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      The importance of the Montreal Protocol in protecting climate

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      Proceedings of the National Academy of Sciences
      Proceedings of the National Academy of Sciences

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          Abstract

          The 1987 Montreal Protocol on Substances that Deplete the Ozone Layer is a landmark agreement that has successfully reduced the global production, consumption, and emissions of ozone-depleting substances (ODSs). ODSs are also greenhouse gases that contribute to the radiative forcing of climate change. Using historical ODSs emissions and scenarios of potential emissions, we show that the ODS contribution to radiative forcing most likely would have been much larger if the ODS link to stratospheric ozone depletion had not been recognized in 1974 and followed by a series of regulations. The climate protection already achieved by the Montreal Protocol alone is far larger than the reduction target of the first commitment period of the Kyoto Protocol. Additional climate benefits that are significant compared with the Kyoto Protocol reduction target could be achieved by actions under the Montreal Protocol, by managing the emissions of substitute fluorocarbon gases and/or implementing alternative gases with lower global warming potentials.

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          Most cited references18

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          Large losses of total ozone in Antarctica reveal seasonal ClOx/NOx interaction

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            Stratospheric sink for chlorofluoromethanes: chlorine atom-catalysed destruction of ozone

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              On the depletion of Antarctic ozone

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                Author and article information

                Journal
                Proceedings of the National Academy of Sciences
                Proceedings of the National Academy of Sciences
                Proceedings of the National Academy of Sciences
                0027-8424
                1091-6490
                March 20 2007
                March 20 2007
                March 08 2007
                March 20 2007
                : 104
                : 12
                : 4814-4819
                Article
                10.1073/pnas.0610328104
                17360370
                33da7e25-0481-4f3c-9da8-924811e0e767
                © 2007
                History

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