chemical.
[58] Andrea R. Ferro,et al. Estimating Hourly Concentrations of PM2.5 across a Metropolitan Area Using Low-Cost Particle Monitors , 2017, Sensors.
[59] Yang Wang,et al. Laboratory Evaluation and Calibration of Three Low-Cost Particle Sensors for Particulate Matter Measurement , 2015 .
[60] D. Worsnop,et al. Supplement of Use of electrochemical sensors for measurement of air pollution: correcting interference response and validating measurements , 2017 .
[61] Yulun Zhou,et al. Development of an in-home, real-time air pollutant sensor platform and implications for community use. , 2019, Environmental pollution.