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Residential Mercury Contamination in Adobe Brick Homes in Huancavelica, Peru

Author

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  • Nicole Hagan
  • Nicholas Robins
  • Heileen Hsu-Kim
  • Susan Halabi
  • Ruben Dario Espinoza Gonzales
  • Daniel deB Richter
  • John Vandenberg

Abstract

This is the first study of adobe brick contamination anywhere in the world. Huancavelica, Peru is the site of historic cinnabar refining and one of the most mercury (Hg) contaminated urban areas in the world. Over 80% of homes in Huancavelica are constructed with adobe bricks made from Hg contaminated soil. In this study we measured total Hg concentrations in adobe brick, dirt floor, surface dust, and air samples from the interior of 60 adobe brick houses located in four neighborhoods. Concentrations of total Hg in adobe bricks, dirt floors, and surface dust ranged from 8.00 to 1070 µg/g, 3.06 to 926 µg/g, and 0.02 to 9.69 µg/wipe, respectively, with statistically significant differences between the four neighborhoods. Concentrations of Hg in adobe brick and dirt floor samples in Huancavelica were orders of magnitude higher than in Ayacucho, a non-mining town in Peru. A strong correlation exists between total Hg concentrations in adobe bricks and dirt floors which confirms that adobe bricks were being made on-site and not purchased from an off-site source. A strong correlation between surface dust and adobe bricks and dirt floors indicates that walls and floors serve as indoor sources of Hg contamination. Elemental Hg vapor concentrations were below detection (

Suggested Citation

  • Nicole Hagan & Nicholas Robins & Heileen Hsu-Kim & Susan Halabi & Ruben Dario Espinoza Gonzales & Daniel deB Richter & John Vandenberg, 2013. "Residential Mercury Contamination in Adobe Brick Homes in Huancavelica, Peru," PLOS ONE, Public Library of Science, vol. 8(9), pages 1-1, September.
  • Handle: RePEc:plo:pone00:0075179
    DOI: 10.1371/journal.pone.0075179
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    Cited by:

    1. Thobeka Pearl Makhathini & Joseph Kapuku Bwapwa & Sphesihle Mtsweni, 2023. "Various Options for Mining and Metallurgical Waste in the Circular Economy: A Review," Sustainability, MDPI, vol. 15(3), pages 1-21, January.

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