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The complex response of Arctic aerosol to sea-ice retreat

机译:北极气溶胶对海冰撤退的复杂反应

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Loss of summertime Arctic sea ice will lead to a large increase in the emission of aerosols and precursor gases from the ocean surface. It has been suggested that these enhanced emissions will exert substantial aerosol radiative forcings, dominated by the indirect effect of aerosol on clouds. Here, we investigate the potential for these indirect forcings using a global aerosol microphysics model evaluated against aerosol observations from the Arctic Summer Cloud Ocean Study (ASCOS) campaign to examine the response of Arctic cloud condensation nuclei (CCN) to sea-ice retreat. In response to a complete loss of summer ice, we find that north of 70° N emission fluxes of sea salt, marine primary organic aerosol (OA) and dimethyl sulfide increase by a factor of ~ 10, ~ 4 and ~ 15 respectively. However, the CCN response is weak, with negative changes over the central Arctic Ocean. The weak response is due to the efficient scavenging of aerosol by extensive drizzling stratocumulus clouds. In the scavenging-dominated Arctic environment, the production of condensable vapour from oxidation of dimethyl sulfide grows particles to sizes where they can be scavenged. This loss is not sufficiently compensated by new particle formation, due to the suppression of nucleation by the large condensation sink resulting from sea-salt and primary OA emissions. Thus, our results suggest that increased aerosol emissions will not cause a climate feedback through changes in cloud microphysical and radiative properties.
机译:夏季北极海冰的丧失将导致来自海洋表面的气溶胶和前体气体排放量大。有人提出,这些增强的排放将施加大量的气溶胶辐射强制,其由气溶胶对云间的间接效应为主。在这里,我们使用来自北极夏季云海洋研究(ASCOS)运动的全球气溶胶微型药物模型来研究这些间接强制的可能性,从北极夏季云海洋研究(ASCOS)运动,以检查北极云凝结核(CCN)对海冰撤退的响应。为了应对夏季冰的完全丧失,我们发现北方70°N的海盐,海洋原发性有机气溶胶(OA)和二甲基硫醚分别增加了〜10,〜4和〜15的因子。然而,CCN反应弱,中央北冰洋的负面变化。弱响应是由于广泛的毛毛雨的划分性云层的高效清除气溶胶。在清除标准的北极环境中,从氧化二甲基硫化物的氧化产生可冷凝蒸汽的颗粒以便可以清除的尺寸。由于海盐和初级OA排放产生的大缩合水槽抑制,这种损失不充分补偿新的颗粒形成。因此,我们的结果表明,通过云微动物和辐射性能的变化,增加气溶胶排放不会引起气候反馈。

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