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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Uplift-driven climate change at 12 Ma: a long δ~(18)O record from the NE margin of the Tibetan plateau
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Uplift-driven climate change at 12 Ma: a long δ~(18)O record from the NE margin of the Tibetan plateau

机译:12 Ma的隆升驱动的气候变化:青藏高原东北缘的δ〜(18)O长记录

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摘要

Carbonates from fluvial and lacustrine sediments were sampled from multiple measured sections in the Linxia basin of western China. Based on textural and mineralogical evidence, lacustrine carbonates are primary precipitates from lake water, A 29 million hear record of the oxygen isotope composition of meteoric water is inferred from the δ~(18)O values of these carbonates. This inference is based on the most negative δ~(18)O values in the lake carbonates, which represent lake waters that have experienced he least evaporative enrichment. Carbonate δ~(18)O values, a proxy for rainfall δ~(18)O, are ~-10.5‰ throughout the interval of 29-12 Mas. At 12 Ma there is a shift to -9‰, a value that remains into the Pliocene. This implies a major reorganization of atmospheric circulation patterns and a shift to more arid conditions at the NE margin of the Tibetan plateau with the post-12 Ma system similar to that of today. The 12 Ma event may represent the time at which the Tibetan plateau achieves sufficient elevation to block the penetration of moisture from the Indian Ocean or aspout Pacific into western China. The period of greatest aridity is from 9.6 to 8.2 Ma, a time interval which agrees well with other climate records.
机译:河流和湖相沉积物中的碳酸盐是从中国西部临夏盆地的多个测量断面中取样的。根据质地和矿物学证据,湖相碳酸盐是湖水中的主要沉淀物,从这些碳酸盐的δ〜(18)O值可以推断出2,900万听觉记录的陨石水的氧同位素组成。该推论是基于碳酸盐湖中最负的δ〜(18)O值,这表示蒸发蒸发最少的湖水。碳酸盐δ〜(18)O值是降雨δ〜(18)O的代表,在29-12 Mas的整个时间间隔内约为〜-10.5‰。在12 Ma时移至-9‰,该值保留在上新世。这意味着青藏高原东北缘的大气环流模式将发生重大重组,并转向更干旱的条件,即12Ma后的系统与今天的系统类似。 12 Ma事件可能代表青藏高原达到足够的海拔高度以阻止水分从印度洋或asppout太平洋渗透到中国西部的时间。最干旱的时期是9.6至8.2 Ma,这个时间间隔与其他气候记录非常吻合。

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