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Mercury as a Global Pollutant: Sources, Pathways, and Effects

Environmental Science & Technology · 2013 · Vol. 47(10) · pp. 4967–4983
Charles T. DriscollRobert P. MasonHing Man ChanDaniel J. JacobNicola Pirrone

Abstract

Mercury (Hg) is a global pollutant that affects human and ecosystem health. We synthesize understanding of sources, atmosphere-land-ocean Hg dynamics and health effects, and consider the implications of Hg-control policies. Primary anthropogenic Hg emissions greatly exceed natural geogenic sources, resulting in increases in Hg reservoirs and subsequent secondary Hg emissions that facilitate its global distribution. The ultimate fate of emitted Hg is primarily recalcitrant soil pools and deep ocean waters and sediments. Transfers of Hg emissions to largely unavailable reservoirs occur over the time scale of centuries, and are primarily mediated through atmospheric exchanges of wet/dry deposition and evasion from vegetation, soil organic matter and ocean surfaces. A key link between inorganic Hg inputs and exposure of humans and wildlife is the net production of methylmercury, which occurs mainly in reducing zones in freshwater, terrestrial, and coastal environments, and the subsurface ocean. Elevated human exposure to methylmercury primarily results from consumption of estuarine and marine fish. Developing fetuses are most at risk from this neurotoxin but health effects of highly exposed populations and wildlife are also a concern. Integration of Hg science with national and international policy efforts is needed to target efforts and evaluate efficacy.

Mercury impact and mitigation studiesHeavy Metal Exposure and ToxicityToxic Organic Pollutants ImpactMethylmercuryMercury (programming language)Environmental sciencePollutantTerrestrial ecosystemEstuaryEcosystemEnvironmental chemistryWildlifeEnvironmental protection

MeSH terms

AnimalsAnimals, WildEnvironmental ExposureEnvironmental PollutantsHumansMercuryEcosystem

Funding

  • National Science Foundation
  • New York State Energy Research and Development Authority
  • European Commission
Citations
2,401
FWCI
68.62
field-weighted impact
References
212
Percentile
100%
vs. same field & year
Citations per year
References
Atmospheric mercury—An overview
Atmospheric Environment · 1998 · 1,862 citations
Global mercury emissions to the atmosphere from anthropogenic and natural sources
Atmospheric chemistry and physics · 2010 · 1,453 citations
Global anthropogenic mercury emission inventory for 2000
Atmospheric Environment · 2006 · 1,004 citations
Mercury biogeochemical cycling in the ocean and policy implications
Environmental Research · 2012 · 581 citations
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