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Título : Spatiotemporal variation of forest cover and its relation to air quality in urban andean socio-ecological systems
Autor: Durango Cordero, Juan
Herrera Machuca, Miguel Ángel
Macedo Pezzopane, José Eduardo
Zalakeviciute, Rasa
Molina, Juan Ramón
Bonilla Bedoya, Santiago Patricio
Correspondencia: Bonilla Bedoya, Santiago Patricio, santiagobonillab@hotmail.es
Palabras clave : Systematic transitions
Spatiotemporal variation
Green infrastructure
Air quality
Urban land cover
Área de conocimiento FRASCATI amplio: 1. Ciencias Naturales y Exactas
Área de conocimiento FRASCATI detallado: 1.5.8 Ciencias del Medioambiente
Área de conocimiento FRASCATI específico: 1.5 Ciencias de la Tierra y el Ambiente
Área de conocimiento UNESCO amplio: 05 - Ciencias Físicas, Ciencias Naturales, Matemáticas y Estadísticas
ÁArea de conocimiento UNESCO detallado: 0521 - Ciencias Ambientales
Área de conocimiento UNESCO específico: 052 - Medio Ambiente
Fecha de publicación : 2021
Fecha de fin de embargo: 31-dic-2050
Volumen: Volumen 59
Fuente: Urban Forestry and Urban Greening
metadata.dc.identifier.doi: 10.1016/j.ufug.2021.127008
Tipo: ARTÍCULO
Abstract: 
Confronting the dynamics of global urbanization is one of the challenges of sustainability in the 21st century. Latin America is expected to be one of the regions with the highest urban growth; however, research related to variations in urban land coverage and air quality is relatively new, despite its importance for urban planning and citizens well-being. This study determines the relationship between the spatial variability of some atmospheric pollutants and changes in land cover in a Andean mountain cities of Latin American. We quantified the changes and transitions of land cover using SPOT optical images and generating an object-based classification. In addition, we identified variations in the mean concentrations of some atmospheric pollutants; and, finally, using various linear regression models, we explained the relationship between the spatiotemporal variation of atmospheric pollutants with the spatiotemporal variations of the land cover and some meteorological and topographical factors. Changes in land cover indicated an increase of impervious cover and a loss of urban non-forest vegetation. However, there was also an increase in forest fragments and urban woodland to the detriment of green areas and shrubbery. On the other hand, the concentrations of the air pollutants CO, O3, and PM2.5 showed significant variations between periods, reducing their concentrations in the air. Finally, land cover such as forests and urban trees, as well as meteorological and topographical factors were associated with and explained (r2 > 0.6) the spatiotemporal variation of air pollutants. Urban green infrastructure management in developing regions should consider a multidisciplinary approach to achieve an equitable and minimum distribution of local green infrastructure; by promoting conditions that allow the conversion of land use and coverage, in order to maximize the benefits and the ecosystemic forest services that a city demands
URI : http://dspace.ucuenca.edu.ec/handle/123456789/38109
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85100647523&doi=10.1016%2fj.ufug.2021.127008&partnerID=40&md5=50a0d9007c4053663e23e6ceb65b1080
URI Fuente: https://www.sciencedirect.com/journal/urban-forestry-and-urban-greening/vol/59/suppl/C
ISSN : 1618-8667
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