Towards a multi-instrument analysis of atmospheric composition in fire driven ecosystems

dc.contributor.authorSmith, Nadiaen_ZA
dc.contributor.authorDe Klerk, Helen Margareten_ZA
dc.contributor.authorSchloms, Bennie H. A.en_ZA
dc.contributor.authorWeisz, Elisabethen_ZA
dc.contributor.authorHuang, Allenen_ZA
dc.date.accessioned2016-05-06T11:52:48Z
dc.date.available2016-05-06T11:52:48Z
dc.date.issued2013
dc.descriptionCITATION: Smith, N., De Klerk, H.M., Schloms, B.H.A. Weisz, E. & Huang, A. 2013. Towards a multi-instrument analysis of atmospheric composition in fire driven ecosystems. EUMETSAT Meteorological Satellite Conference, 16-20 November, Vienna.en_ZA
dc.descriptionThe original publication is available at http://www.eumetsat.int/website/home/index.html
dc.description.abstractMuch research has gone into mapping the onset and spatial extent of fires using imager data from space. In addition, much progress has been made in the ability to characterize and trace biomass burning plumes with hyperspectral sounders. In this paper we investigate the feasibility of combining satellite measurements from different instruments to promote an improved and comprehensive understanding of pollution events.en_ZA
dc.description.versionPost-printen_ZA
dc.format.extent8 pages
dc.identifier.citationSmith, N., De Klerk, H.M., Schloms, B.H.A. Weisz, E. & Huang, A. 2013. Towards a multi-instrument analysis of atmospheric composition in fire driven ecosystems. EUMETSAT Meteorological Satellite Conference, 16-20 November, Vienna.en_ZA
dc.identifier.urihttp://hdl.handle.net/10019.1/98978
dc.language.isoen_ZAen_ZA
dc.rights.holderAuthors retain copyrighten_ZA
dc.subjectWildfires -- Environmental aspects -- Africa, Southern -- Remote sensing -- Congressesen_ZA
dc.subjectClimatic changes -- Africa, Southern -- Congressesen_ZA
dc.subjectAir -- Pollution -- Africa, Southern -- Remote sensing -- Congressesen_ZA
dc.subjectBiomass -- Combustion -- Environmetal aspects -- Africa, Southern -- Remote sensing -- Congressesen_ZA
dc.titleTowards a multi-instrument analysis of atmospheric composition in fire driven ecosystemsen_ZA
dc.typeConference Paperen_ZA
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