A proposed new mineralogical classification system for granitic pegmatites

M. Wise, A. Müller, W. Simmons
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引用次数: 20

Abstract

The current classification of granitic pegmatites, originally introduced by Černý (1991a), has been the accepted system for grouping pegmatites of diverse mineralogy and chemistry for nearly three decades. Despite its general acceptance, several issues have been highlighted (Müller et al. 2022) which have imposed some limitations on its use and therefore necessitated the need to reevaluate its methodology. A new classification for granitic pegmatites is proposed in an attempt to be more inclusive of pegmatite types omitted in previous classification schemes. The new approach utilizes a more comprehensive suite of accessory minerals and defines three pegmatite groups which are genetically related to granite plutons and the anatexis of metaigneous and metasedimentary protoliths. Pegmatites belonging to Groups 1 and 2 are generated from the residual melts of S-, A-, and I-type granite magmatism (RGM) as well as being direct products of anatexis (DPA), whereas Group 3 pegmatites are only derived by anatexis.
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花岗岩伟晶岩新的矿物学分类体系
目前的花岗质伟晶岩分类最初是由Černý (1991a)提出的,近三十年来,它一直是对不同矿物学和化学性质的伟晶岩进行分组的公认系统。尽管其被普遍接受,但仍有几个问题被强调(m勒等人,2022),这些问题对其使用施加了一些限制,因此有必要重新评估其方法。本文提出了一种新的花岗质伟晶岩分类方法,试图将以往分类方案中遗漏的伟晶岩类型包括在内。新方法利用了一套更全面的辅助矿物,并定义了三个伟晶岩群,它们与花岗岩岩体和变质岩和变质沉积原岩的深熔有关。第1组和第2组伟晶岩由S型、A型和i型花岗岩岩浆作用(RGM)的残余熔体形成,是深熔作用(DPA)的直接产物,而第3组伟晶岩仅由深熔作用形成。
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