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      Albedo reduction as an important driver for glacier melting in Tibetan Plateau and its surrounding areas

      , , , ,
      Earth-Science Reviews
      Elsevier BV

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          Bounding the role of black carbon in the climate system: A scientific assessment

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            Different glacier status with atmospheric circulations in Tibetan Plateau and surroundings

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              Soot climate forcing via snow and ice albedos.

              Plausible estimates for the effect of soot on snow and ice albedos (1.5% in the Arctic and 3% in Northern Hemisphere land areas) yield a climate forcing of +0.3 W/m(2) in the Northern Hemisphere. The "efficacy" of this forcing is approximately 2, i.e., for a given forcing it is twice as effective as CO(2) in altering global surface air temperature. This indirect soot forcing may have contributed to global warming of the past century, including the trend toward early springs in the Northern Hemisphere, thinning Arctic sea ice, and melting land ice and permafrost. If, as we suggest, melting ice and sea level rise define the level of dangerous anthropogenic interference with the climate system, then reducing soot emissions, thus restoring snow albedos to pristine high values, would have the double benefit of reducing global warming and raising the global temperature level at which dangerous anthropogenic interference occurs. However, soot contributions to climate change do not alter the conclusion that anthropogenic greenhouse gases have been the main cause of recent global warming and will be the predominant climate forcing in the future.
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                Author and article information

                Journal
                Earth-Science Reviews
                Earth-Science Reviews
                Elsevier BV
                00128252
                September 2021
                September 2021
                : 220
                : 103735
                Article
                10.1016/j.earscirev.2021.103735
                2c4a0efa-a549-48dc-a013-613322112f50
                © 2021

                https://www.elsevier.com/tdm/userlicense/1.0/

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