We perform global-scale inverse modeling to constrain present-day atmospheric mercury emissions and relevant physiochemical parameters in the GEOS-Chem chemical transport model. We use Bayesian inversion methods combining simulations with GEOS-Chem and groundbased Hg0 observations from regional monitoring networks and individual sites in recent years.
Original Source [2]
Links:
[1] http://admin.indiaenvironmentportal.org.in/feature-article/top-down-constraints-atmospheric-mercury-emissions-and-implications-global
[2] http://www.atmos-chem-phys.net/15/7103/2015/acp-15-7103-2015.pdf
[3] http://admin.indiaenvironmentportal.org.in/category/author/s-song
[4] http://admin.indiaenvironmentportal.org.in/category/author/n-e-selin
[5] http://admin.indiaenvironmentportal.org.in/category/author/l-soerensen-et-al
[6] http://admin.indiaenvironmentportal.org.in/category/journal/atmospheric-chemistry-and-physics
[7] http://admin.indiaenvironmentportal.org.in/category/thesaurus/mercury
[8] http://admin.indiaenvironmentportal.org.in/category/thesaurus/atmosphere