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Angelo Finco

Researcher at Catholic University of the Sacred Heart

Publications -  40
Citations -  710

Angelo Finco is an academic researcher from Catholic University of the Sacred Heart. The author has contributed to research in topics: Stomatal conductance & Eddy covariance. The author has an hindex of 13, co-authored 37 publications receiving 493 citations. Previous affiliations of Angelo Finco include The Catholic University of America.

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Ozone uptake by an evergreen Mediterranean Forest (Quercus ilex) in Italy. Part I: Micrometeorological flux measurements and flux partitioning

TL;DR: Ozone, water and energy fluxes have been measured over a Mediterranean evergreen forest in Central Italy from August to October 2003 with the eddy-correlation technique in order to evaluate the amount of ozone taken up by plants in dry summer and mild autumn conditions as discussed by the authors.
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Vegetation feedbacks during drought exacerbate ozone air pollution extremes in Europe

TL;DR: In this paper, the authors used observations and Earth system model simulations for the period 1960-2018 to show that ecosystem-atmosphere interactions, especially reduced ozone removal by water-stressed vegetation, exacerbate ozone air pollution over Europe.
Journal ArticleDOI

Tropospheric Ozone Assessment Report: A critical review of changes in the tropospheric ozone burden and budget from 1850 to 2100

Alexander T. Archibald, +42 more
TL;DR: In this paper, the authors reviewed model simulations from the IGAC Atmospheric Chemistry and Climate Model Intercomparison Project and Chemistry Climate Modelling Initiative (CCMI) to assess the changes in the tropospheric ozone burden and its budget from 1850-2010.
Journal ArticleDOI

Comparison of seasonal variations of ozone exposure and fluxes in a Mediterranean Holm oak forest between the exceptionally dry 2003 and the following year

TL;DR: From a comparison of the two years, it can be inferred that water supply is the most important limiting factor for ozone uptake and that prolonged droughts alter significantly the stomatal conductance, even 2 months after the soil water content is replenished.
Posted ContentDOI

Vegetation feedbacks during drought exacerbate ozone air pollution extremes in Europe

TL;DR: In this article, the authors used observations and Earth system model simulations for the period 1960-2018 to show that ecosystem-atmosphere interactions, especially reduced ozone removal by water-stressed vegetation, exacerbate ozone air pollution over Europe.