Analysis: How much ‘carbon budget’ is left to limit global warming to 1.5C?
In 2015, by signing up to the Paris Agreement on climate change, nearly every country pledged to keep global temperatures “well below” 2C above pre-industrial levels and to “pursue efforts to limit the temperature increase even further to 1.5C”.Limiting warming to 1.5C requires strictly limiting the total amount of carbon emissions between now and the end of the century. However, there is more than one way to calculate this allowable amount of additional emissions, known as the “carbon budget”.While calculations based on Earth System Models (ESMs, see below) used in the last Intergovernmental Panel on Climate Change (IPCC) report suggest that we have only a few years left at our current rate of emissions before we blow the 1.5C carbon budget, some recent studies have suggested that the remaining carbon budget is much larger.In this article, Carbon Brief assesses nine new carbon budget estimates released by different groups over the past two years. Most show larger allowable emissions than were featured in the last IPCC report. A number of studies suggest that carbon budgets estimates based on ESMs may be on the low side as a result of limitations with how some models represent the carbon cycle.However, there is still a wide range of variation in these new carbon budgets, arising from differences in approaches, timeframes, estimates of warming to-date and other factors. Recent studies suggest the remaining carbon budget to limit warming to “well below” 1.5C might have already been exceeded by emissions to-date, or might be as large as 15 more years of emissions at our current rate.§ Many new estimates
strong relationshipclimate-cooling aerosolsnot performquite as wellsensitivity of the climate§ Earth system models
climate modelsCMIP5IPCC Fifth Assessment Reportnew studyProf Jason LoweDr Dan BernieMet Office Hadley CentreRepresentative Concentration Pathwaywas chosenGeneral Circulation Models (GCMs)have lower emissionshave actually occurredunderestimate of land or ocean carbon sinksjust about rightin a 2014 studyProf Pierre FriedlingsteinUniversity of Exeterprominently highlightedDr Richard Millarin a papercan make a considerable difference§ Estimates combining ESMs and observations
paper in 2017considerableamountofcontroversyhas been criticisedDr Andrew SchurerUniversity of EdinburghHadCRUT4global surface air temperatures§ Integrated assessment models
Integrated assessment modelsMAGICCrecently updatedDr Joeri RogeljIIASAensemble of modelsclimate sensitivity valuesovershoot 1.5Cnegative emissionscan cloud the assumptionsby about a decadedo not fully accountrecalculated“I would say that in my opinion this is an important area for further work by the community. It seems likely to be a combination of factors/definitional differences – as Dr Rogelj says – account for the difference between the IAM and non-IAM budgets, as both physical climate uncertainties and technical/societal uncertainties regarding how much we are able to reduce contributions to warming from non-CO2 matter to estimates of remaining budgets.”
recent commentaryDr Glen PetersCICERO Center for International Climate Research§ Challenge of defining 1.5C
Some reportswhile others§ Large uncertainties remain
conclusion of Millar and colleaguesclimate sensitivityhas arguedhas to reachUpdate 10/4/2018Goodwin et al studyMillar et alUpdate 11/4/2018Kriegler et alUpdate 23/7/2018Update 08/10/2018:hereArticle information
Studies surveyed
Millar, R. et al. (2017) Emission budgets and pathways consistent with limiting warming to 1.5C, Nature Geophysics, doi:10.1038/ngeo3031
Matthews, H.D., et al. (2017) Estimating Carbon Budgets for Ambitious Climate Targets, Current Climate Change Reports, doi:10.1007/s40641-017-0055-0
Goodwin, P., et al. (2018) Pathways to 1.5C and 2C warming based on observational and geological constraints, Nature Geophysics, doi:10.1038/s41561-017-0054-8
Schurer, A.P., et al. (2018) Interpretations of the Paris climate target, Nature Geophysics, doi:10.1038/s41561-018-0086-8
Tokarska, K., and Gillett, N. (2018) Cumulative carbon emissions budgets consistent with 1.5C global warming, Nature Climate Change, doi:10.1038/s41558-018-0118-9
Millar, R., and Friedlingstein, P. (2018) The utility of the historical record for assessing the transient climate response to cumulative emissions, Philosophical Transactions of the Royal Society A, doi:10.1098/rsta.2016.0449
Lowe, J.A., and Bernie, D. (2018) The impact of Earth system feedbacks on carbon budgets and climate response, Philosophical Transactions of the Royal Society A, doi:10.1098/rsta.2017.0263
Rogelj, J., et al. (2018) Scenarios towards limiting global mean temperature increase below 1.5C, Nature Climate Change, doi:10.1038/s41558-018-0091-3
Kriegler, E., et al. (2018) Pathways limiting warming to 1.5°C: A tale of turning around in no time, Philosophical Transactions of the Royal Society A, doi:10.1098/rsta.2016.0457
Richardson, M., et al. (2018). Global temperature definition affects achievement of long-term climate goals. Environmental Research Letters, doi:10.1088/1748-9326/aab305
Peters, G. (2018). Beyond carbon budgets. Nature Geoscience. doi:10.1038/s41561-018-0142-4
Leach, N. (2018). Current level and rate of warming determine emissions budgets under ambitious mitigation. Nature Geoscience. doi:10.1038/s41561-018-0156-y