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Controls on Deuterium Excess across Asia

机译:整个亚洲对氘过量的控制

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摘要

Deuterium excess (d-excess) is a second-order stable isotope parameter measured in meteoric water to understand both the source of precipitation and the evolution of moisture during transport. However, the interpretation of d-excess patterns in precipitation is often ambiguous, as changes in moisture source and processes during vapor transport both affect d-excess in non-unique ways. This is particularly true in Asia where continental moisture travels a long distance across diverse environments from unique moisture sources before falling as precipitation. Here, I analyzed published d-excess records from meteoric water throughout Asia to better characterize what influences d-excess values. I conclude that, (1) an increase in d-excess values with elevation up the windward side of mountain ranges and a marked decrease in d-excess into their rain shadows are primarily related to subcloud evaporation as opposed to moisture source mixing; (2) high d-excess values (10‰) associated with the eastern Mediterranean Sea are lowered across much of Central Asia by the addition of other moisture sources, both oceanic and recycled continental; (3) subcloud evaporation of raindrops is lowering d-excess values of precipitation (10‰) throughout the relatively arid Tarim Basin, China; and (4) temporal changes in d-excess values of alpine glaciers do reflect spatio-temporal changes in moisture source, as these samples experience minimal variation in subcloud evaporation.
机译:氘过量(d-过量)是在流水中测量的二阶稳定同位素参数,用于了解运输过程中的降水来源和水分演变。但是,对降水中d过量模式的解释通常是模棱两可的,因为蒸汽输送过程中水分源和过程的变化都以非唯一方式影响d过量。在亚洲尤为如此,在亚洲大陆,水分从独特的水分源出发,在不同的环境中经过很长的距离,然后才以降水的形式落下。在这里,我分析了整个亚洲地区流水中已公布的d过量记录,以更好地描述影响d过量值的因素。我得出以下结论:(1)d过量值随山脉上风向高处的升高而增加,d过量量显着减少到其雨影中,这主要与亚云蒸发有关,而不是与水分源混合有关。 (2)在中亚大部分地区,通过增加海洋和再生大陆的其他水分来源,降低了与东地中海有关的高d-值(> 10‰)。 (3)在整个干旱的塔里木盆地,雨滴的亚云蒸发正在降低降水的d超值(<10‰); (4)高山冰川d过量值的时间变化确实反映了水分源的时空变化,因为这些样品的亚云蒸发量变化很小。

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