RT null T1 Global Mercury Modelling: Update of Modelling Results in the Global Mercury Assessment 2013 A1 United Nations Environment Programme, A1 Arctic Council, A2 Travnikov, Oleg A2 Dastoor, Ashu A2 Friedman, Carey A2 Ryzhkov, Andrew A2 Selin, Noelle A2 Song, Shaojie K1 mercury YR 2015 FD 2015 LK https://wedocs.unep.org/handle/20.500.11822/13772 UL https://wedocs.unep.org/handle/20.500.11822/13772 NO The current report aims to update the information presented in section 3.6 of the Technical Background Report for the Global Mercury Assessment 2013 (AMAP/UNEP, 2013) with new model simulation results and focusing on an evaluation of mercury intercontinental transport and source attribution of mercury deposition. The character of mercury dispersion in the atmosphere and transport from one region to another is largely affected by the physicochemical properties of the atmospheric mercury species. Poorly soluble and relatively stable gaseous elemental mercury can drift in the air for months providing transport of mercury mass between different regions of the planet. In contrast, oxidized mercury species – gaseous oxidized mercury and particle bound mercury – are easily removed from the air by precipitation scavenging or surface uptake. NO https://www.unep.org/chemicalsandwaste/Portals/9/Mercury/GMA%20Report/Report%20-%20Modelling%20update%20of%20the%20GMA2013.pdf.pdf DS UN Environment Document Repository RD Sep 17, 2026