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    Academic Journal

    وصف الملف: 17 páginas; application/pdf

    Relation: 531; 515; 37; Atmósfera; Airviro. 2022a. Available at: https://www.airviro.com/ airviro/ (accessed on November 25, 2022).; Airviro. 2022b. Working with the dispersion module. Airviro user’s reference 2: 102-105. Available at: https://www.airviro.com/airviro/extras/pdffiles/UserRef_ Volume2_Dispersion_v5.00.pdf. (accessed on November 25: 2022).; Allen T. 2013. De-construction of the Shinyei PPD42NS dust sensor. EME Systems LLC. Available at: https://files.seeedstudio.com/wiki/Grove_Dust_Sensor/ resource/ShinyeiPPD42NS_Deconstruction_TracyAllen. pdf (accessed on November 25, 2022).; Berkowicz R, Prahm LP. 1982. Evaluation of the profile method for estimation of surface fluxes of momentum and heat. Atmospheric Environment 16: 28092819. https://doi.org/10.1016/0004-6981(82)90032-4; Danard M. 1977. A simple model for mesoscale effects of topography on surface winds. Monthly Weather Review 105: 572-581. https://doi.org/10.1175/1520 -0493(1977)105%3C0572:ASMFME%3E2.0.CO;2; Diez S, Lacy SE, Bannan TJ, Flynn M, Gardiner T, Harrison D, Marsden N, Martin NA, Read K, Edwards PM. 2022. Air pollution measurement errors: Is your data fit for purpose? Atmospheric Measurement Techniques 15:4091-4105. https://doi.org/10.5194/ amt-15-4091-2022; Fajersztajn L, Saldiva P, Pereira LA, Figueiredo-Leite V, Buehler AM. 2017. Short-term effects of fine particulate matter pollution on daily health events in Latin America: A systematic review and meta-analysis. International Journal of Public Health 62: 729-738. https://doi.org/10.1007/s00038-017-0960-y; Giordano MR, Malings C, Pandis SN, Presto AA, McNeill VF, Westervelt DM, Beekmann M, Subramanian R. 2021. From low-cost sensors to high-quality data: A summary of challenges and best practices for effectively calibrating low-cost particulate matter mass sensors. Journal of Aerosol Science 158: 105833. https://doi. org/10.1016/j.jaerosci.2021.105833; Hincapié-Aristizabel R, Delvasto-Arjona S, Contreras- Rengifo R. 2017. Los hornos de colmena de Vijes, Valle del Cauca, un patrimonio material e inmaterial que es preciso recuperar y preservar. Pontificia Universidad Javeriana – Apuntes. Revista de Estudios sobre Patrimonio Cultural 28: 24-43. Available at: https:// repository.javeriana.edu.co/handle/10554/23196?locale- attribute=de; IDEAM. 2016. Informe del estado de la calidad del aire en Colombia 2011-2015. Instituto de Hidrología, Meteorología y Estudios Ambientales, Bogotá, 179 pp. Available at: http://www.ideam.gov.co/web/contaminacion- y-calidad-ambiental/informes-del-estado-dela- calidad-del-aire-en-colombia; Jayaratne R, Liu X, Ahn KH, Asumadu-Sakyi A, Fisher G, Gao J, Mabon A, Mazaheri M, Mullins B, Nyaku M, Ristovski Z, Scorgie Y, Thai P, Dunbabin M, Morawska L. 2020. Low-cost PM2.5 sensors: An assessment of their suitability for various applications. Aerosol and Air Quality Research 20: 520-532. https://doi. org/10.4209/aaqr.2018.10.0390; Johansson C, Olivares G, Gidhagen L. 2007. Characterization and source apportionment of particulate matter in two urban areas in Chile. Institutionen för Tillämpad Miljövetenskap, Stockholms Universitet, ITM-Report 169, 48 pp. Available at: https://www.slbanalys.se/ slb/rapporter/pdf8/itm2007_169.pdf (accessed on November 25, 2022).; Liang L, Daniels J. 2022. What influences low-cost sensor data calibration? A systematic assessment of algorithms, duration, and predictor selection. Aerosol and Air Quality Research 22: 1-16. https://doi.org/10.4209/ aaqr.220076; López M, Howell WE. 1967. Katabatic winds in the Equatorial Andes. Journal of the Atmospheric Sciences 24: 29-35. https://doi.org/10.1175/1520-0469(1967)024% 