Alexandrino, K., Viteri, F., Rybarczyk, Y., Andino, J.E.G. and Zalakeviciute, R., 2020. Biomonitoring of metal levels in urban areas with different vehicular traffic intensity by using Araucaria heterophylla needles. Ecological Indicators. 117, 106701.
Alyemeni, M.N. and Almohisen, I.A., 2014. Traffic and industrial activities around Riyadh cause the accumulation of heavy metals in legumes: a case study. Saudi Journal of Biological Sciences. 21(2), 167-172.
Amiri, L., Azadi, R. and Rastegarzadeh, Saadat, Zofan, P., 2019. Monitoring the concentration of heavy metals in Conocarpus erectus in different areas of Abadan Industrial City. Journal of Natural Environment. 72 (2), 143-157.
Arnot, J.A. and Gobas, F.A., 2006. A review of bioconcentration factor (BCF) and bioaccumulation factor (BAF) assessments for organic chemicals in aquatic organisms. Environmental Reviews. 14(4), 257-297.
Bini, C., Gentili, L., Maleci, B.L. and Vaselli, O., 1995. Trace elements in plants and soils of urban parks (Florence, Italy). In Proceedings of 3rd International Conferance on the Biogeochemistry of Trace Elements, 20 Sep Paris. pp. 15-19.
Bretzel, F., Benvenuti, S. and Pistelli, L., 2014. Metal contamination in urban street sediment in Pisa (Italy) can affect the production of antioxidant metabolites in Taraxacum officinale Weber. Environmental Science and Pollution Research. 21(3), 2325-2333.
Chai, M., Li, R., Ding, H. and Zan, Q., 2019. Occurrence and contamination of heavy metals in urban mangroves: A case study in Shenzhen, China. Chemosphere. 219, 165-173.
Chen, H., Wang, B., Xia, D.S., Fan, Y.J., Liu, H., Tang, Z.R. and Ma, S., 2019. The influence of roadside trees on the diffusion of road traffic pollutants and their magnetic characteristics in a typical semi-arid urban area of Northwest China. Environmental Pollution. 252, 1170-1179.
Galal, T.M. and Shehata, H.S., 2015. Bioaccumulation and translocation of heavy metals by Plantago major L. grown in contaminated soils under the effect of traffic pollution. Ecological Indicators. 48, 244-251.
Hatami-Manesh, M., Mortazavi, S., Solgi, E. and Mohtadi, A., 2019. Assessing the capacity of trees and shrubs species to accumulate of particulate matter (PM10, PM2. 5 and PM0. 2). Iranian Journal of Health and Environment. 12(1), 1-16. (In Persian with English Abstract).
Houston, D., Wu, J., Ong, P. and Winer, A., 2004. Structural disparities of urban traffic in southern California: Implications for vehicle related air pollution exposure in minority and high‐poverty neighborhoods. Journal of Urban Affairs. 26(5), 565-592.
Hu, Y., Wang, D., Wei, L., Zhang, X., Song, B., 2014. Bioaccumulation of heavy metals in plant leaves from Yan׳ an city of the Loess Plateau, China. Ecotoxicology and environmental safety. 110, 82-88.
Jia, M., Zhou, D., Lu, S. and Yu, J., 2020. Assessment of foliar dust particle retention and toxic metal accumulation ability of fifteen roadside tree species: Relationship and mechanism. Atmospheric Pollution Research.
Kabata-Pendias, A. and Pendias, H., 2001. Trace elements in soils and plants, 3rd edn CRC Press. Boca Raton, FL, USA.
Karmakar, D. and Padhy, P.K., 2019. Air pollution tolerance, anticipated performance, and metal accumulation indices of plant species for greenbelt development in urban industrial area. Chemosphere. 237, 124522.
Liu, L., Liu, Q., Ma, J., Wu, H., Qu, Y., Gong, Y. and Zhou, Y., 2020. Heavy metal (loid) s in the topsoil of urban parks in Beijing, China: Concentrations, potential sources, and risk assessment. Environmental Pollution. 260, 114083.
Mahmoud, E.K. and Ghoneim, A. M., 2016. Effect of polluted water on soil and plant contamination by heavy metals in El-Mahla El-Kobra, Egypt. Solid Earth. 7(2), 703-711.
