Littérature scientifique sur le sujet « Carbon monoxide – Measurement »

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Articles de revues sur le sujet "Carbon monoxide – Measurement"

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Harty, E., K. Haskins, and K. Robinson. "Carbon monoxide poisoning measurement." Emergency Medicine Journal 25, no. 12 (2008): 862. http://dx.doi.org/10.1136/emj.2008.061960.

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Chalmers, A. H. "Simple, sensitive measurement of carbon monoxide in plasma." Clinical Chemistry 37, no. 8 (1991): 1442–45. http://dx.doi.org/10.1093/clinchem/37.8.1442.

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Abstract A simple, sensitive method for estimating carbon monoxide in plasma is described. In this method, the carbon monoxide in plasma is trapped with hemoglobin and subsequently estimated by dithionite reduction. The method has an intra- and interassay precision (CV) of 10.7% and 12.8%, respectively, at a concentration of 1.12 mg of carbon monoxide per liter and has a detection limit of 0.1 mg/L. The reference interval for carbon monoxide in plasma from 17 men and eight women ranged from 0.14 to 0.60 mg/L (mean 0.36 mg/L).
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Widdop, Brian. "Analysis of carbon monoxide." Annals of Clinical Biochemistry: International Journal of Laboratory Medicine 39, no. 4 (2002): 378–91. http://dx.doi.org/10.1258/000456302760042146.

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The degree of exposure to carbon monoxide is most often assessed by measuring the blood carboxyhaemoglobin saturation. This measurement is relevant to investigations of acute accidental or deliberate poisoning and of chronic exposure in a domestic or work place environment. Simple spectrophotometric methods based on differential protein precipitation or dithionite reduction are prone to interference from other haemoglobin pigments and are imprecise for low-level estimations. Automated spectrophotometric devices (CO-oximeters) that estimate simultaneously total haemoglobin, percentage oxyhaemog
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Lee, Kiyoung, and Yukio Yanagisawa. "Sampler for Measurement of Alveolar Carbon Monoxide." Environmental Science & Technology 29, no. 1 (1995): 104–7. http://dx.doi.org/10.1021/es00001a013.

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Hoell, J. M., G. L. Gregory, D. S. McDougal, et al. "An intercomparison of carbon monoxide measurement techniques." Journal of Geophysical Research 90, no. D7 (1985): 12881. http://dx.doi.org/10.1029/jd090id07p12881.

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Hoell, James M., Gerald L. Gregory, David S. McDougal, et al. "Airborne intercomparison of carbon monoxide measurement techniques." Journal of Geophysical Research 92, no. D2 (1987): 2009. http://dx.doi.org/10.1029/jd092id02p02009.

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Abbas, M. M., M. J. Glenn, I. G. Nolt, B. Carli, F. Mencaraglia, and M. Carlotti. "Far-infrared measurement of stratospheric carbon monoxide." Geophysical Research Letters 15, no. 2 (1988): 140–43. http://dx.doi.org/10.1029/gl015i002p00140.

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Halek, F. "Measurement of carbon monoxide in Tehran's atmosphere." Journal of Aerosol Science 26 (September 1995): S399—S400. http://dx.doi.org/10.1016/0021-8502(95)97107-p.

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Coburn, Ronald F. "The measurement of endogenous carbon monoxide production." Journal of Applied Physiology 112, no. 11 (2012): 1949–55. http://dx.doi.org/10.1152/japplphysiol.00174.2012.

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Recent findings that heme oxygenase-1 can be induced by oxidative stress and inflammation in many different cellular systems, and that carbon monoxide (CO) produced as a by-product of this enzyme is a signaling molecule, have generated a major research area with hundreds of studies published over the last few years. The measurement of expired CO concentration has been used in humans as a biomarker of induced heme oxygenase resulting from inflammation or oxidative stress, but a precise method of measuring endogenous CO production that can be easily used to study patients is needed. The present
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Onodera, Makoto, Yasuhisa Fujino, Satoshi Kikuchi, et al. "Utility of the Measurement of Carboxyhemoglobin Level at the Site of Acute Carbon Monoxide Poisoning in Rural Areas." Scientifica 2016 (2016): 1–4. http://dx.doi.org/10.1155/2016/6192369.

