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The genesis of LCT-type granitic pegmatites, as illustrated by lithium isotopes in micas

机译:LCT型花岗岩伟晶岩的成因,如云母中的锂同位素所示

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Isotopic compositions in the Monts d'Ambazac Pegmatite Field (French Massif Central) exhibit a narrow range of mica delta Li-7 values, ranging from -3.6 to + 3.4 parts per thousand. The value obtained in biotite from the host Saint Sylvestre granite falls within this range (delta Li-7 = -1.5 parts per thousand). Lithium concentrations are consistent with the degree of magmatic evolution of each pegmatite type: from 630 ppm in Type II up to 13,500 ppm in the more evolved Type VI pegmatite. Although the rare-element contents e.g., Li, Cs and Ta of the micas are consistent with pegmatite differentiation, delta Li-7 (parts per thousand) are firstly, independent of the degree of magmatic differentiation (independent of pegmatite type) and secondly, independent of the content of Li and other flux-elements such as Be and Cs. Muscovite sampled in pegmatite V from the Chabannes locality is the only pegmatite to exhibit a delta Li-7 variation from an intermediate unit (-1.7 parts per thousand) to an internal pegmatitic unit (+ 3.4 parts per thousand). The nature of this delta Li-7 variation suggests that there was extensive fractional crystallization during the pegmatite's consolidation. The independence of delta Li-7 (parts per thousand) evolution from the degree of magmatic evolution and the presence of distinct major rare-element bearing phases throughout the pegmatite field tend to confirm that the delta Li-7 (parts per thousand) values recorded in mica are inherited from crustal source rocks common to the granite and pegmatite-forming melts. We propose that the distinct pegmatite subtypes (beryl columbite vs lepidolite-petalite subtypes) observed throughout the Monts d'Ambazac Pegmatite Field reflect the diverse contributions of crustal protoliths. The lack of evidence of surrounding alteration combined with the absence of increasing Li-content within the host granite tends to confirm that the delta Li-7 values obtained within this pegmatite field are primary, and that no Li-diffusional process and/or mixing-driven Li-isotope fractionation has overprinted these isotopic compositions. In light of these results, the process of partial melting of protoliths enriched in rare-element bearing phases, e.g., mica and garnet, seems to be more responsible for Li-isotope fractionation than Li-diffusion or fractional crystallization at the temperature of pegmatite consolidation. Finally, we discuss the use of Li isotopic compositions to identify the most highly evolved pegmatitic systems. (C) 2015 Elsevier B.V. All rights reserved.
机译:Monts d'Ambazac伟晶岩田(法国地块中部)的同位素组成显示云母δLi-7值范围狭窄,范围为-3.6至+ 3.4千分之几。从主体圣西尔维斯特花岗岩获得的黑云母的值在该范围内(δLi-7 = -1.5千分之一)。锂的浓度与每种伟晶岩的岩浆演化程度是一致的:从II型的630 ppm到演化程度更高的VI型的伟晶岩达到13,500 ppm。尽管云母的Li,Cs和Ta等稀有元素含量与伟晶岩的分化一致,但δLi-7(千分之一)首先与岩浆分化程度无关(与伟晶岩类型无关),其次,与Li的含量以及Be和Cs等其他通量元素无关。从Chabannes地点在伟晶岩V中取样的白云母是唯一表现出从中间单位(-1.7千分之一)到内部伟晶岩单位(+ 3.4千分之一)δ7δ变异的伟晶岩。 Li-7δ变异的性质表明,伟晶岩固结过程中存在大量的分步结晶。从岩浆演化的程度和整个伟晶岩田中存在独特的主要稀有元素生相的角度来看,δ7 Li(千分之几)演化的独立性倾向于证实所记录的δ7 Li 3(千分之几)值云母中的云母是从花岗岩和伟晶岩形成的熔体共有的地壳烃源岩中继承而来的。我们建议,在整个Monts d'Ambazac伟晶岩田中观察到的独特的伟晶岩亚型(绿柱石柱石vs锂云母-蓬莱石亚型)反映了地壳原生岩的不同贡献。缺乏周围蚀变的证据以及基质花岗岩中Li含量的增加,倾向于证实该伟晶岩田中获得的δLi-7值是主要的,并且没有Li扩散过程和/或混合-驱动的锂同位素分馏已经覆盖了这些同位素组成。根据这些结果,富集稀有元素相(例如云母和石榴石)的原生石的部分熔融过程似乎比锂扩散或在伟晶岩固结温度下的分步结晶更负责锂同位素分馏。 。最后,我们讨论了使用Li同位素组成来识别发展最快的岩溶体系。 (C)2015 Elsevier B.V.保留所有权利。

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