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Contemporary glacigenic inputs to the dust cycle

机译:尘埃循环的当代冰川成因投入

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The importance of glacigenic dust in the Earth's system during glacial periods is widely acknowledged. Under contemporary conditions, the world's largest dust sources are in low-lying, hot, arid regions and this is where most aeolian research is focused. However the processes of dust production and emissions are still operating in cold climate regions, particularly in proglacial areas. This paper assesses current understanding of the relationship between glacierised landscapes and dust emissions and inputs to the global dust cycle. It focuses on how elements in the glacial and aeolian geomorphic sub-systems interact to determine the magnitude, frequency and timing of aeolian dust emissions, and on feedback mechanisms between the systems. Where they have been measured, dust emission intensity and deposition rates in glacierised catchments are very high, in some cases far exceeding those in lower latitudes, however, few studies span long time scales. The impact of future glacier retreat on the balance between sediment supply, availability and aeolian transport capacity and implications for glacigenic dust emissions is also considered. This balance depends on relative spatial and temporal changes in meltwater suspended sediment concentration and wind strengths, which promote dust emissions, and patterns and rates of soil development and vegetation succession on recently-deglaciated terrain which protect sediments from deflation. Retreat of the Antarctic ice sheet could mean that in future glacigenic contributions to the dust cycle exceed those of non-glacigenic sources in the southern hemisphere.
机译:在冰川期,冰川生成尘埃在地球系统中的重要性已广为人知。在当代条件下,世界上最大的粉尘源位于地势低矮,炎热,干旱的地区,这是大多数风沙研究的重点。但是,粉尘的产生和排放过程仍在寒冷的气候地区(特别是冰河地区)进行。本文评估了对冰川景观与粉尘排放之间的关系以及全球粉尘循环输入的当前理解。它着重于冰川和风沙地貌子系统中的元素如何相互作用,以确定风沙尘埃排放的大小,频率和时间,以及系统之间的反馈机制。在进行测量的地方,冰川集水区的粉尘排放强度和沉积速率非常高,在某些情况下远远超过了低纬度地区,但是很少有研究涉及较长的时间尺度。还考虑了未来冰川退缩对沉积物供应,可利用性和风沙运输能力之间的平衡的影响,以及对冰川成尘排放的影响。这种平衡取决于融水中悬浮的沉积物浓度和风强度的相对时空变化,这会促进粉尘的排放,以及在最近冰化的地形上土壤发育和植被演替的模式和速率,可以保护沉积物免于通气。南极冰原的退缩可能意味着将来对尘埃循环的冰川成因超过了南半球的非冰川成因。

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