3C0029:KWITEA%3E2.0.CO;2; Mateus-Fontecha L, Vargas-Burbano A, Jimenez R, Rojas NY, Rueda-Saa G, van Pinxteren D, van Pinxteren M, Fomba KW, Herrmann H. 2022. Understanding aerosol composition in a tropical inter-Andean valley impacted by agro-industrial and urban emissions. Atmospheric Chemistry and Physics 22: 8473-8495. https://doi. org/10.5194/acp-22-8473-2022; Morawska L, Thai PK, Liu X, Asumadu-Sakui A, Ayoko G, Bartonova A, Bedini A, Chai F, Christensen B, Dunbabin M, Gao J, Hagler GSW, Jayaratne R, Kumar P, Lau AKH, Louie PKK, Mazaheri M, Ning Z, Motta N, Mullins B, Rahman MM, Ristovski Z, Shafiel M, Tjondronegoro D, Westerdahl D, Williams R. 2018. Applications of low-cost sensing technologies for air quality monitoring and exposure assessment: How far have they gone? Environment International 116: 286-299. https://doi.org/10.1016/j. envint.2018.04.018; Nivia-Guevara A. 2001. Memoria explicativa del mapa geológico del departamento del Valle del Cauca. Escala 1.250.000. Ministerio de Minas y Energía, Instituto de Investigación e Información Geocientífica Minero- Ambiental y Nuclear, Bogotá, 148 pp. Available at: https://www.researchgate.net/publication/275971711_ Mapa_Geologico_Departamento_del_Valle_del_Cauca_ Escala_1250000_Memoria_Explicativa_2001 (accessed on November 25, 2022).; Rodríguez-Camargo LA, Sierra-Parada RS, Blanco-Becerra LC. 2020. Análisis espacial de las concentraciones de PM2.5 en Bogotá según los valores de las guías de la calidad del aire de la Organización Mundial de la Salud para enfermedades cardiopulmonares, 2014- 2015. Biomédica 40: 137-52. https://doi.org/10.7705/ biomedica.4719; Rodríguez-Villamizar LA, Rojas-Roa NY, Blanco-Becerra LC, Herrera-Galindo VM, Fernández-Niño JA. 2018. Short-Term effects of air pollution on respiratory and circulatory morbidity in Colombia 2011-2014: A multi-city, time-series analysis. International Journal of Environmental Research and Public Health 15: 1610. https://doi.org/10.3390/ijerph15081610; US-EPA. 1998. Mineral products industry: Lime manufacturing. In: Compilation of air pollutant emissions factors (AP-42). Vol. 1: Stationary point and area sources. 5th ed. United States Environmental Protection Agency, North Caroline, USA. Available at: https://www3. epa.gov/ttnchie1/ap42/ch11/final/c11s17.pdf (accessed on November 25, 2022).; WHO. 2021. WHO global air quality guidelines: Particulate matter (PM2.5 and PM10), ozone, nitrogen dioxide, sulfur dioxide and carbon monoxide. World Health Organization. Available at: https://apps.who. int/iris/handle/10665/345329 (accessed on November 25, 2022).; WMO. 2021. An update of low-cost sensors for the measurement of atmospheric composition (Peltier R E, Ed.). WMO-No. 1215. World Meteorological Organization, Geneva. Available at: https://library.wmo. int/doc_num.php?explnum_id=10620 (accessed on November 25, 2022).; Contreras Rengifo, Rafael, et. al. (2023). Urban PM2.5 concentrations in a small Colombian city and the impact associated with particle emissions generated by small-scale lime production. Atmósfera. volumen 37, junio. p.p. 515-531. DOI: https://doi.org/10.20937/ATM.53212; https://hdl.handle.net/10614/15815; Universidad Autónoma de Occidente; Respositorio Educativo Digital UAO; https://red.uao.edu.co/

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    المصدر: Congreso Colombiano y Conferencia Internacional de Calidad del Aire y Salud Pública CASAP; Congreso Colombiano y Conferencia Internacional de Calidad del Aire y Salud Pública

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    المؤلفون: Jose Joaquin Vivas Moreno

    المصدر: Congreso Colombiano y Conferencia Internacional de Calidad del Aire y Salud Pública CASAP; Congreso Colombiano y Conferencia Internacional de Calidad del Aire y Salud Pública