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Review of pollutants in urban road dust and stormwater runoff: part 1. Heavy metals released from vehicles

Author

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  • Hyun-Min Hwang
  • Matthew J. Fiala
  • Dongjoo Park
  • Terry L. Wade

Abstract

Urban road dust can be highly enriched with trace metals such as copper, lead, zinc, and platinum group elements (PGEs) that are released primarily from vehicles. Concentrations of these metals are up to about 100 times higher than background levels. Lead concentrations in sediment core have declined dramatically due to phase out of leaded gasoline. Recent ban on the use of lead wheel balancing weight in Europe and in some US states will accelerate the decline of lead in the environment. Concentrations of copper, zinc, and PGEs in sediments in many urban areas have increased continuously due to increase of urban sprawl and increased numbers and travel distance of vehicle. Wear of brake pads and tyres are the primary sources of copper and zinc in urban road dust. PGEs have been released from catalytic converters since the mid-1970s. Contaminated urban road dust is picked up by stormwater runoff and delivered into local receiving waterbodies (e.g. streams, rivers, lakes, and estuaries). Concentrations of these metals in waterbodies and sediments receiving stormwater runoff from densely populated urban areas are high enough to impair the health of aquatic organisms and frequently exceed water quality criteria and sediment quality guidelines. In order to improve the quality of urban waterbodies, legal regulations are necessary to reduce release of toxic metals from vehicle use as demonstrated in the case of lead in gasoline. Recent regulations and agreement to reduce copper content in brake pads to 0.5% by 2026 in the USA should result in significant reduction of copper entering urban watersheds. A less optimal option is removal of suspended sediments from stormwater runoff before they enter receiving waterbodies using best management practices such as retention ponds, detention basins, and grass swales.

Suggested Citation

  • Hyun-Min Hwang & Matthew J. Fiala & Dongjoo Park & Terry L. Wade, 2016. "Review of pollutants in urban road dust and stormwater runoff: part 1. Heavy metals released from vehicles," International Journal of Urban Sciences, Taylor & Francis Journals, vol. 20(3), pages 334-360, September.
  • Handle: RePEc:taf:rjusxx:v:20:y:2016:i:3:p:334-360
    DOI: 10.1080/12265934.2016.1193041
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    Citations

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    Cited by:

    1. Pura Marín-Sanleandro & María José Delgado-Iniesta & Anthony Felipe Sáenz-Segovia & Antonio Sánchez-Navarro, 2023. "Spatial Identification and Hotspots of Ecological Risk from Heavy Metals in Urban Dust in the City of Cartagena, SE Spain," Sustainability, MDPI, vol. 16(1), pages 1-20, December.
    2. Xiuyun Yang & Mamattursun Eziz & Adila Hayrat & Xiaofei Ma & Wei Yan & Kaixuan Qian & Jiaxin Li & Yuan Liu & Yifan Wang, 2022. "Heavy Metal Pollution and Risk Assessment of Surface Dust in the Arid NW China," IJERPH, MDPI, vol. 19(20), pages 1-21, October.
    3. Haseeb Tufail Moryani & Shuqiong Kong & Jiangkun Du & Jianguo Bao, 2020. "Health Risk Assessment of Heavy Metals Accumulated on PM 2.5 Fractioned Road Dust from Two Cities of Pakistan," IJERPH, MDPI, vol. 17(19), pages 1-21, September.
    4. Yoshira Ornelas Van Horne & Jennifer Parks & Thien Tran & Leif Abrell & Kelly A. Reynolds & Paloma I. Beamer, 2019. "Seasonal Variation of Water Quality in Unregulated Domestic Wells," IJERPH, MDPI, vol. 16(9), pages 1-14, May.
    5. Dídac Navarro-Ciurana & Mercè Corbella & Daniel Meroño, 2023. "Effects of Road Dust Particle Size on Mineralogy, Chemical Bulk Content, Pollution and Health Risk Analyses," IJERPH, MDPI, vol. 20(17), pages 1-26, August.
    6. Nabeel Abdullah Alrabie & Ferdaus Mohamat-Yusuff & Hashim Rohasliney & Zufarzaana Zulkeflee & Mohammad Noor Azmai Amal & Aziz Arshad & Syaizwan Zahmir Zulkifli & Anugrah Ricky Wijaya & Najat Masood & , 2021. "Preliminary Evaluation of Heavy Metal Contamination and Source Identification in Kuala Lumpur SMART Stormwater Pond Sediments Using Pb Isotopic Signature," Sustainability, MDPI, vol. 13(16), pages 1-16, August.
    7. Elżbieta Zawierucha & Monika Skowrońska & Marcin Zawierucha, 2022. "Chemical and Biological Properties of Agricultural Soils Located along Communication Routes," Agriculture, MDPI, vol. 12(12), pages 1-11, November.
    8. Zhouli Liu & Mengdi Chen & Maosen Lin & Qinglin Chen & Qingxuan Lu & Jing Yao & Xingyuan He, 2022. "Cadmium Uptake and Growth Responses of Seven Urban Flowering Plants: Hyperaccumulator or Bioindicator?," Sustainability, MDPI, vol. 14(2), pages 1-12, January.

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