Investigation of mercury emissions from burning of Australian eucalypt forest surface fuels using a combustion wind tunnel and field observations

Author:

Howard Dean,Macsween Katrina,Edwards Grant C.,Desservettaz MaximilienORCID,Guérette Elise-AndréeORCID,Paton-Walsh ClareORCID,Surawski Nicholas C.,Sullivan Andrew L.,Weston Christopher,Volkova LiubovORCID,Powell Jennifer,Keywood Melita D.,Reisen FabienneORCID,(Mick) Meyer C.P.

Funder

Victorian Department of Environment, Land, Water and Planning

Australian Bureau of Meteorology/CSIRO Cape Grim Program

Publisher

Elsevier BV

Subject

Atmospheric Science,General Environmental Science

Reference83 articles.

1. Generic methodologies applicable to multiple land-use categories;Aalde,2006

2. Call to Put Politics Aside in Fight for World Heritage Wilderness in Wake of Fire Threat’, Mercury 31st Jan;Abey,2016

3. New constraints on terrestrial surface–atmosphere fluxes of gaseous elemental mercury using a global database;Agnan;Environ. Sci. Technol.,2016

4. Legacy impacts of all-time anthropogenic emissions on the global mercury cycle;Amos;Global Biogeochem. Cycles,2013

5. Emission of trace gases and aerosols from biomass burning;Andreae;Global Biogeochem. Cycles,2001

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