HR: 0830h
AN: ED41C-1174 [PDF]
TI: The Barrovian Metapelitic Rocks In Northern Idaho: An Outstanding Suite For Teaching Undergraduate
Metamorphic Petrology
AU: * Grover, T W
EM: grovert@castleton.edu
AF: Castleton State College, Dept. of Natural Sciences, Castleton, VT 05735 United States
AU: Lang, H M
EM: lang@geo.wvu.edu
AF: West Virginia University, Dept. of Geology and Geography, Morgantown, WV 26506 United States
AB:
The Barrovian metapelitic rocks in the St. Joe-Clearwater region in northern Idaho provide an outstanding suite for the study
of many aspects of regional metamorphism in an undergraduate petrology class. Metamorphosed Belt Supergroup and associate
rocks, located along the northwest border zone of the Idaho batholith, record the effects of three phases of
recrystallization. The first phase of metamorphism (M1) is recognized by the presence of (M2) muscovite pseudomorphs after
staurolite. The second phase of metamorphism, M2, was Barrovian and ranges in grade from biotite zone through K-feldspar +
sillimanite zone. M2 porphyroblasts are commonly quite large and easily recognizable in hand sample as well as
petrographically. Four and five AFM phase assemblages present in these rocks can be used to discuss the effects of extra
components or variable fluid compositions on stable mineral assemblages. The presence of epidote-bearing plutonic rocks,
emplaced during M2 metamorphism, provides additional data on the tectonometamorphic evolution of the region.
In the central part of the area are unusually Al- and Mg-rich metapelitic rocks associated with several anorthosite bodies.
These rocks contain kyanite, andalusite, and sillimanite in a single thin section but the polymorphs are not in textural
equilibrium. These rocks also contain cordierite coronas around kyanite and andalusite. The inversion of kyanite to
andalusite and the late growth of cordierite occurred during M3 metamorphism. M3 recrystallization was generated by a phase
of rapid, nearly isothermal decompression. The texturally late, lower pressure overgrowths of cordierite are explained to
undergraduates through the use of petrogenetic grids.
Published mineral analyses for rocks in this area are available, as are limited geochronologic data. Ongoing research on
the structural evolution of the region provides a context for the integration of tectonics and petrology.
DE: 3660 Metamorphic petrology
SC: Education and Human Resources [ED]
MN: 2003 Fall Meeting