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PMID: 34273076 Published · aheadofprint English Journal Article

Effects of fuel change to electricity on PM2.5 local levels in the Bus Rapid Transit System of Bogota.

Environmental science and pollution research international ·2021-07-17

Belalcazar-Cerón LC, Dávila P, Rojas A, Guevara-Luna MA, Acevedo H, Rojas N

Abstract

The TransMilenio (TM) is a transport system. Twenty-year-old TM is a fast, highly efficient, and self-sufficient mode of passenger transport. This work aims to evaluate the effects of changing current TM diesel buses by electricity-powered buses (battery, wire-based), on the PM2.5 concentrations at surface level. Emissions calculations considering combustions and resuspension of TM and Non-TM were performed. A CFD model was implemented to estimate current PM2.5 concentrations at the roadside level, and the CFD results were validated using the statistic parameters: MB, RMSE, r, and IOA. Results from the emission calculations indicate that TM buses (30-50%) are one of the main sources of primary PM2.5 in all the considered urban sites in this study. Non-exhaust emissions from most vehicle categories were also identified as an important source of primary PM2.5 (40% of total emissions). The CFD model reproduced closely the trends and levels of PM2.5 concentrations measured at the roadside level in all the locations. Replacing TM diesel vehicles with electric vehicles reduces PM2.5 concentrations between 10 and 30% according to the CFD results obtained. Higher reductions can be achieved if policies are adopted to control other types of vehicles and non-exhaust emissions since they have a contribution of about 60%. Finally, this study shows that the combined use of emission calculations and advanced near-road dispersion models are useful tools to study and manage air quality in large cities.

Keywords
Air quality Electric vehicles Energy source Massive transportation TransMilenio
作者与单位
共 6 位作者,点击展开单位 / ORCID
Belalcazar-Cerón Luis Carlos ORCID
Departamento de Ingeniería Química y Ambiental-Grupo de Investigación de Calidad del Aire (GICA), Universidad Nacional de Colombia; sede Bogota, Carrera 30 # 45-03; Edificio 453, Bogota, Colombia.
Dávila Patricia ORCID
Departamento de Ingeniería Química y Ambiental-Grupo de Investigación de Calidad del Aire (GICA), Universidad Nacional de Colombia; sede Bogota, Carrera 30 # 45-03; Edificio 453, Bogota, Colombia.
Rojas Aura ORCID
Departamento de Ingeniería Química y Ambiental-Grupo de Investigación de Calidad del Aire (GICA), Universidad Nacional de Colombia; sede Bogota, Carrera 30 # 45-03; Edificio 453, Bogota, Colombia.
Guevara-Luna Marco Andrés ORCID
Smart and Simple Engineering, Research Department, Bogota, Colombia. [email protected]. | Conservación, Bioprospección y Desarrollo Sostenible (COBIDES), Universidad Nacional Abierta y a Distancia, Escuela de Ciencias Agrícolas, Pecuarias y del Medio Ambiente (ECAPMA), Bogota, Colombia. [email protected]. | LIVE-Laboratoire Image Ville Environnement, Université de Strasbourg, 3 rue de l'Argonne, F-67000, Strasbourg, France. [email protected].
Acevedo Helmer ORCID
Departamento de Ingeniería Mecánica, Universidad Nacional de Colombia; sede Bogota, Carrera 30 # 45-03; Edificio 453, Bogota, Colombia.
Rojas Néstor ORCID
Departamento de Ingeniería Química y Ambiental-Grupo de Investigación de Calidad del Aire (GICA), Universidad Nacional de Colombia; sede Bogota, Carrera 30 # 45-03; Edificio 453, Bogota, Colombia.
Article Info
Journal
Environmental science and pollution research international
Abbr.
Environ Sci Pollut Res Int
ISSN
1614-7499
Corresponding email
Published
2021-07-17
电子出版
2021-00-17
Language
English
Country/Region
Germany
NLM ID
9441769
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