1980Journal of PetrologyRequires access

Phase Equilibria in Mafic Schist from Vermont

Jo Laird

Open publisher page 86 citations

Abstract

Electron microprobe analyses of coexisting minerals in mafic schist from Vermont define systematic compositional variations which are shown by least-squares, mass balance calculations to be due to differences in metamorphic grade and facies series as is indicated by intercalated pelitic schist. The metamorphism of basaltic bulk rock compositions from greenschist to low-grade amphi-bolite facies and from greenschist to blueschist facies primarily involves changes in the mineral composition and modal abundance of five phases (amphibole + chlorite + epidote + plagioclase + quartz) in the common assemblage (which also includes a Ti-phase ± Fe3+ oxide ± carbonate ± K-mica). \n \nProgressive metamorphism of common mafic schist at medium pressure results in dehydration and the following continuous changes: amphibole grows at the expense of chlorite, epidote, and plagioclase; the edenite, glaucophane, and Tschermak substitutions in amphibole increases; the Tschermak substitution in chlorite increases; and the anorthite content of plagioclase increases (discontinuously at first from albite to oligoclase and then continuously to andesine). Along with these continuous changes in the common assemblage, stilpnomelane disappears and garnet appears during the medium-pressure, progressive metamorphism of Fe-rich samples. \n \nLow-pressure facies series metamorphism results in the same continuous changes as are observed for medium-pressure metamorphism except that plagioclase increases rather than decreases in modal abundance; epidote disappears from basaltic compositions at a lower grade; and the glaucophane substitution in amphibole is less. High-pressure metamorphism culminating in the greenschist-blueschist transition is described by the discontinuous reaction: \n \nActinolite + Chlorite + Albite → Glaucophane + Epidote.

About this research paper

What this paper is about

Electron microprobe analyses of coexisting minerals in mafic schist from Vermont define systematic compositional variations which are shown by least-squares, mass balance calculations to be due to differences in metamorphic grade and facies series as is indicated by intercalated pelitic schist. The metamorphism of basaltic bulk rock compositions from greenschist to low-grade amphi-bolite facies and from greenschist to blueschist facies primarily involves changes in the mineral composition and modal abundance of five phases (amphibole + chlorite + epidote + plagioclase + quartz) in the common assemblage (which also includes a Ti-phase ± Fe3+ oxide ± carbonate ± K-mica). \n \nProgressive metamorphism of common mafic schist at medium pressure results in dehydration and the following continuous changes: amphibole grows at the expense of chlorite, epidote, and plagioclase; the edenite, glaucophane, and Tschermak substitutions in amphibole increases; the Tschermak substitution in chlorite increases; and the anorthite content of plagioclase increases (discontinuously at first from albite to oligoclase and then continuously to andesine). Along with these continuous changes in the common assemblage, stilpnomelane disappears and garnet appears during the medium-pressure, progressive metamorphism of Fe-rich samples. \n \nLow-pressure facies series metamorphism results in the same continuous changes as are observed for medium-pressure metamorphism except that plagioclase increases rather than decreases in modal abundance; epidote disappears from basaltic compositions at a lower grade; and the glaucophane substitution in amphibole is less. High-pressure metamorphism culminating in the greenschist-blueschist transition is described by the discontinuous reaction: \n \nActinolite + Chlorite + Albite → Glaucophane + Epidote.

Why it matters

OpenAlex reports 86 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Electron microprobe analyses of coexisting minerals in mafic schist from Vermont define systematic compositional variations which are shown by least-squares, mass balance calculations to be due to differences in metamorphic grade and facies series as is indicated by intercalated pelitic schist. The metamorphism of basaltic bulk rock compositions from greenschist to low-grade amphi-bolite facies and from greenschist to blueschist facies primarily involves changes in the mineral composition and modal abundance of five phases (amphibole + chlorite + epidote + plagioclase + quartz) in the common assemblage (which also includes a Ti-phase ± Fe3+ oxide ± carbonate ± K-mica). \n \nProgressive metamorphism of common mafic schist at medium pressure results in dehydration and the following continuous changes: amphibole grows at the expense of chlorite, epidote, and plagioclase; the edenite, glaucophane, and Tschermak substitutions in amphibole increases; the Tschermak substitution in chlorite increases; and the anorthite content of plagioclase increases (discontinuously at first from albite to oligoclase and then continuously to andesine). Along with these continuous changes in the common assemblage, stilpnomelane disappears and garnet appears during the medium-pressure, progressive metamorphism of Fe-rich samples. \n \nLow-pressure facies series metamorphism results in the same continuous changes as are observed for medium-pressure metamorphism except that plagioclase increases rather than decreases in modal abundance; epidote disappears from basaltic compositions at a lower grade; and the glaucophane substitution in amphibole is less. High-pressure metamorphism culminating in the greenschist-blueschist transition is described by the discontinuous reaction: \n \nActinolite + Chlorite + Albite → Glaucophane + Epidote.

Key concepts: Blueschist, Glaucophane, Greenschist, Metamorphism, Geology, Geochemistry, Metamorphic facies, Amphibole

Related papers

Back to paper searchBrowse research topicsOriginal source
Phase Equilibria in Mafic Schist from Vermont — Research Paper | ScholarLens