RICA 2020
DOI: 10.20937/rica.53521
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Estudio Espacial Del Carbono Elemental Presente en La Fracción Respirable De Las PM2.5 Mediante Espectrometría De Retrodispersión De Rutherford en La Zona Metropolitana Del Valle De Toluca

Abstract: Palabras clave: dispersión coulombiana, método analítico nuclear, iones retrodispersados, masa atómica, colisión elástica, espectro de energía. RESUMENEl carbono origina compuestos que se caracterizan por tener en su estructura átomos enlazados a otros elementos como oxígeno, hidrógeno y nitrógeno. Muchos de ellos son de gran utilidad para los seres vivos; sin embargo, otros como el monóxido y el bióxido de carbono son considerados de alto riesgo para las poblaciones que los inhalan, además de su impacto en el… Show more

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“…Despite its significance, very little research has been conducted regarding emissions and pollution in this region. Previous studies conducted at the TVMA are mainly based on studying particulate matter in the atmosphere, encompassing chemical characterizations of airborne particulate matter (Romero-Guzmán et al, 2018), the concentration of elemental carbon in suspended particles with aerodynamic diameter equal to or less than 2.5 μm (Martínez-Medina et al, 2020) and the level of contamination by heavy metals (Cu, Pb, Zn, Fe, and Mn) in urban dust (Aguilera et al, 2022). Analyses have also been conducted regarding the characterization of atmospheric and surface urban heat islands and their seasonality (Rivera et al, 2017).…”
Section: Introductionmentioning
confidence: 99%
“…Despite its significance, very little research has been conducted regarding emissions and pollution in this region. Previous studies conducted at the TVMA are mainly based on studying particulate matter in the atmosphere, encompassing chemical characterizations of airborne particulate matter (Romero-Guzmán et al, 2018), the concentration of elemental carbon in suspended particles with aerodynamic diameter equal to or less than 2.5 μm (Martínez-Medina et al, 2020) and the level of contamination by heavy metals (Cu, Pb, Zn, Fe, and Mn) in urban dust (Aguilera et al, 2022). Analyses have also been conducted regarding the characterization of atmospheric and surface urban heat islands and their seasonality (Rivera et al, 2017).…”
Section: Introductionmentioning
confidence: 99%