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Change in dust seasonality as the primary driver for orbital-scale dust storm variability in East Asia

机译:粉尘季节性变化是东亚轨道尺度沙尘暴变化的主要驱动因素

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摘要

Glacial periods are recognized to be dustier than interglacials, but the conditions leading to greater dust mobilization are poorly defined. Here we present a new high-resolution dust record based on 230Th-normalized 4He flux from Ocean Drilling Program site 882 in the Subarctic North Pacific covering the last 170,000 years. By analogy with modern relationships, we infer the mechanisms controlling orbital-scale dust storm variability in East Asia. We propose that orbital-scale dust flux variability is the result of an expansion of the dust season into summer, in addition to more intense dust storms during spring and fall. The primary drivers influencing dust flux include summer insolation at subarctic latitudes and variable Siberian alpine glaciation, which together control the cold air reservoir in Siberia. Changes in the extent of the Northern Hemisphere ice sheets may be a secondary control.
机译:人们认为冰川期比间冰期更尘土飞扬,但导致更大的尘埃动员的条件却定义不清。在这里,我们根据北北极亚太平洋近海钻探计划站点882的230th归一化4He通量,提供了一个最近的高分辨率尘埃记录,涵盖了过去170,000多年。通过与现代关系的类比,我们推断出控制东亚轨道规模沙尘暴变化的机制。我们认为,轨道规模的尘埃通量变化是春季和秋季沙尘暴加剧以及夏季沙尘暴季节扩展的结果。影响尘埃通量的主要驱动因素包括北极地区夏季的日照和西伯利亚高山冰川的变迁,它们共同控制着西伯利亚的冷气库。北半球冰盖范围的变化可能是次要控制措施。

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