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Contribution of light-absorbing impurities in snow to Greenland’s darkening since 2009

机译:自2009年以来,雪中的吸光杂质对格陵兰岛变黑的贡献

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The surface energy balance and mass balance of the Greenland ice sheet depends on the albedo of snow, which governs the amount of solar energy that is absorbed. The observed decline of Greenland’s albedo over the past decade~(1–3) has been attributed to an enhanced growth of snow grains as a result of atmosphericwarming~(1,2). Satellite observations showthat, since 2009, albedo values even in springtime at high elevations have been lower than the 2003–2008 average. Here we show, using a numerical snow model, that the decrease in albedo cannot be attributed solely to grain growth enhancement. Instead, our analysis of remote sensing data indicates that the springtime darkening since 2009 stems from a widespread increase in the amount of light-absorbing impurities in snow, as well as in the atmosphere. We suggest that the transport of dust from snow-free areas in the Arctic that are experiencing earlier melting of seasonal snow cover~4 as the climate warms may be a contributing source of impurities. In our snow model simulations, a decrease in the albedo of fresh snow by 0.01 leads to a surface mass loss of 27 Gt yr~(-1), which could induce an acceleration of Greenland’s mass loss twice as large as over the past two decades5. Future trends in light-absorbing impurities should therefore be considered in projections of Greenland mass loss.
机译:格陵兰冰原的表面能平衡和质量平衡取决于雪的反照率,而雪的反照率决定着吸收的太阳能量。格陵兰岛的反照率在过去十年中(1-3年)下降,这归因于大气变暖导致的雪粒生长增强(1,2)。卫星观测表明,自2009年以来,即使在春季高海拔地区,反照率值也低于2003-2008年的平均值。在这里,我们使用数值雪模型显示,反照率的下降不能仅归因于谷物生长的增强。取而代之的是,我们对遥感数据的分析表明,自2009年以来的春季变暗是由于雪中以及大气中光吸收杂质的数量大量增加。我们建议,随着气候变暖,来自北极无雪地区的粉尘运输会经历季节性降雪〜4的较早融化,这可能是杂质的一个来源。在我们的雪模型模拟中,新鲜雪的反照率降低0.01导致表面质量损失27 Gt yr〜(-1),这可能导致格陵兰岛的质量损失加速了过去二十年的两倍5 。因此,在格陵兰质量损失的预测中应考虑光吸收杂质的未来趋势。

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