657 pages, 182 illus
Mercury, primarily because of its existence and bioaccumulation as methylmercury in aquatic organisms, is a concern for the health of higher trophic level organisms, or to their consumers. This is the major factor driving current research in mercury globally and in environmental regulation, and is the driver for the current UNEP Global Partnership for Mercury Air Transport and Fate Research (UNEP-MFTP) initiative. The overall focus of their report is to assess the relative importance of different processes and mechanisms affecting the transfer of mercury from emission sources to aquatic and terrestrial receptors and provide possible source-receptor relationships.
This transfer occurs through atmospheric transport, chemical transformations and subsequent deposition, and involves the intermittent recycling between reservoirs that occurs prior to ultimate removal of Mercury from the atmosphere. Understanding the sources, the global Mercury transport and fate, and the impact of human activity on the biosphere, requires improved knowledge of its movement and transformation in the atmosphere. An improved understanding of the emission sources, fate and transport is important if there is to be a focused and concerted effort to set priorities and goals for Mercury emission management and reduction at the national, regional and global levels and to develop and implement such policies and strategies.
To achieve this, a series of coordinated scientific endeavors focused on the estimation of sources, measurement and validation of concentrations and processes, and modeling, coupled with interpretation of the results within a policy framework, is likely to be required.
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