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Journal ArticleDOI

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

TLDR
It is agreed that the uncertainty is strongly dependent upon scale and that the question as stated is answerable with greater confidence both very near and very far from major point sources, assuming that the “global pool” is a recognizable “source.”
Abstract
A panel of international experts was convened in Madison, Wisconsin, in 2005, as part of the 8th International Conference on Mercury as a Global Pollutant. Our charge was to address the state of science pertinent to source attribution, specifically our key question was: "For a given location, can we ascertain with confidence the relative contributions of local, regional, and global sources, and of natural versus anthropogenic emissions to mercury deposition?" The panel synthesized new research pertinent to this question published over the past decade, with emphasis on four major research topics: long-term anthropogenic change, current emission and deposition trends, chemical transformations and cycling, and modeling and uncertainty. Within each topic, the panel drew a series of conclusions, which are presented in this paper. These conclusions led us to concur that the answer to our question is a "qualified yes," with the qualification being dependent upon the level of uncertainty one is willing to accept. We agreed that the uncertainty is strongly dependent upon scale and that our question as stated is answerable with greater confidence both very near and very far from major point sources, assuming that the "global pool" is a recognizable "source." Many regions of interest from an ecosystem-exposure standpoint lie in between, where source attribution carries the greatest degree of uncertainty.

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Citations
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Journal ArticleDOI

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

TL;DR: Understanding of sources, atmosphere-land-ocean Hg dynamics and health effects are synthesized, and integration of Hg science with national and international policy efforts is needed to target efforts and evaluate efficacy.
Journal ArticleDOI

Global Biogeochemical Cycling of Mercury: A Review

TL;DR: In this paper, the authors studied uncertainty in the global biogeochemical cycle of mercury, including oxidation processes in the atmosphere, land atmosphere and ocean-atmosphere cycling.
Journal ArticleDOI

Mechanisms Regulating Mercury Bioavailability for Methylating Microorganisms in the Aquatic Environment: A Critical Review

TL;DR: This Review evaluates the current state of knowledge regarding the mechanisms regulating microbial mercury methylation, including the speciation of mercury in environments where methylation occurs and the processes that control mercury bioavailability to these organisms.
References
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Journal ArticleDOI

Formulation of a second-generation reactive plume and visibility Model

TL;DR: In this paper, a reactive and optics model of emissions (ROME) is presented. This model presents the following improvements over existing plume visibility models: chemical transformations in the gas phase, aqueous phase, and particles are simulated by means of a comprehensive chemical kinetic mechanism.
Journal ArticleDOI

Implications of Heterogeneous Chemistry of Nitric Acid for Nitrogen Deposition to Marine Ecosystems: Observations and Modeling

TL;DR: In this paper, the importance of HNO3 reactions on sea salt particles in determining spatio-temporal patterns of N dry deposition to marine ecosystems was investigated. But the results were limited to the near coastal zone.
Journal ArticleDOI

Estimated Variability of National Atmospheric Deposition Program/Mercury Deposition Network Measurements Using Collocated Samplers

TL;DR: Variability is quantified for MDN data from collocated samplers at MDN sites in two states, one in Illinois and one in Washington, which are the contour intervals used to display the data on NADP isopleths maps for concentration and deposition, respectively.
Journal ArticleDOI

A mathematical model for multimedia health risk assessment

TL;DR: In this paper, a public health risk assessment model is presented, and its application to actual power plant emissions is described, and the model is applied to actual coal piles and landfills.
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