Success of montreal protocol demonstrated by comparing high-quality uv measurements with \"world avoided\" calculations from two chemistry-climate models

The Montreal Protocol on Substances that Deplete the Ozone Layer has been hailed as the most successful environmental treaty ever ( https://www.unenvironment.org/news-and-stories/story/montreal-protocol-triumph-treaty ). Yet, although our main concern about ozone depletion is the subsequent increase...

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Bibliographic Details
Main Authors: Mckenzie, Richard, Bernhard, Germar, Liley, Ben, Disterhoft, Patrick, Rhodes, Steve, Bais, Alkiviadis, Morgenstern, Olaf, Newman, Paul, Oman, Luke, Brogniez, Colette, Simic, Stana
Other Authors: CNRS, Université de Lille, National Institute of Water and Atmospheric Research Wellington NIWA, Laboratoire d'Optique Atmosphérique (LOA) - UMR 8518, National Institute of Water and Atmospheric Research Lauder NIWA, Cooperative Institute for Research in Environmental Sciences CIRES, National Oceanic and Atmospheric Administration NOAA, Australian Bureau of Meteorology Melbourne BoM, Aristotle University of Thessaloniki, NASA Goddard Space Flight Center GSFC, Universität für Bodenkultur Wien = University of Natural Resources and Life Vienne, Autriche BOKU
Format: Article in Journal/Newspaper
Language:English
Published: 2024
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Online Access:https://hdl.handle.net/20.500.12210/105041
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Summary:The Montreal Protocol on Substances that Deplete the Ozone Layer has been hailed as the most successful environmental treaty ever ( https://www.unenvironment.org/news-and-stories/story/montreal-protocol-triumph-treaty ). Yet, although our main concern about ozone depletion is the subsequent increase in harmful solar UV radiation at the Earth's surface, no studies to date have demonstrated its effectiveness in that regard. Here we use long-term UV Index (UVI) data derived from high-quality UV spectroradiometer measurements to demonstrate its success in curbing increases in UV radiation. Without this landmark agreement, UVI values would have increased at mid-latitude locations by approximately 20% between the early 1990s and today and would approximately quadruple at mid-latitudes by 2100. In contrast, an analysis of UVI data from multiple clean-air sites shows that maximum daily UVI values have remained essentially constant over the last ~20 years in all seasons, and may even have decreased slightly in the southern hemisphere, especially in Antarctica, where effects of ozone depletion were larger. Reconstructions of the UVI from total ozone data show evidence of increasing UVI levels in the 1980s, but unfortunately, there are no high-quality UV measurements available prior to the early 1990s to confirm these increases with direct observations. 9;