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Heavy metals from non-exhaust vehicle emissions in urban and motorway road dusts

Environmental Monitoring and Assessment · 2016 · Vol. 188(6) · pp. 369–369
Ewa AdamiecElżbieta Jarosz‐KrzemińskaR. Wieszała

Abstract

The main sources of non-exhaust vehicular emissions that contribute to road dust are tire, brake and clutch wear, road surface wear, and other vehicle and road component degradation. This study is an attempt to identify and investigate heavy metals in urban and motorway road dusts as well as in dust from brake linings and tires. Road dust was collected from sections of the A-4 motorway in Poland, which is part of European route E40, and from urban roads in Katowice, Poland. Dust from a relatively unpolluted mountain road was collected and examined as a control sample. Selected metals Cd, Cr, Cu, Ni, Pb, Zn, Fe, Se, Sr, Ba, Ti, and Pd were analyzed using inductively coupled plasma-mass spectrometry, inductively coupled plasma (ICP)-optical emission spectroscopy, and atomic absorption spectroscopy on a range of size-fractionated road dust and brake lining dust (<20, 20-56, 56-90, 90-250, and >250 μm). The compositions of brake lining and tire dust were also investigated using scanning electron microscopy-energy-dispersive spectroscopy. To estimate the degree of potential environmental risk of non-exhaust emissions, comparison with the geochemical background and the calculations of geo-accumulation indices were performed. The finest fractions of urban and motorway dusts were significantly contaminated with all of the investigated metals, especially with Ti, Cu, and Cr, which are well-recognized key tracers of non-exhaust brake wear. Urban dust was, however, more contaminated than motorway dust. It was therefore concluded that brake lining and tire wear strongly contributed to the contamination of road dust.

Air Quality and Health ImpactsHeavy metals in environmentRadioactivity and Radon MeasurementsRoad dustEnvironmental scienceEnvironmental chemistryContaminationParticulatesEnvironmental engineeringAtomic absorption spectroscopyChemistryPhysics

MeSH terms

Vehicle EmissionsDustEnvironmental MonitoringParticle SizePolandSpectrophotometry, AtomicMotor VehiclesMetals, Heavy

Funding

  • Akademia Górniczo-Hutnicza im. Stanislawa Staszica
  • Narodowe Centrum Badań i Rozwoju
Citations
440
FWCI
15.66
field-weighted impact
References
35
Percentile
100%
vs. same field & year
Citations per year
References
Brake wear particle emissions: a review
Environmental Science and Pollution Research · 2014 · 855 citations
Characterization of heavy metal particles embedded in tire dust
Environment International · 2004 · 957 citations
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