Effect of CO 2 Inhibition of Isoprene Emission Air quality under 2000-2050 changes in climate, vegetation and land use Amos P. K. Tai (With Loretta Mickley,

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Effect of CO 2 Inhibition of Isoprene Emission Air quality under changes in climate, vegetation and land use Amos P. K. Tai (With Loretta Mickley, Colette Heald, Shiliang Wu) 6 th International GEOS-Chem Users’ Meeting May 7, 2013

Climate Change Will Worsen Ozone Air Quality  Ozone air quality will worsen by ppbv in polluted (high- NO x ) regions by 2050, driven mainly by higher temperature high NO x ozone Isoprene  At least half of such sensitivity is driven by increased isoprene emission in warmer climate  But recent studies suggest higher CO 2 levels may inhibit isoprene production in plants, at least partially offsetting increases due to warming

Elevated CO 2 Inhibits Isoprene Emission  Isoprene emission is suppressed at elevated CO 2 levels Normalized isoprene emission CO 2 concentration (ppmv) [Possell & Hewitt 2011] Observations of leaf isoprene emission at different ambient CO 2 levels Present-day level 2050 level -30%  Revise 2000-to-2050 ozone projections by incorporating this effect in MEGAN in GEOS-Chem: GISS climate GEOS-Chem LPJ vegetation 2050 A1B emissions and land use GCAP:

CO 2 Effect Reduces Ozone Sensitivity to Climate Change  Original projected ozone increase due to climate change: +6 ppbv max.  With CO 2 inhibition of isoprene emission: +3 ppbv max.  Ozone sensitivity to changes in climate (and natural vegetation) is reduced by >50% Without CO 2 effect With CO 2 effect With minus without 2000-to-2050 change in surface ozone (MDA8) due to climate change alone [Tai et al. submitted]

Land Use Change Can Become Key Ozone Driver  Land use change can offset or reverse in sign the effect of climate change on ozone air quality  Land use change can become key driver of ozone that can offset or enhance anthropogenic emissions control efforts Land use change effect 2000-to-2050 (A1B) changes in surface ozone Climate change effect +2 ppbv no change -3 ppbv -1 ppbv +2 ppbv +5 ppbv East US: West Europe: India: Southeast Asia: Anthropogenic emissions change: -5 ppbv -2 ppbv +30 ppbv