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Evaluation of Oxygen Stable-Isotope Fractionation Among Co-existed Carbonates in the Sediments of Lake Qinghai

机译:青海湖沉积物中共存碳酸盐中氧稳定同位素分馏的评价

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Mineralogical examination and stable isotope analyses for the Lake Qinghai sediments indicate that authigenic carbonate minerals are present either in the form of one type or several types co-existed in the sediments, and that large differences inδ~(180) of up to 6.5%o are shown for selected sediment samples. Theseδ~(180) values are highly and positively correlated with total carbonate contents (TCC) and are not affected by shifts in carbonate mineral composition, indicating that oxygen stable-isotope fractionation among different carbonate minerals is minimum. The results suggest that marked changes in carbonateδ~(18)O are resulted predominantly from changes in isotopic composition of the lake water, and that differentiatedδ~(180) values resulted possibly from isotope fractionation among co-existed carbonates formed in natural environmental conditions are limited to 0-l‰ Theδ~(18)O proved to be a useful environmental proxy for the study of the past changes in P-E budget of closed-basin lakes.
机译:青海沉积物矿物学检测和稳定同位素分析表明,Aheyigenic碳酸盐矿物质以一种类型或几种类型的沉积物中存在的形式存在,并且δ〜(180)的大差异高达6.5%O.显示为选定的沉积物样品。这些δ〜(180)值与总碳酸盐含量(TCC)高度且呈正相关,并且不受碳酸盐矿物组合物中的变化的影响,表明不同碳酸盐矿物质之间的氧稳定同位素分级最小。结果表明碳酸盐δ〜(18)o的显着变化主要是从湖水同位素组成的变化中产生的,并且差异化Δ〜(180)值可能来自在天然环境条件中形成的共存碳酸酯中的同位素分级。限于0-L‰Theδ〜(18)o被证明是研究封闭盆地PE预算过去变化的有用环境代理。

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