首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Influence of chemical weathering on the composition of the continental crust: Insights from Li and Nd isotopes in bauxite profiles developed on Columbia River Basalts
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Influence of chemical weathering on the composition of the continental crust: Insights from Li and Nd isotopes in bauxite profiles developed on Columbia River Basalts

机译:化学风化对大陆壳成分的影响:在哥伦比亚河玄武岩上开发的铝土矿剖面中的锂和钕同位素的见解

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Mineralogical, chemical, and Li and Nd isotopic compositions of two drill cores (8-9m deep) through bauxites developed on the Miocene Columbia River Basalts document the changes associated with basalt weathering, provide insights into the processes involved, and allow us to examine the overall influence of chemical weathering on juvenile (basaltic) crust. Gibbsite, hematite, ±kaolinite, halloysite, goethite, and maghemite are the weathering products in the bauxites. Quartz is observed near the tops of the cores and its abundance decreases progressively with depth; no quartz is observed below five meters depth in either core. Most major and trace elements, including "mobile" and some "immobile" elements are severely depleted in the bauxites. Niobium is less mobile relative to the rare earth elements, thus chemical weathering attenuates the negative Nb anomaly in the continental crust. Li and Nd are strongly depleted relative to fresh basalt, and both increase systematically towards the surface in the quartz-bearing samples while δ~7Li and ε_(Nd) values decrease systematically towards the surface in these same samples. Both Li and Nd were likely lost from the bauxites through leaching. The systematic enrichment of Li, Nd, and quartz, as well as the less radiogenic Nd isotopic composition at the tops of both profiles reflects 20-60wt.% addition of an eolian component to the soils. The eolian dust is unlikely to have experienced significant post-depositional weathering due to the relatively high Li contents near the tops of the profiles, and, therefore, the low δ~7Li and ε_(Nd) values suggest that the dust came from an old, weathered region of the continent. Our results demonstrate that lithium isotopes are sensitive tracers of chemical weathering, particularly in extreme weathering settings, and support the hypothesis that chemical weathering influences the mass and composition of the continental crust.
机译:通过在中新世哥伦比亚河玄武岩上开发的铝土矿的两个钻芯(深8-9m)的矿物学,化学以及Li和Nd同位素组成记录了与玄武岩风化有关的变化,提供了对所涉及过程的洞察力,并使我们能够研究化学风化对少年(玄武岩)地壳的总体影响。铝土矿中的风化产物为菱铁矿,赤铁矿,±高岭石,埃洛石,针铁矿和磁赤铁矿。石英在岩心顶部附近观察到,其丰度随着深度的增加而逐渐降低。在任何一个岩心的五米深处都没有观察到石英。铝土矿中的大多数主要和微量元素,包括“移动”元素和一些“固定”元素都被严重消耗。铌相对于稀土元素的流动性较小,因此化学风化作用减弱了大陆壳中的负Nb异常。相对于新鲜的玄武岩,Li和Nd严重耗竭,并且在含石英样品中,两者都朝着表面系统地增加,而在这些相​​同样品中,δ〜7Li和ε_(Nd)值朝着表面系统地减少。铝土矿中的锂和钕很可能通过浸出而损失掉。锂,钕和石英的系统富集,以及两种剖面顶部的放射性较低的钕同位素组成,都反映了向土壤中添加了20-60wt。%的风成成分。由于剖面顶部附近的锂含量较高,风积尘不太可能经历明显的沉积后风化,因此,较低的δ〜7Li和ε_(Nd)值表明尘土来自旧的,大陆风化的地区。我们的结果表明,锂同位素是化学风化的敏感示踪剂,特别是在极端风化条件下,并且支持化学风化影响陆壳质量和组成的假说。

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