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Challenges and opportunities for managing aquatic mercury pollution in altered landscapes

Datos Bibliográficos

ID10889596
AutoresHeileen Hsu-Kim (0000-0003-0675-4308, Duke University, autor de correspondencia), Chris S Eckley (0000-0002-6986-4451, Environmental Protection Agency, autor de correspondencia), Dario Achá (0000-0002-9498-069X, Universidad Mayor de San Andrés), Xinbin Feng (0000-0002-7462-8998, Chinese Academy of Sciences), Cynthia C Gilmour (0000-0002-1720-9498, Smithsonian Environmental Research Center), Sofi Jonsson (0000-0002-6142-6983, Stockholm University), Carl P J Mitchell (0000-0001-8538-5138, University of Toronto)
Año2018
Volumen47
Número2
Páginas141-169
Fecha de publicación2018-03-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaAMBIO (JOURNAL)
Identificadores de la revistaISSN: 0044-7447 • E-ISSN: 1654-7209
EditorialSpringer Science and Business Media LLC (PUBLISHER)
DOI10.1007/s13280-017-1006-7
PMID29388127
OpenAlexW2786291776
IdiomaEN
Citas recibidas10
Referencias citadas336

The environmental cycling of mercury (Hg) can be affected by natural and anthropogenic perturbations. Of particular concern is how these disruptions increase mobilization of Hg from sites and alter the formation of monomethylmercury (MeHg), a bioaccumulative form of Hg for humans and wildlife. The scientific community has made significant advances in recent years in understanding the processes contributing to the risk of MeHg in the environment. The objective of this paper is to synthesize the scientific understanding of how Hg cycling in the aquatic environment is influenced by landscape perturbations at the local scale, perturbations that include watershed loadings, deforestation, reservoir and wetland creation, rice production, urbanization, mining and industrial point source pollution, and remediation. We focus on the major challenges associated with each type of alteration, as well as management opportunities that could lessen both MeHg levels in biota and exposure to humans. For example, our understanding of approximate response times to changes in Hg inputs from various sources or landscape alterations could lead to policies that prioritize the avoidance of certain activities in the most vulnerable systems and sequestration of Hg in deep soil and sediment pools. The remediation of Hg pollution from historical mining and other industries is shifting towards in situ technologies that could be less disruptive and less costly than conventional approaches. Contemporary artisanal gold mining has well-documented impacts with respect to Hg; however, significant social and political challenges remain in implementing effective policies to minimize Hg use. Much remains to be learned as we strive towards the meaningful application of our understanding for stakeholders, including communities living near Hg-polluted sites, environmental policy makers, and scientists and engineers tasked with developing watershed management solutions. Site-specific assessments of MeHg exposure risk will require new methods to predict the impacts of anthropogenic perturbations and an understanding of the complexity of Hg cycling at the local scale

Anthropocene · Bioaccumulation · Biota · Contamination · Environmental planning · Environmental protection · Environmental remediation · Environmental resource management · Gold mining · Mercury (programming language · Methylmercury · Tailings · Urbanization · Watershed · Wetland · Wildlife · Chemistry · Computer Science · Ecology · Environmental Chemistry · Environmental Science · Heavy Metal Exposure and Toxicity · Mercury impact and mitigation studies · Pollution

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    Open Access•Sihua Zhu, Caiyun Yang et al.•International Journal of…•2023

  • A review of global environmental mercury processes in response to human and natural perturbations

    Open Access•Daniel Obrist, Jane L Kirk et al.•AMBIO•2018

  • Modulators of mercury risk to wildlife and humans in the context of rapid global change

    Open Access•Collin A Eagles-Smith, Collin A Eagles‐Smith et al.•AMBIO•2018

  • Linking science and policy to support the implementation of the Minamata Convention on Mercury

    Open Access•Helaine Selin, Susan Egan Keane et al.•AMBIO•2018

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    Open Access•Celia Y Chen, David C Evers•AMBIO•2023

  • Ecosystem approaches to mercury and human health

    Open Access•Donna Mergler•AMBIO•2021

  • Integrating mercury research and policy in a changing world

    Open Access•Celia Y Chen, Charles T Driscoll•AMBIO•2018

  • Global change effects on biogeochemical mercury cycling

    Open Access•Jeroen E Sonke, Hélène Angot et al.•AMBIO•2023

  • Gold Mining in the Peruvian Amazon

    Open Access•Jennifer J Swenson, Catherine E Carter et al.•PLoS ONE•2011

  • How much of the world’s land has been urbanized, really? A hierarchical framework for avoiding confusion

    Open Access•Zhifeng Liu, Chunyang He et al.•Landscape Ecology•2014

  • Mercury Exposure and Health Impacts among Individuals in the Artisanal and Small-Scale Gold Mining Community

    Open Access•Herman Gibb, Herman J Gibb et al.•Environmental Health Perspectives•2014

  • A review of soil heavy metal pollution from mines in China

    Open Access•Zhiyuan Li, Zongwei Ma et al.•The Science of The Total…•2014

  • Mercury as a Global Pollutant

    Open Access•Charles T Driscoll, Robert P Mason et al.•Environmental Science & Technology•2013

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    Open Access•Daniel Obrist, Jane L Kirk et al.•AMBIO•2018

  • Modulators of mercury risk to wildlife and humans in the context of rapid global change

    Open Access•Collin A Eagles-Smith, Collin A Eagles‐Smith et al.•AMBIO•2018

  • Mercury in Sediment and Fish Communities of Lake Vänern, Sweden

    Lennart Lindeström•AMBIO•2001

  • Net Methylmercury Production as a Basis for Improved Risk Assessment of Mercury-contaminated Sediments

    Ulf Skyllberg, Andreas Drott et al.•AMBIO•2007

  • Linking science and policy to support the implementation of the Minamata Convention on Mercury

    Open Access•Helaine Selin, Susan Egan Keane et al.•AMBIO•2018

  • Recovery of Mercury-Contaminated Fisheries

    John Munthe, R A Bodaly et al.•AMBIO•2007

  • A Synthesis of Progress and Uncertainties in Attributing the Sources of Mercury in Deposition

    S E Lindberg, Steve Lindberg et al.•AMBIO•2007

  • Managing Swedish forestry’s impact on mercury in fish

    Open Access•Karin Eklöf, R Lidskog et al.•AMBIO•2016

  • The Effects of Forest Harvest Operations on Mercury and Methylmercury in Two Boreal Streams

    Rasmus Sørensen, Markus Meili et al.•AMBIO•2009

  • Effects of Environmental Methylmercury on the Health of Wild Birds, Mammals, and Fish

    Anton M Scheuhammer, Michael W Meyer et al.•AMBIO•2007

Obras citantes distintas10
Citas por año1,25
Intervalo de citas2018 - 2025 (8)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 10
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