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Objective. This study examined the hypothesis that correlations exist between the carbon monoxide exposure time and the carboxyhemoglobin concentration at the site of carbon monoxide poisoning, using a pulse carbon monoxide oximeter in rural areas or the carboxyhemoglobin concentration measured at a given medical institution.Background. In previous studies, no definitive relationships between the arterial blood carboxyhemoglobin level and the severity of carbon monoxide poisoning have been observed.Method. The subjects included patients treated for acute carbon monoxide poisoning in whom a med
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Thèses sur le sujet "Carbon monoxide – Measurement"

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Vasudevan, Shanthi. "Simultaneous Measurement of Oxygen and Carbon Monoxide Saturation using Pulse Oximeters." Digital WPI, 2011. https://digitalcommons.wpi.edu/etd-theses/330.

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The ability of pulse oximeters to measure carboxyhemoglobin (HbCO) in blood or measure accurate values of oxygen saturation (SpO2) in the presence of elevated levels of HbCO is an important advantage because high exposure to carbon monoxide (CO) can be fatal or results in permanent neurological damage. The aim of my research was to develop an algorithm that would measure SpO2 and SpCO simultaneously using a pulse oximeter. Several specific wavelengths at which changes in SpCO and SpO2 can be measured with high sensitivity and specificity were identified. The choice of these wavelengths was exp
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Zhang, Fan. "Measurement of the effective diffusivity of carbon monoxide in commercial catalytic monolith converters." Thesis, University of Bath, 2005. https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.420869.

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Wu, Wai-yin Helen, and 胡慧賢. "A study of carbon monoxide exposure in selected populations in Hong Kong." Thesis, The University of Hong Kong (Pokfulam, Hong Kong), 1994. http://hub.hku.hk/bib/B31252989.

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Sommer, Andrew (Andrew Zhang). "Design and implementation of Carbon Monoxide and Oxygen emissions measurement in swirl-stabilized oxy-fuel combustion." Thesis, Massachusetts Institute of Technology, 2013. http://hdl.handle.net/1721.1/83745.

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Thesis (S.B.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2013.<br>Cataloged from PDF version of thesis.<br>Includes bibliographical references (page 33).<br>Oxy-fuel combustion in natural gas power generation is a technology of growing interest as it provides the most efficient means of carbon capture. Since all the emissions from these power plants are sequestered, there are stringent regulations on the proportions of oxidizable contents in the flue gases. This work investigates natural gas oxy-fuel combustion and represents the first iteration of carbon monoxide
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Kanawade, Vijay Punjaji. "The sensitivity of the measurement of pollution in the troposphere (MOPITT) retrievals of carbon monoxide to the lowermost troposphere." Thesis, University of Leicester, 2010. http://hdl.handle.net/2381/8322.

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In this thesis, the measurements of carbon monoxide (CO) obtained from an nadir sounding Measurement Of Pollution In The troposphere (MOPITT) instrument are used. Atmospheric CO is one of the most abundant and widely distributed air pollutant and is a very important indirect greenhouse gas via its reaction with the OH radical which in turn controls the oxidising capacity of the troposphere. In this thesis, the MOPITT Level 2 Version 3 (L2V3) retrieved CO data is primarily used and compared with recently released (April 2009) Level 2 Version 4 (L2V4) retrieved CO data to examine the potential o
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Jiang, Mei. "Mobile Laboratory Measurement of Black Carbon, Particulate Polycyclic Aromatic Hydrocarbons and Other Exhaust Emissions in Mexico City." Thesis, Virginia Tech, 2005. http://hdl.handle.net/10919/41133.

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Black carbon (BC) and polycyclic aromatic hydrocarbons (PAHs) are two atmospheric pollutants produced by motor vehicles using carbonaceous fuels. As a part of the Mexico City Project, measurements of BC, PPAHs and many other gas- and particle-phase emissions were measured in Mexico City using a mobile laboratory during the Mexico City Metropolitan Area field campaign in April 2003 (MCMA-2003). The main goal of this research is to estimate emissions of BC and particulate PAHs (PPAHs) for Mexico Cityâ s vehicle fleet. The emissions of gas-phase pollutants such as carbon monoxide (CO), total nit
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Brossard, Christophe. "Contribution à l'étude de l'inhibition de la post-combustion : caractérisation aérothermochimique d'une flamme plane basse pression ensemencée en potassium." Rouen, 1995. http://www.theses.fr/1995ROUES054.

