Author:
Alexandrino Katiuska,Sánchez Nazly E.,Viteri Fausto
Abstract
AbstractPolycyclic aromatic hydrocarbons (PAHs) are among the most studied organic compounds in urban environments, due to their known threat to human health. This study extends the current knowledge regarding the ability of different vegetative parts of different tree species to accumulate PAHs. Moreover, exposure intensity to PAHs in areas frequented by population susceptible to adverse health effects of air pollution is evaluated. For this, leaves and barks of Sambucus nigra (S. nigra) and Acacia melanoxylon (A. melanoxylon) were collected at urban areas in the Andean city of Quito, at seven points near hospitals and schools. A methodology, previously developed, for the extraction, purification, and quantification of PAHs associated with the leaves and bark of S. nigra was employed and also validated for leaves and bark of A. melanoxylon. The total PAH level varied from 119.65 ng g−1 DW (dry weight) to 1969.98 ng g−1 DW (dry weight) with naphthalene (Naph), fluoranthene (Flt), pyrene (Pyr), chrysene (Chry), and benzo[a]pyrene (BaP) predominating in all samples. The results indicate that the leaves and bark of tree species studied have certain abilities to bio-accumulate PAH according to their molecular weight. The leaves of S. nigra and bark of A. melanoxylon showed the highest ability to accumulate PAHs, mainly those with high and medium molecular weight, respectively. The highest incidence of light molecular weight PAHs was found in the leaves of A. melanoxylon. Furthermore, coal combustion, biomass burning, and vehicle emissions were identified as the main PAHs sources. Concentrations of PAHs associated with tree species suggest an affectation in areas frequented by populations susceptible to air pollution. This fact shows the importance of regulatory scheme to significantly improve the air quality in the city integrating a knowledge-based decision-making.
Funder
Universidad de Las Américas Ecuador
Publisher
Springer Science and Business Media LLC
Reference68 articles.
1. Alexandrino, K., Sánchez, N. E., Zalakeviciute, R., Acuña, W., & Viteri, F. (2022). Polycyclic Aromatic Hydrocarbons in Araucaria heterophylla Needles in Urban Areas: Evaluation of Sources and Road Characteristics. Plants, 11, 1948. https://doi.org/10.3390/plants11151948
2. Alfani, A., Maisto, G., Prati, M. V., & Baldantoni, D. (2001). Leaves of Quercus ilex L. as biomonitors of PAHs in the air of Naples (Italy). Atmospheric Environment, 35, 3553–3559. https://doi.org/10.1016/S1352-2310(01)00087-5
3. Amigo, J. M., Ratola, N., & Alves, A. (2011). Study of geographical trends of polycyclic aromatic hydrocarbons using pine needles. Atmospheric Environment, 45, 5988–5996. https://doi.org/10.1016/j.atmosenv.2011.07.058
4. Amini, E., Nasrollahi, F., Sattarian, A., Isazadeh-Araei, M., & Habibi, M. (2021). Morphological and anatomical study of the genus Sambucus L. (Adoxaceae) in Iran. Modern Phytomorphology, 15, 14–20.
5. Armijos, C., Tapia, W., & Alexandrino, K. (2022). Assessment of airborne metal pollution in urban parks and industrial areas using Callistemon citrinus and Acacia melanoxylon. Applied Geochemistry, 139, 105263. https://doi.org/10.1016/j.apgeochem.2022.105263
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