1981American MineralogistRequires access

A thermodynamic model of mineral segregations in the lower sillimanite zone near Rangeley, Maine

C. T. Foster

Open publisher page 73 citations

Abstract

A local equilibrium, irreversible thermodynamic approach is used to model metamorphic segregations in pelites from the lower sillimanite zone near Rangeley, Maine. Relative phenomenological coefficients for the model are derived from a reaction hvolving sillimanite and another reaction involving staurolite using a least-squares technique to give the best fit to the observed data. The mean values of the relative coefficients in an SiO2 fixed (: 1a.t1 marker?) reference frame from five rocks in the middle of the lower sillimanite zone are: AlCi,5:5.9, FeO:2.6, MgO: 1.8, KOos: 1.0, NaOos:0.9, TiOr:0.4, and CaO: 0.2. The phenomenological coefficients are used with Gibbs-Duhem relations and conservation equations to give the sequence of mantles, mineral modes in each mantle, chemical potential profiles, and size of segregations that are expected to form around reacting sillimanite, staurolite, and garnet. The model predicts that: sillimanite growth will produce a segregation with a muscovite-free, biotite-rich mantle surrounding a sillimanite- and quartz-rich core; staurolite will be replaced by a muscovite-rich pseudomorph; and matrix garnets should be rimmed by ' thir biotite-free mantles. Comparison of the computed textures with those observed in the rocks shows a good match except for the case of garnet, where new garnet growth was not sufficient to produce well-defned mantles in the relatively coarse-grained matrix.

About this research paper

What this paper is about

A local equilibrium, irreversible thermodynamic approach is used to model metamorphic segregations in pelites from the lower sillimanite zone near Rangeley, Maine. Relative phenomenological coefficients for the model are derived from a reaction hvolving sillimanite and another reaction involving staurolite using a least-squares technique to give the best fit to the observed data. The mean values of the relative coefficients in an SiO2 fixed (: 1a.t1 marker?) reference frame from five rocks in the middle of the lower sillimanite zone are: AlCi,5:5.9, FeO:2.6, MgO: 1.8, KOos: 1.0, NaOos:0.9, TiOr:0.4, and CaO: 0.2. The phenomenological coefficients are used with Gibbs-Duhem relations and conservation equations to give the sequence of mantles, mineral modes in each mantle, chemical potential profiles, and size of segregations that are expected to form around reacting sillimanite, staurolite, and garnet. The model predicts that: sillimanite growth will produce a segregation with a muscovite-free, biotite-rich mantle surrounding a sillimanite- and quartz-rich core; staurolite will be replaced by a muscovite-rich pseudomorph; and matrix garnets should be rimmed by ' thir biotite-free mantles. Comparison of the computed textures with those observed in the rocks shows a good match except for the case of garnet, where new garnet growth was not sufficient to produce well-defned mantles in the relatively coarse-grained matrix.

Why it matters

OpenAlex reports 73 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

A local equilibrium, irreversible thermodynamic approach is used to model metamorphic segregations in pelites from the lower sillimanite zone near Rangeley, Maine. Relative phenomenological coefficients for the model are derived from a reaction hvolving sillimanite and another reaction involving staurolite using a least-squares technique to give the best fit to the observed data. The mean values of the relative coefficients in an SiO2 fixed (: 1a.t1 marker?) reference frame from five rocks in the middle of the lower sillimanite zone are: AlCi,5:5.9, FeO:2.6, MgO: 1.8, KOos: 1.0, NaOos:0.9, TiOr:0.4, and CaO: 0.2. The phenomenological coefficients are used with Gibbs-Duhem relations and conservation equations to give the sequence of mantles, mineral modes in each mantle, chemical potential profiles, and size of segregations that are expected to form around reacting sillimanite, staurolite, and garnet. The model predicts that: sillimanite growth will produce a segregation with a muscovite-free, biotite-rich mantle surrounding a sillimanite- and quartz-rich core; staurolite will be replaced by a muscovite-rich pseudomorph; and matrix garnets should be rimmed by ' thir biotite-free mantles. Comparison of the computed textures with those observed in the rocks shows a good match except for the case of garnet, where new garnet growth was not sufficient to produce well-defned mantles in the relatively coarse-grained matrix.

Key concepts: Sillimanite, Staurolite, Muscovite, Biotite, Pseudomorph, Geology, Andalusite, Metamorphic rock

Related papers

Back to paper searchBrowse research topicsOriginal source
A thermodynamic model of mineral segregations in the lower sillimanite zone near Rangeley, Maine — Research Paper | ScholarLens