Metamorphic facies: A review and some suggestions for changes

IF 1.1 4区 地球科学 Q3 MINERALOGY
E. Ghent
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引用次数: 2

Abstract

The concept of metamorphic facies has been used as a tool in the interpretation of metamorphic rocks for almost 100 years. The preferred definition is a set of mineral assemblages which are repeatedly associated in space and time. Equilibrium or physical conditions (pressure-temperature) should not be part of the definition. The emphasis has always been on identification of the minerals with the petrographic microscope. Chemical analyses of the minerals using the electron microprobe is not necessary. The original definition of metamorphic facies used the metamorphic mineralogy of metabasic rocks. This bulk composition is not useful for the definition of all metamorphic facies. Several critical minerals in metabasic rocks cannot be readily identified with a petrographic microscope (albite versus oligoclase and actinolite versus hornblende). A revised set of metamorphic facies is proposed and mineral assemblages in both metabasic and pelitic rocks are outlined to provide definitions of the individual facies. Metamorphic facies should not be used to give quantitative estimates of P-T conditions. Only relative P-T can be estimated. The interpretation of “equilibrium” in metamorphic facies can be modeled using the Gibbs phase rule and simple assumptions about phases and components. This leads to an interpretation that metamorphic facies could represent divariant or higher variance equilibrium.
变质相:综述及变化建议
变质岩相的概念作为解释变质岩的工具已经使用了近100年。首选的定义是在空间和时间上重复联系的一组矿物组合。平衡或物理条件(压力-温度)不应成为定义的一部分。岩石显微镜对矿物的鉴别一直是研究的重点。没有必要用电子探针对矿物进行化学分析。变质相的最初定义是用变质岩的变质矿物学来定义的。这种块状成分并不是对所有变质相的定义都有用。变质基性岩石中的一些关键矿物不能用岩石显微镜轻易地识别(钠长石与少长石,放光石与角闪石)。提出了一套修正的变质相,并概述了变质岩和泥质岩中的矿物组合,以提供各个相的定义。变质相不应用于定量估计P-T条件。只能估计相对P-T。变质相的“平衡”解释可以用吉布斯相规则和关于相和组分的简单假设来模拟。这导致了一种解释,即变质相可以代表多样化或更高方差的平衡。
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来源期刊
Canadian Mineralogist
Canadian Mineralogist 地学-矿物学
CiteScore
2.20
自引率
22.20%
发文量
45
审稿时长
4-8 weeks
期刊介绍: Since 1962, The Canadian Mineralogist has published papers dealing with all aspects of mineralogy, crystallography, petrology, economic geology, geochemistry, and applied mineralogy.
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