Massa, N., Andreucci, F., Poli, M., Aceto, M., Barbato, R. and Berta, G., 2010. Screening for heavy metal accumulators amongst autochtonous plants in a polluted site in Italy. Ecotoxicology and environmental safety. 73(8), 1988-1997.
Nadgórska–Socha, A., Kandziora-Ciupa, M., Trzęsicki, M. and Barczyk, G., 2017. Air pollution tolerance index and heavy metal bioaccumulation in selected plant species from urban biotopes. Chemosphere. 183, 471-482.
Naseri, M., Vazirzadeh, A., Kazemi, R. and Zaheri, F., 2015. Concentration of some heavy metals in rice types available in Shiraz market and human health risk assessment. Food chemistry. 175, 243-248.
Nasir, Z. A., Colbeck, I., Ali, Z. and Ahmed, S., 2015. Heavy metal composition of particulate matter in rural and urban residential built environments in Pakistan. Pakistan Agricultural Scientists Forum.
Remon, E., Bouchardon, J.L., Le Guédard, M., Bessoule, J.J., Conord, C. and Faure, O., 2013. Are plants useful as accumulation indicators of metal bioavailability? Environmental Pollution. 175, 1-7.
Saba, G., Parizanganeh, A. H., Zamani, A., Saba, J., 2015. PhytoremeDiation ofHeavyMetalsContaminated Environments: Screening forNativeAccumulatorPlants inZanjan-Iran. International Journal of Environmental Research. 9(1), 309-316.
Samecka-Cymerman, A., Stankiewicz, A., Kolon, K. and Kempers, A.J., 2009. Self-organizing feature map (neural networks) as a tool to select the best indicator of road traffic pollution (soil, leaves or bark of Robinia pseudoacacia L.). Environmental Pollution. 157(7), 2061-2065.
Solgi, E. and Beigmohammadi, F., 2020. Investigate the effect of distance from source and species type on the absorption ability of heavy metals by tree species around Nahavand cement factory. Journal of Plant Ecosystem Conservation. 8(16), 321-343. (In Persian with English Abstract).
Solgi, E., Roohi, N. and Kouroshi-Gholampour, M., 2016. A comparative study of metals in roadside soils and urban parks from Hamedan metropolis, Iran. Environmental Nanotechnology, Monitoring and Management. 6, 169-175.
Torkashvand, V., Mohammadi Rouzbahni, M. and Babaeinezhad, T., 2018. Survey of heavy metals (Pb, Ni, Cr, Cd) bio-accumulation in the leaves of (Albizia lebbek and Eucalyotus camadulensis) (case stady: Iran National Steel Industrial Group). J Neyshabur Univ Med Sci. 6(1), 33-43. (In Persian with English Abstract).
Turkyilmaz, A., Cetin, M., Sevik, H., Isinkaralar, K. and Saleh, E.A.A., 2020. Variation of heavy metal accumulation in certain landscaping plants due to traffic density. Environment, Development and Sustainability. 22(3), 2385-2398.
Vanni, G., Cardelli, R., Marchini, Saviozzi, A. and Guidi, A., 2015. Are the physiological and biochemical characteristics in dandelion plants growing in an urban area (Pisa, Italy) indicative of soil pollution? Water, Air, & Soil Pollution. 226(4), 124.
Weerakkody, U., Dover, J.W., Mitchell, P. and Reiling, K., 2018. Evaluating the impact of individual leaf traits on atmospheric particulate matter accumulation using natural and synthetic leaves. Urban forestry & urban greening. 30, 98-107.
Wu, F., Yang, W., Zhang, J. and Zhou, L., 2010. Cadmium accumulation and growth responses of a poplar (Populus deltoids× Populus nigra) in cadmium contaminated purple soil and alluvial soil. Journal of Hazardous Materials. 177(1-3), 268-273.
Zhang, C., Qiao, Q., Appel, E. and Huang, B., 2012. Discriminating sources of anthropogenic heavy metals in urban street dusts using magnetic and chemical methods. Journal of Geochemical Exploration. 119, 60-75.