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Afin d'étudier le mécanisme d'inhibition de la combustion par le potassium, un brûleur à flamme plane prémélangée basse pression (environ 60 mbar), ensemencée en potassium, a été mis au point. Des calculs de structure de flamme ont montré que l'ajout d'une infime quantité de potasse gazeuse (fraction molaire 10 puissance-3) peut modifier considérablement les profils de température et de concentration des espèces chimiques de flammes H2/CO/CO2/Ar prémélangées. En l'absence d'additif au potassium, le profil de température a été caractérise précisément par une technique optique non-intrusive, la
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Thompson, Bruce Thomas. "Fourier transform infrared spectroscopic measurement of carbon monoxide and nitric oxide in sidestream cigarette smoke in real time using a hollow waveguide gas cell and nonimaging optics." Diss., Available online, Georgia Institute of Technology, 2004:, 2004. http://etd.gatech.edu/theses/available/etd-06232004-172923/unrestricted/thompson%5Fbruce%5Ft%5F200407%5Fphd.pdf.

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Thesis (Ph. D.)--Chemistry and Biochemistry, Georgia Institute of Technology, 2005. Directed by Boris Mizaikoff.<br>Hunt, William, Committee Member ; Weck, Marcus, Committee Member ; Mizaikoff, Boris, Committee Chair ; Janata, Jiri, Committee Member ; Orlando, Thomas, Committee Member. Includes bibliographical references.
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LULIO, LIGIA C. D. "Estudo da eletro-oxidação da mistura Hsub(2)Co utilizando eletrocatalisadores à base de Pt/C e céria dopada com ítria ou rutênio para aplicação em células a combustível de membrana polimérica condutora de prótons." reponame:Repositório Institucional do IPEN, 2012. http://repositorio.ipen.br:8080/xmlui/handle/123456789/10100.

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Made available in DSpace on 2014-10-09T12:34:46Z (GMT). No. of bitstreams: 0<br>Made available in DSpace on 2014-10-09T14:03:29Z (GMT). No. of bitstreams: 0<br>Dissertação (Mestrado)<br>IPEN/D<br>Instituto de Pesquisas Energeticas e Nucleares - IPEN-CNEN/SP
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Grant, Aoife. "Measurements and modelling of tropospheric hydrogen and carbon monoxide." Thesis, University of Bristol, 2010. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.528087.

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Livres sur le sujet "Carbon monoxide – Measurement"

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Chilton, J. E. Hybrid fiber-optic-electrochemical carbon monoxide monitor. U.S. Dept. of the Interior, Bureau of Mines, 1992.

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Chilton, J. E. Hybrid fiber-optic-electrochemical carbon monoxide monitor. U.S. Dept. of the Interior, Bureau of Mines, 1992.

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Chilton, J. E. Hybrid fiber-optic-electrochemical carbon monoxide monitor. U.S. Dept. of the Interior, Bureau of Mines, 1992.

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Control, Massachusetts Division of Air Quality. Massachusetts 1990 base year emission inventories: Volatile organic compounds, nitrogen oxides, carbon monoxide. Massachusetts Dept. of Environmental Protection, Bureau of Waste Prevention, Division of Air Quality Control, 1993.

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Duan, Naihua. Application of the microenvironment monitoring approach to assess human exposure to carbon monoxide. U.S. Environmental Protection Agency, Environmental Monitoring Systems Laboratory, 1985.

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Duan, Naihua. Application of the microenvironment monitoring approach to assess human exposure to carbon monoxide. Rand, 1985.

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Tolli, John D. Identity and dynamics of the microbial community responsible for carbon monoxide oxidation in marine environments. Massachusetts Institute of Technology, 2003.

