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Updated: Jul 28, 2026

An Inverse Analysis Approach to the Characterization of Chemical Transport in Paints
Published on: August 29, 2014
Lead in paint and soil in Karnataka and Gujarat, India
C S Clark1, V Thuppil, R Clark
1Department of Enviromental Health, University of Cincinnati, Cincinnati, Ohio 45267, USA. clarkcs@uc.edu
Insights
High lead levels in Indian children are linked to environmental contamination. Lead paint and industrial soil pollution were significant exposure sources, requiring further investigation in developing nations.
Area of Science:
- Environmental Health
- Toxicology
- Pediatric Health
Background:
- Elevated blood lead levels in children are a significant public health concern in India.
- Previous surveys identified high percentages of children with elevated blood lead, but data on environmental lead sources like paint and soil were limited.
Purpose of the Study:
- To assess environmental lead levels in paint, dust, air, and soil.
- To investigate lead exposure sources in the homes of children with very high blood lead levels.
Main Methods:
- Utilized field-portable X-ray fluorescence analyzers to measure lead concentrations.
- Analyzed environmental samples (paint, dust, air, soil) in industrial and residential areas.
- Assessed lead paint levels in homes of children with elevated blood lead.
Main Results:
- Industrial sites, particularly secondary lead smelters and battery dismantling units, showed extremely high soil lead levels (up to 100,000 ppm).
- A significant proportion of tested paints exceeded the U.S. definition of lead-based paint (1.0 mg/cm²).
- Lead paint was prevalent in homes of children with elevated blood lead levels, with soil contamination exceeding U.S. standards in only one instance.
Conclusions:
- Environmental lead contamination, especially from lead paint and industrial sources, contributes to high blood lead levels in Indian children.
- Further comprehensive surveys are needed in India and other developing countries to identify and mitigate lead exposure risks.
Abstract:
Blood lead surveys in several areas of India have found very high percentages of children with elevated blood lead levels. Fifty-three percent of children under 12 years of age in a seven-city screening had blood lead levels equal to or greater than 10 microg/dL, the level currently considered elevated by the U.S. Centers for Disease Control and Prevention (CDC). A number of these surveys focused on populations near lead smelters or in areas with high lead levels from combustion of lead-containing gasoline. There is little information available, however, on the levels of lead in paint in India and in soil. Field portable X-ray fluorescence analyzers were used to determine environmental lead levels in paint, dust, air, soil, and other bulk samples near several lead-using industries and in the residential environments of children with very high blood lead levels, at least four times as high as the CDC limit. Soils near industrial operations, such as secondary lead smelters, and battery dismantling units contained levels up to 100,000 ppm of lead. Four of 29 currently available paints from five manufacturers measured 1.0 mg/cm2 or above--the current U.S. definition of lead-based paint in housing-after the application of a single coat; four others measured at least 1.0 after three coats, and three others likely reached this level after the application of an additional one or two coats. In 5 of 10 homes of the elevated blood lead children, three or more locations in or around the home were found to have lead paint levels of 1.0 mg/cm2 or higher. Soil exceeding the U.S. standard for residential areas (400 ppm) was found at only one of the houses. Other sources of lead exposure, including traditional ayurvedic medicine tablets, were also observed. Similar surveys would be useful elsewhere in India and in other developing countries.
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