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Lead loading of urban streets by motor vehicle wheel weights.

This study documents that lead weights, which are used to balance motor vehicle wheels, are lost and deposited in urban streets, that they accumulate along the outer curb, and that they are rapidly abraded and ground into tiny pieces by vehicle traffic. The lead is so soft that half the lead deposit...

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Detalles Bibliográficos
Autor principal: Root, R A
Formato: Texto
Lenguaje:English
Publicado: 2000
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1240125/
https://www.ncbi.nlm.nih.gov/pubmed/11049812
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author Root, R A
author_facet Root, R A
author_sort Root, R A
collection PubMed
description This study documents that lead weights, which are used to balance motor vehicle wheels, are lost and deposited in urban streets, that they accumulate along the outer curb, and that they are rapidly abraded and ground into tiny pieces by vehicle traffic. The lead is so soft that half the lead deposited in the street is no longer visible after little more than 1 week. This lead loading of urban streets by motor vehicle wheel weights is continuous, significant, and widespread, and is potentially a major source of human lead exposure because the lead is concentrated along the outer curb where pedestrians are likely to step. Lead deposition at one intersection in Albuquerque, New Mexico, ranged from 50 to 70 kg/km/year (almost 11 g/ft(2)/year along the outer curb), a mass loading rate that, if accumulated for a year, would exceed federal lead hazard guidelines more than 10,000 times. Lead loading of major Albuquerque thoroughfares is estimated to be 3,730 kg/year. Wheel weight lead may be dispersed as fugitive dust, flushed periodically by storm water into nearby waterways and aquatic ecosystems, or may adhere to the shoes of pedestrians or the feet of pets, where it can be tracked into the home. I propose that lead from wheel weights contributes to the lead burden of urban populations.
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spelling pubmed-12401252005-11-08 Lead loading of urban streets by motor vehicle wheel weights. Root, R A Environ Health Perspect Research Article This study documents that lead weights, which are used to balance motor vehicle wheels, are lost and deposited in urban streets, that they accumulate along the outer curb, and that they are rapidly abraded and ground into tiny pieces by vehicle traffic. The lead is so soft that half the lead deposited in the street is no longer visible after little more than 1 week. This lead loading of urban streets by motor vehicle wheel weights is continuous, significant, and widespread, and is potentially a major source of human lead exposure because the lead is concentrated along the outer curb where pedestrians are likely to step. Lead deposition at one intersection in Albuquerque, New Mexico, ranged from 50 to 70 kg/km/year (almost 11 g/ft(2)/year along the outer curb), a mass loading rate that, if accumulated for a year, would exceed federal lead hazard guidelines more than 10,000 times. Lead loading of major Albuquerque thoroughfares is estimated to be 3,730 kg/year. Wheel weight lead may be dispersed as fugitive dust, flushed periodically by storm water into nearby waterways and aquatic ecosystems, or may adhere to the shoes of pedestrians or the feet of pets, where it can be tracked into the home. I propose that lead from wheel weights contributes to the lead burden of urban populations. 2000-10 /pmc/articles/PMC1240125/ /pubmed/11049812 Text en
spellingShingle Research Article
Root, R A
Lead loading of urban streets by motor vehicle wheel weights.
title Lead loading of urban streets by motor vehicle wheel weights.
title_full Lead loading of urban streets by motor vehicle wheel weights.
title_fullStr Lead loading of urban streets by motor vehicle wheel weights.
title_full_unstemmed Lead loading of urban streets by motor vehicle wheel weights.
title_short Lead loading of urban streets by motor vehicle wheel weights.
title_sort lead loading of urban streets by motor vehicle wheel weights.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1240125/
https://www.ncbi.nlm.nih.gov/pubmed/11049812
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