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首页> 外文期刊>Journal of Glaciology >Atmospheric influence on the deuterium excess signal in polar firn: implications for ice-core interpretation
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Atmospheric influence on the deuterium excess signal in polar firn: implications for ice-core interpretation

机译:大气对极地放电中氘过量信号的影响:对冰芯解释的影响

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The seasonal deuterium excess signal of fresh snow samples from Neumayer station, coastal Dronning Maud Land, Antarctica, was studied to investigate the relationship between deuterium excess and precipitation origin. An isotope model was combined with a trajectory model to determine the relative influence of different moisture sources on the mean annual course of the deuterium excess, focusing on the phase lag between delta O-18 and excess d. Whereas the annual course of delta O-18 always shows an austral summer maximum, which clearly depends on local temperature and the annual course of moisture source-area parameters, the deuterium excess of the fresh snow samples shows maximum values already in spring. There can be many different reasons for the time lag between delta O-18 and deuterium excess in an ice core, including post-depositional processes and changes in the moisture source of precipitation. The use of fresh snow samples enabled us to exclude post-depositional processes and study solely the influence of precipitation origin. Changes in the moisture source connected to systematic changes in the general atmospheric circulation can have a strong influence on the phase lag between deuterium excess and delta O-18, which has to be taken into account for climatic interpretation of stable-isotope profiles from ice cores.
机译:研究了南极德隆宁莫德海岸沿海诺伊迈尔站的新鲜积雪样品的季节性氘过量信号,以研究氘过量与降水起源之间的关系。将同位素模型与轨迹模型结合起来,确定不同水分源对氘过量平均年程的相对影响,重点是δO-18和过量d之间的相位滞后。三角洲O-18的年变化过程始终显示夏季的南半球最大值,这明显取决于当地温度和湿气源-面积参数的年变化曲线,而新鲜雪样品中氘的过量则显示了春季的最大值。冰芯中δO-18和氘过量之间的时间延迟可能有许多不同的原因,包括沉积后的过程以及降水水分来源的变化。使用新鲜的雪样使我们能够排除沉积后的过程,而仅研究降水源的影响。与一般大气循环的系统变化有关的水分源变化可能会对氘过量和O-18增量之间的相位滞后产生重大影响,在气候解释冰芯中的稳定同位素剖面时必须考虑到这一点。

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