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Vogt, David. An evaluation of the effect of North Carolina's 1992-93 oxygenated fuel program on ambient carbon monoxide levels in urban areas. N.C. Department of Environment, Health, and Natural Resources, State Center for Health and Environmental Statistics, 1994.

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Vogt, David. An evaluation of the effect of North Carolina's 1992-93 oxygenated fuel program on ambient carbon monoxide levels in urban areas. N.C. Department of Environment, Health, and Natural Resources, State Center for Health and Environmental Statistics, 1994.

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Conti, Ronald S. A comparison of mine fire sensors. U.S. Dept. of the Interior, Bureau of Mines, 1995.

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Chapitres de livres sur le sujet "Carbon monoxide – Measurement"

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Corrêa, F., F. E. Nacul, and Y. Sakr. "Measurement of Carbon Monoxide: From Bench to Bedside." In Intensive Care Medicine. Springer New York, 2009. http://dx.doi.org/10.1007/978-0-387-92278-2_7.

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Corrêa, F., F. E. Nacul, and Y. Sakr. "Measurement of Carbon Monoxide: From Bench to Bedside." In Yearbook of Intensive Care and Emergency Medicine. Springer Berlin Heidelberg, 2009. http://dx.doi.org/10.1007/978-3-540-92276-6_7.

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Venegas, Laura E., and Nicolas A. Mazzeo. "Carbon Monoxide Concentration in a Street Canyon of Buenos Aires City (Argentina)." In Urban Air Quality: Measurement, Modelling and Management. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-010-0932-4_45.

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Strow, L. Larrabee. "The Measurement of Global Carbon Monoxide Using the Atmospheric Infrared Sounder (AIRS)." In High Spectral Resolution Infrared Remote Sensing for Earth’s Weather and Climate Studies. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-642-84599-4_24.

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Ashmore, M. R., K. Batty, F. Machin, et al. "Effects of Traffic Management and Transport Mode on the Exposure of Schoolchildren to Carbon Monoxide." In Urban Air Quality: Measurement, Modelling and Management. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-010-0932-4_6.

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Heilweil, E. J., R. R. Cavanagh, and J. C. Stephenson. "Vibrational Relaxation Measurements of Carbon Monoxide on Metal Clusters." In Ultrafast Phenomena VI. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-642-83644-2_126.

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Rosier, B., P. Gicquel, D. Henry, and D. Coppale. "Carbon Monoxide Concentrations and Temperature Measurements in Combustion Gases." In Monitoring of Gaseous Pollutants by Tunable Diode Lasers. Springer Netherlands, 1989. http://dx.doi.org/10.1007/978-94-009-0989-2_24.

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Koppmann, R., C. Plass-Dülmer, B. Ramacher, et al. "Measurements of Carbon Monoxide and Nonmethane Hydrocarbons During POPCORN." In Atmospheric Measurements during POPCORN — Characterisation of the Photochemistry over a Rural Area. Springer Netherlands, 1998. http://dx.doi.org/10.1007/978-94-017-0813-5_3.

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Podolske, James, Max Leowenstein, and Thomas Blackburn. "High Altitude Aircraft Measurements of Carbon Monoxide Using Tunable Diode Lasers." In Monitoring of Gaseous Pollutants by Tunable Diode Lasers. Springer Netherlands, 1987. http://dx.doi.org/10.1007/978-94-009-3991-2_12.

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Newell, R. E., and Mao-Fou Wu. "Simultaneous Measurements of Carbon Monoxide and Ozone in the NASA Global Atmospheric Sampling Program (GASP)." In Atmospheric Ozone. Springer Netherlands, 1985. http://dx.doi.org/10.1007/978-94-009-5313-0_109.

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Actes de conférences sur le sujet "Carbon monoxide – Measurement"

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Pies, Martin, Radovan Hajovsky, and Stepan Ozana. "Wireless measurement of carbon monoxide concentration." In 2014 14th International Conference on Control, Automation and Systems (ICCAS). IEEE, 2014. http://dx.doi.org/10.1109/iccas.2014.6987843.

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Bourne, Jenna E., Stephanie Bourne, Chelsea L. Jenkins, and Christopher M. Smith. "Infrared measurement and modeling of tropospheric carbon monoxide." In AeroSense 2003, edited by K. Elliott Cramer and Xavier P. Maldague. SPIE, 2003. http://dx.doi.org/10.1117/12.489038.

