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Mercury in western North America: A synthesis of environmental contamination, fluxes, bioaccumulation, and risk to fish and wildlife

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Eagles-Smith, Collin A., James G. Wiener, Chris S. Eckley, James J. Willacker, David C. Evers, Mark Marvin-DiPasquale, Daniel Obrist, et al. 2016. “Mercury in Western North America: A Synthesis of Environmental Contamination, Fluxes, Bioaccumulation, and Risk to Fish and Wildlife.” Science of The Total Environment 568 (October): 1213–26. doi:10.1016/j.scitotenv.2016.05.094.

Summary

Western North America is a region defined by extreme gradients in geomorphology and climate, which support a diverse array of ecological communities and natural resources. The region also has extreme gradients in mercury (Hg) contamination due to a broad distribution of inorganic Hg sources. These diverse Hg sources and a varied landscape create a unique and complex mosaic of ecological risk from Hg impairment associated with differential methylmercury (MeHg) production and bioaccumulation. Understanding the landscape-scale variation in the magnitude and relative importance of processes associated with Hg transport, methylation, and MeHg bioaccumulation requires a multidisciplinary synthesis that transcends small-scale variability. [...]

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Conceptual model of mercury cycling and bioaccumulation in western North America.JPG
“Conceptual model of mercury cycling and bioaccumulation in western North America”
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Conceptual model of mercury cycling and bioaccumulation in western North America
Conceptual model of mercury cycling and bioaccumulation in western North America

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  • John Wesley Powell Center for Analysis and Synthesis

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DOI https://www.sciencebase.gov/vocab/category/item/identifier 10.1016/j.scitotenv.2016.05.094

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noteEagles-Smith, Collin A., James G. Wiener, Chris S. Eckley, James J. Willacker, David C. Evers, Mark Marvin-DiPasquale, Daniel Obrist, et al. 2016. “Mercury in Western North America: A Synthesis of Environmental Contamination, Fluxes, Bioaccumulation, and Risk to Fish and Wildlife.” Science of The Total Environment 568 (October): 1213–26. doi:10.1016/j.scitotenv.2016.05.094.

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