首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >From ocean to mantle: new evidence for U-cycling with implications for the HIMU source and the secular Pb isotope evolution of Earth's mantle
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From ocean to mantle: new evidence for U-cycling with implications for the HIMU source and the secular Pb isotope evolution of Earth's mantle

机译:从海洋到地幔:对HIMU来源的影响和地球地幔的世俗PB同位素演变具有新的证据

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摘要

Of the isotopically distinctive mantle domains, the so-called HIMU (“high-μ”; μ?=?238U/204Pb) source is the most extreme, and its genesis continues to be debated. We report very strong U enrichment at unchanged Th concentrations in Cretaceous oceanic serpentinites with exceptionally high206Pb/204Pb (reaching 56) but unchanged208Pb/204Pb. Similar, but less extreme, features are found in 1.9 billion years old altered oceanic crust (AOC). Forward modelling demonstrates that mantle, if metasomatised by supercritical liquids derived from AOC and serpentinites, evolves to the HIMU Pb isotope signatures, while satisfying experimental and empirical constraints on subduction zone element processing. By contrast, no model solutions for the conventional proposal of the HIMU source representing residual igneous altered oceanic crust can be reconciled with208Pb/204Pb, strengthening the need for a paradigm shift regarding HIMU OIB genesis. Over time, the net U addition to the convecting mantle via deeply subducted serpentinite has expressed itself as the so-called second terrestrial Pb isotope paradox, or kappa conundrum.
机译:在同位素上独特的地幔域,所谓的HIMU(“高μ”;μ?= 238U / 204pb)来源是最极端的,其成因仍在争论。我们在白垩纪海洋蛇纹石中报告了非常强大的URICHMENT,在白垩纪海洋蛇纹石中,具有极高的206pb / 204pb(达到56),但不变208pb / 204pb。类似但极端的特点是在110亿岁的海洋地壳(AOC)中发现了特征。前向建模表明,如果通过衍生自AOC和蛇形矿石的超临界液体衍生的裂缝,则演变为HIMU Pb同位素签名,同时满足俯冲区元素处理的实验和经验约束。相比之下,没有代表残留的火成岩改变的海洋地壳的常规提案的常规提案的模型解决方案可以与208pb / 204pb进行协调,加强对HIMU OIB成因的范式转变的需求。随着时间的推移,通过深层化脓的蛇形素对混乱地幔添加的网,表示自己是所谓的第二陆地PB同位素悖论,或kappa难题。

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