Mo L, Ma Z, Xu Y, Sun F, Lun X, Liu X, Chen J, Yu X (2015) Assessing the capacity of plant
species to accumulate particulate matter in Beijing, China. PLoS One 10:e0140664
Mohanraj R, Azeez PA, Priscilla T (2004) Heavy metals in airborne particulate matter of urban
Coimbatore. Arch Environ Contam Toxicol 47:162–167. https://doi.org/10.1007/s00244-0043054-9
Møller P, Loft S (2010) Oxidative damage to DNA and lipids as biomarkers of exposure to air
pollution. Environ Health Perspect 118:1126
Momani KA, JIRIES AG, Jaradat QM (2000) Atmospheric deposition of Pb, Zn, Cu, and Cd in
Amman, Jordan. Turk J Chem 24:231–238
Mombo S, Foucault Y, Deola F, Gaillard I, Goix S, Shahid M, Schreck E, Pierart A, Dumat C
(2015) Management of human health risk in the context of kitchen gardens polluted by lead and
cadmium near a lead recycling company. J Soil Sediment:1–11. https://doi.org/10.1007/s11368015-1069-7
Mombo S, Dumat C, Shahid M, Schreck E (2016) A socio-scientific analysis of the environmental
and health benefits as well as potential risks of cassava production and consumption. Environ
Sci Pollut Res:1–15
Morawska L, Bofinger ND, Kocis L, Nwankwoala A (1998) Submicrometer and supermicrometer
particles from diesel vehicle emissions. Environ Sci Technol 32:2033–2042
Morawska L, Ristovski Z, Jayaratne E, Keogh DU, Ling X (2008) Ambient nano and ultrafine
particles from motor vehicle emissions: characteristics, ambient processing and implications on
human exposure. Atmos Environ 42:8113–8138
Mukherjee A, Agrawal M (2017) A global perspective of fine particulate matter pollution and its
health effects. Rev Environ Contam Toxicol 244:5–51. Springer
Murtaza B, Shah NS, Sayed M, Khan JA, Imran M, Shahid M, Khan ZUH, Ghani A, Murtaza G,
Muhammad N (2019) Synergistic effects of bismuth coupling on the reactivity and reusability of
zerovalent iron nanoparticles for the removal of cadmium from aqueous solution. Sci Total
Environ 669:333–341
Nadal M, Schuhmacher M, Domingo JL (2004) Metal pollution of soils and vegetation in an area
with petrochemical industry. Sci Total Environ 321:59–69. https://doi.org/10.1016/j.scitotenv.
2003.08.029
Naderizadeh Z, Khademi H, Ayoubi S (2016) Biomonitoring of atmospheric heavy metals pollution
using dust deposited on date palm leaves in southwestern Iran. Atmosfera 29:141–155
Natasha, Shahid M, Niazi NK, Khalid S, Murtaza B, Bibi I, Rashid MI (2018a) A critical review of
selenium biogeochemical behavior in soil-plant system with an inference to human health.
Environ Pollut 234:915–934
Natasha, Shahid M, Dumat C, Khalid S, Rabbani F, Farooq ABU, Amjad M, Abbas G, Niazi NK
(2018b) Foliar uptake of arsenic nanoparticles by spinach: an assessment of physiological and
human health risk implications. Environ Sci Pollut Res Int. https://doi.org/10.1007/s11356-0183867-0
National Research Council (2000) Committee on Health Effects of Waste Incineration, Board on
Environmental Studies and Toxicology, Commission on Life Sciences: Waste Incineration &
Public Health. National Academy Press, Washington
Nowak DJ (1994) Air pollution removal by Chicago’s urban forest. Chicago’s urban forest
ecosystem: results of the Chicago urban forest climate project, pp 63–81
Ohmsen GS (2001) Characterization of fugitive material within a primary lead smelter. J Air Waste
Manage Assoc 51:1443–1451
Olaniran AO, Balgobind A, Pillay B (2013) Bioavailability of heavy metals in soil: impact on
microbial biodegradation of organic compounds and possible improvement strategies. Int J Mol
Sci 14:10197–10228. https://doi.org/10.3390/ijms140510197
Osán J, Meirer F, Groma V, Török S, Ingerle D, Streli C, Pepponi G (2010) Speciation of copper
and zinc in size-fractionated atmospheric particulate matter using total reflection mode X-ray
absorption near-edge structure spectrometry. Spectrochim Acta B At Spectrosc 65:1008–1013
106
M. Shahid et al.
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