Phengites in garnet-aegirine-augite schists from the Sambagawa metamorphic belt, Bizan district, eastern Shikoku, Japan

島根大学地球資源環境学研究報告 Volume 34 Page 21-30 published_at 2016-03-05
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Title
Phengites in garnet-aegirine-augite schists from the Sambagawa metamorphic belt, Bizan district, eastern Shikoku, Japan
Creator
Kainuma Masaaki
Source Title
島根大学地球資源環境学研究報告
Volume 34
Start Page 21
End Page 30
Journal Identifire
ISSN 13439774
Descriptions
The Sambagawa metamorphic belt in the Bizan area consists mainly of pelitic schists, basic schists, and siliceous schists (garnet-aegirine-augite schists), along with minor garnet glaucophane schists. The garnet?aegirine-augite schists consist mainly of quartz and phengite, with minor amounts of amphibole (ferroglaucophane, magnesioriebeckite, riebeckite, Mg-katophorite, winchite, barroisite, ferrobarroisite), garnet, aegirine-augite and albite. Hematite, chlorite, epidote, calcite and titanite occur, occasionally phengites are found in eight modes of occurrence; phengites as inclusions in porphyroblastic garnet (Ph1), amphibole (Ph2), clinopyroxene (Ph3) and albite (Ph4), phengites (Ph5) occurring in the matrix, and phengites as a secondary mineral replacing porphyroblastic garnet (Ph6), amphibole (Ph7) and clinopyroxene (Ph8) along their rim and crack. The diversity of the modes of occurrence and chemical compositions of the phengites reflects two metamorphic events in the garnet-aegirine-augite schists in the Bizan area. Inclusions in garnet (Ph1), amphibole (Ph2) and clinopyroxene (Ph3) and schistosity-forming phengites (Ph5) are representative of the prograde to the peak metamorphism of the eclogitic metamorphic event. Phengites replacing garnet (Ph6), amphibole (Ph7) and clinopyroxene (Ph8) and phengites inclusions in porphyroblastic albites (Ph4) suggest another high-pressure epidote-amphibolite metamorphic event.
Subjects
Sambagawa (Sanbagawa) metamorphic belt
Bizan area
garnet
aegirine-augite
phengite
Language
eng
Resource Type departmental bulletin paper
Publisher
島根大学大学院総合理工学研究科地球資源環境学教室
Date of Issued 2016-03-05
Publish Type Version of Record
Access Rights open access
Relation
[NCID] AA11455176