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首页> 外文期刊>The Journal of Geology: a semi-quarterly magazine of geology and related sciences >Major Element,REE,a nd Other Trace Element Behavior in Amphibolite Weathering under Semiarid Conditions in Southern India
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Major Element,REE,a nd Other Trace Element Behavior in Amphibolite Weathering under Semiarid Conditions in Southern India

机译:印度南部半干旱条件下角闪石风化的主要元素,稀土元素及其他微量元素行为

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摘要

A body of komatiitic amphibolite, an enclave within the Archean high-grade orthogneisses in southern India, shows mild chemical weathering under semiarid conditions. Along fractures, chemical weathering has advanced (Chemical Index of Alteration [CIA] = 53j CIA of fresh rock -26) to the extent that secondary Mg-Fe-Al clay minerals have formed and the rock has turned brownish red, soft, and fine grained. The weathering process has resulted in the mobilization and redistribution of the so-called immobile elements Fe, AL Ti, and REE effected by the nature of secondary mineral formation (talc vs. aluminous clay minerals) and also possibly by soil microbes. In the initial stages of secondary mineral formation, there is a small loss of Fe, Al, and REE (noticeably Eu). However, in the fracture zone as well as in the incipiently altered zone, there is significant REE enrichment, probably effected by different precipitation mechanisms. Mobilized REE may have come from a minor alteration of clinopyroxene.
机译:在印度南部的太古代高品质正长片麻岩中的一块飞地闪闪的角闪石体在半干旱条件下显示出温和的化学风化作用。沿着裂缝,化学风化已经发展(化学变化指数[CIA] = 53j新鲜岩石的CIA -26)达到一定程度,形成了次级Mg-Fe-Al粘土矿物,并且岩石变成棕红色,软而细的粒状的。风化过程导致了所谓的固定元素Fe,AL Ti和REE的动员和重新分布,这些元素受次生矿物形成的性质(滑石与铝质粘土矿物的影响)以及土壤微生物的影响。在次生矿物形成的初始阶段,Fe,Al和REE(特别是Eu)损失很小。然而,在断裂带以及初期变化的带中,有大量的稀土元素富集,这可能是由于不同的降水机制所致。动员的REE可能是由次氯环己烯的微小变化引起的。

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