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Reconstructing Early Industrial Contributions to Legacy Trace Metal Contamination in Southwestern Pennsylvania. | LitMetric

AI Article Synopsis

  • Early industrial activities have significantly contributed to trace metal pollution in southwestern Pennsylvania, and these historical impacts are often overlooked.
  • An analysis of sediment cores reveals that land use and industrial practices from the 19th and 20th centuries led to varying concentrations of trace metals like arsenic, barium, zinc, cadmium, and lead.
  • Understanding these legacy sources is crucial for modern assessments of environmental contamination, as they pose risks for ecosystem and human health due to the potential remobilization of these metals.

Article Abstract

Early industrial trace metal loadings are poorly characterized but potentially substantial sources of trace metals to the landscape. The magnitude of legacy contamination in southwestern Pennsylvania, the cradle of North American fossil fuel industrialization, is reconstructed from trace metal concentrations in a sediment core with proxies including major and trace metal chemistry, bulk density, and magnetic susceptibility. Trace metal chemistry in this sediment record reflects 19th and 20th century land use and industry. In particular, early 19th century arsenic loadings to the lake are elevated from pesticides used by early European settlers at a lakeside tannery. Later, sediment barium concentrations rise, likely reflecting the onset of acidic mine drainage from coal operations. Twentieth century zinc, cadmium, and lead concentrations are dominated by emissions from the nearby, infamous Donora Zinc Works yet record both the opening of a nearby coal-fired power plant and amendments to the Clean Air Act. The impact of early industry is substantial and rivals more recent metal fluxes, resulting in a significant potential source of contaminated sediments. Thus, modern assessments of trace metal contamination cannot ignore early industrial inputs, as the potential remobilization of legacy contamination would impact ecosystem and human health.

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Source
http://dx.doi.org/10.1021/acs.est.6b03372DOI Listing

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