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Spatial and temporal ~2H and ~(18)O isotope variation of contemporary precipitation in the Bale Mountains, Ethiopia

机译:空间和颞〜2h和〜(18)O同位素在埃塞俄比亚渤去当代降水的同位素变化

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摘要

East Africa is an underrepresented region in respect of monitoring the stable isotopic composition of precipitation (delta O-18(prec) and delta H-2(prec)). In 2017, we collected precipitation samples from ten weather stations located along an altitudinal transect ranging from 1304 to 4375 m a.s.l. The delta O-18(prec) and delta H-2(prec) values varied from -8.7 to +3.7 parts per thousand and -38 to +29 parts per thousand, respectively. The local meteoric water line is characterised by a lower slope, a higher intercept and more positive d-excess values (delta H-2 = 5.3 +/- 0.2 * delta O-18 + 14.9 +/- 0.9) compared to the global meteoric water line. Both altitude and amount of precipitation clearly correlate with our isotope data. However, the delta O-18(prec) and delta H-2(prec) values show at the same time a seasonal pattern reflecting rainy versus dry season. More enriched isotope values prevailed shortly after the end of the dry season; more depleted isotope values coincided with high precipitation amounts recorded in May, August and September. Moreover, HYSPLIT trajectories reveal that during the dry season water vapour originates primarily from the Arabian Sea, whereas during the wet season it originates primarily from the Southern Indian Ocean. These findings challenge the traditional amount effect interpretation of paleoclimate isotope records from East Africa and rather point to a previously underestimated source effect.
机译:东非是监测稳定同位素组成的沉淀(Delta O-18(pH)和Delta H-2(PRED))的不足区域。 2017年,我们从位于1304至4375米A.L的平坦横断面的10个气象站收集了降水样本。 Delta O-18(phart)和Delta H-2(phart)值分别从-8.7至+3.7份,分别变化至-3.7份,分别为-38至+29份。局部流量水线的特征在于较低的斜率,更高的截距和更高的D-过量值(Delta H-2 = 5.3 +/- 0.2 * Delta O-18 + 14.9 +/- 0.9)与全球陨石相比水线。沉淀的海拔和沉淀量都与我们的同位素数据明显相关。然而,Delta O-18(phart)和Delta H-2(Phart)值同时显示反映雨季与旱季的季节性模式。在干燥季节结束后,更富集的同位素值持续;更耗尽的同位素值与5月,8月和9月记录的高降水量相吻合。此外,HySplit轨迹揭示了在干燥的季节期间,水蒸气主要来自阿拉伯海,而在潮湿的季节,它主要来自印度洋南方印度洋。这些调查结果挑战了来自东非的古古代同位素记录的传统效应解释,而是指向以前低估的源效应。

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