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Formation of the worlds largest REE deposit through protracted fluxing of carbonatite by subduction-derived fluids

机译:俯冲衍生流体通过长期渗透碳酸盐岩形成世界上最大的稀土矿床

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摘要

Rare Earth Elements (REE) are essential to modern society but the origins of many large REE deposits remain unclear. The U-Th-Pb ages, chemical compositions and C, O and Mg isotopic compositions of Bayan Obo, the world's largest REE deposit, indicate a protracted mineralisation history with unusual chemical and isotopic features. Coexisting calcite and dolomite are in O isotope disequilibrium; some calcitic carbonatite samples show highly varied δ26Mg which increases with increasing Si and Mg; and ankerite crystals show decreases in Fe and REE from rim to centre, with highly varied REE patterns. These and many other observations are consistent with an unusual mineralisation process not previously considered; protracted fluxing of calcitic carbonatite by subduction-released high-Si fluids during the closure of the Palaeo-Asian Ocean. The fluids leached Fe and Mg from the mantle wedge and scavenged REE, Nb and Th from carbonatite, forming the deposit through metasomatism of overlying sedimentary carbonate.
机译:稀土元素(REE)对现代社会至关重要,但许多大型REE矿床的起源仍不清楚。世界上最大的稀土矿床——Bayan Obo的U-Th-Pb年龄,化学组成以及C,O和Mg同位素组成表明矿化历史悠久,具有异常的化学和同位素特征。方解石和白云石共存于O同位素不平衡中。一些钙质碳酸盐岩样品的δ 26 Mg变化很大,并且随着Si和Mg的增加而增加。钙铁矿晶体的Fe和REE从边缘到中心都有减少,并且REE模式变化很大。这些和许多其他观察结果与以前未曾考虑过的异常矿化过程相一致。在古亚洲洋关闭期间,俯冲释放的高硅流体长期延缓了钙质碳酸盐岩的助熔作用。流体从地幔楔中浸出了铁和镁,并从碳酸盐岩中清除了REE,Nb和Th,通过上覆沉积碳酸盐的交代作用形成了矿床。

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