Physiological and climate controls on foliar mercury uptake by European tree species

Despite the importance of vegetation uptake of atmospheric gaseous elemental mercury (Hg(0)) within the global Hg cycle, little knowledge exists on the physiological, climatic, and geographic factors controlling stomatal uptake of atmospheric Hg(0) by tree foliage. We investigate controls on foliar...

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Hauptverfasser: Wohlgemuth, Lena, Rautio, Pasi, Ahrends, Bernd, Russ, Alexander, Vesterdal, Lars, Waldner, Peter, Timmermann, Volkmar, Eickenscheidt, Nadine, Fürst, Alfred, Greve, Martin, Roskams, Peter, Thimonier, Anne, Nicolas, Manuel, Kowalska, Anna, Ingerslev, Morten, Merilä, Päivi, Benham, Sue, Iacoban, Carmen, Hoch, Günter, Alewell, Christine, Jiskra, Martin
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Sprache:eng
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Zusammenfassung:Despite the importance of vegetation uptake of atmospheric gaseous elemental mercury (Hg(0)) within the global Hg cycle, little knowledge exists on the physiological, climatic, and geographic factors controlling stomatal uptake of atmospheric Hg(0) by tree foliage. We investigate controls on foliar stomatal Hg(0) uptake by combining Hg measurements of 3569 foliage samples across Europe with data on tree species' traits and environmental conditions. To account for foliar Hg accumulation over time, we normalized foliar Hg concentration over the foliar life period from the simulated start of the growing season to sample harvest. The most relevant parameter impacting daily foliar stomatal Hg uptake was tree functional group (deciduous versus coniferous trees). On average, we measured 3.2 times higher daily foliar stomatal Hg uptake rates in deciduous leaves than in coniferous needles of the same age. Across tree species, for foliage of beech and fir, and at two out of three forest plots with more than 20 samples, we found a significant (p
ISSN:1335-1353