TY - JOUR
T1 - Evidence for Impacts of Near-ambient Ozone Concentrations on Vegetation in Southern Sweden
AU - Karlsson, Per Erik
AU - Pleijel, Håkan
AU - Danielsson, Helena
AU - Pihl Karlsson, Gunilla
AU - Piikki, Kristin
AU - Uddling, Johan
PY - 2009
Y1 - 2009
N2 - Substantial impacts of near-ambient ozone concentrations on agricultural crops, trees, and seminatural vegetation are demonstrated for southern Sweden. Impacts of ambient ozone levels (2-15 mu L L(-1) hr annual accumulated ozone exposure over a threshold of 40 nL L(-1) [AOT40]) range from a 2%-10% reduction for trees (e.g., leaf chlorophyll, tree growth) up to a 15% reduction for crops (e.g., yield, wheat/potato). Visible leaf injury on bioindicator plants caused by ambient ozone levels has been clearly demonstrated. The humid climatic conditions in Sweden promote high rates of leaf ozone uptake at a certain ozone concentration. This likely explains the comparatively large ozone impacts found for vegetation in southern Sweden at relatively low ozone concentrations in the air. It is important that the future methods used for the representation of ozone impacts on vegetation across Europe are based on the leaf ozone uptake concept and not on concentration-based exposure indices, such as AOT40.
AB - Substantial impacts of near-ambient ozone concentrations on agricultural crops, trees, and seminatural vegetation are demonstrated for southern Sweden. Impacts of ambient ozone levels (2-15 mu L L(-1) hr annual accumulated ozone exposure over a threshold of 40 nL L(-1) [AOT40]) range from a 2%-10% reduction for trees (e.g., leaf chlorophyll, tree growth) up to a 15% reduction for crops (e.g., yield, wheat/potato). Visible leaf injury on bioindicator plants caused by ambient ozone levels has been clearly demonstrated. The humid climatic conditions in Sweden promote high rates of leaf ozone uptake at a certain ozone concentration. This likely explains the comparatively large ozone impacts found for vegetation in southern Sweden at relatively low ozone concentrations in the air. It is important that the future methods used for the representation of ozone impacts on vegetation across Europe are based on the leaf ozone uptake concept and not on concentration-based exposure indices, such as AOT40.
UR - https://res.slu.se/id/publ/59824
U2 - 10.1579/0044-7447-38.8.425
DO - 10.1579/0044-7447-38.8.425
M3 - Journal article
C2 - 20175441
SN - 0044-7447
VL - 38
SP - 425
EP - 432
JO - AMBIO: A Journal of the Human Environment
JF - AMBIO: A Journal of the Human Environment
IS - 8
ER -