Affiliation:
1. Institute for Marine and Antarctic Studies, University of Tasmania, Hobart, Tasmania, Australia
2. Antarctic Climate and Ecosystems Collaborative Research Centre, University of Tasmania, Hobart, Tasmania, Australia
Abstract
Geoengineering to mitigate climate change has long been proposed, but remains nebulous. Exploration of the feasibility of geoengineering first requires the development of research governance to move beyond the conceptual towards scientifically designed pilot studies. Fortuitously, 12 mesoscale (approx. 1000 km
2
) iron enrichments, funded to investigate how ocean iron biogeochemistry altered Earth's carbon cycle in the geological past, provide proxies to better understand the benefits and drawbacks of geoengineering. The utility of these iron enrichments in the geoengineering debate is enhanced by the GEOTRACES global survey. Here, we outline how GEOTRACES surveys and process studies can provide invaluable insights into geoengineering. Surveys inform key unknowns including the regional influence and magnitude of modes of iron supply, and stimulate iron biogeochemical modelling. These advances will enable quantification of interannual variability of iron supply to assess whether any future purposeful multi-year iron-fertilization meets the principle of ‘additionality’ (
sensu
Kyoto protocol). Process studies address issues including upscaling of geoengineering, and how differing iron-enrichment strategies could stimulate wide-ranging biogeochemical outcomes. In summary, the availability of databases on both mesoscale iron-enrichment studies and the GEOTRACES survey, along with modelling, policy initiatives and legislation have positioned the iron-enrichment approach as a robust multifaceted test-bed to assess proposed research into climate intervention.
This article is part of the themed issue ‘Biological and climatic impacts of ocean trace element chemistry’.
Funder
Australian Research Council Australian Laureate Fellowship
European Union Seventh Framework Programme
Subject
General Physics and Astronomy,General Engineering,General Mathematics
Reference98 articles.
1. A serious look at geoengineering
2. Ranking geo-engineering schemes
3. Shepherd J et al. 2009 Geoengineering the climate: science governance and uncertainty. UK Royal Society RS Policy document 10/09 Issued: September 2009 RS1636.
4. IPCC. 2012 Meeting report of the intergovernmental panel on climate change expert meeting on geoengineering (eds O Edenhofer R Pichs-Madruga Y Sokona C Field V Barros TF Stocker Q Dahe J Minx K Mach G-K Plattner S Schlömer G Hansen M Mastrandrea) p. 99. Potsdam Germany: IPCC Working Group III Technical Support Unit Potsdam Institute for Climate Impact Research.
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