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Reichle, Jr., Henry G. "Measurement of tropospheric carbon monoxide using gas filter radiometers." In Orlando '91, Orlando, FL, edited by James L. McElroy and Robert J. McNeal. SPIE, 1991. http://dx.doi.org/10.1117/12.46642.

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Baranov, Alexander, Denis Spirjakin, Saba Akbari, Andrey Somov, and Roberto Passerone. "A wireless carbon monoxide sensor node with hybrid power supply." In 2015 IEEE International Instrumentation and Measurement Technology Conference (I2MTC). IEEE, 2015. http://dx.doi.org/10.1109/i2mtc.2015.7151410.

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Guo, Jian-qiang, Xiao-rong Gao, Li Wang, Ze-yong Wang, and Jun-hui Hou. "Influence of the concentration measurement of carbon monoxide with temperature." In Seventh International Symposium on Precision Engineering Measurements and Instrumentation, edited by Kuang-Chao Fan, Man Song, and Rong-Sheng Lu. SPIE, 2011. http://dx.doi.org/10.1117/12.905205.

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Ma Dong, Liu Dianjun, Gong Guohui, and Xu Jian. "Research on self-calibration carbon monoxide sensor for iron mines." In 2015 12th IEEE International Conference on Electronic Measurement & Instruments (ICEMI). IEEE, 2015. http://dx.doi.org/10.1109/icemi.2015.7494415.

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Frederickson, Kraig, J. William Rich, Walter R. Lempert, and Igor V. Adamovich. "Measurement of the Vibrational Distribution Function of Chemically Produced Carbon Monoxide for the Development of a Chemical Carbon Monoxide Laser." In 53rd AIAA Aerospace Sciences Meeting. American Institute of Aeronautics and Astronautics, 2015. http://dx.doi.org/10.2514/6.2015-1830.

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Bicelli, S., A. Flammini, A. Depari, et al. "Low-Power Carbon Monoxide MOX Sensors for Wireless Distributed Sensor Networks." In 2007 IEEE Instrumentation & Measurement Technology Conference IMTC 2007. IEEE, 2007. http://dx.doi.org/10.1109/imtc.2007.379025.

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Wang, Zhaowei, Yanfang Li, Tingting Zhang, Jie Hu, Yubin Wei, and tongyu liu. "Highly sensitive carbon monoxide sensor for coal mine combustion monitoring." In Joint TC1 - TC2 International Symposium on Photonics and Education in Measurement Science 2019, edited by Bernhard Zagar, Pawel Mazurek, Maik Rosenberger, and Paul-Gerald Dittrich. SPIE, 2019. http://dx.doi.org/10.1117/12.2530876.

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Guo, Jian-qiang, Li Wang, Zeyong Wang, and Jinglong Li. "Study of instrument measurement of carbon monoxide concentration by absorption spectrum." In Sixth International Symposium on Precision Engineering Measurements and Instrumentation. SPIE, 2010. http://dx.doi.org/10.1117/12.885712.

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Rapports d'organisations sur le sujet "Carbon monoxide – Measurement"

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Shykoff, B. Measurement of Diffusing Capacity for Carbon Monoxide (D sub LCO). Defense Technical Information Center, 2002. http://dx.doi.org/10.21236/ada407909.

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Komppula, Birgitta, Tomi Karppinen, Henrik Virta, et al. Air quality in Finland according to air quality measurements and satellite observations. Finnish Meteorological Institute, 2021. http://dx.doi.org/10.35614/isbn.9789523361409.

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In this report the current air quality in Finland has been assessed with air quality measurement data and satellite observations. The assessment of ambient air concentrations included following air impurities: NO2, NOx, PM10, PM2,5, SO2, CO, O3, benzo(a)pyrene, benzene, Pb, As, Cd ja Ni. For these pollutants air quality assessment thresholds are given in air quality legislation (2008/50/EY, 2004/107/EY). Assessment has been performed for air quality zones. The main data set included air quality measurements performed in Finland during 2015–2019. Satellite observations were used as an objective
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