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Quantifying crustal thickness variations in evolving orogens; correlation between arc basalt composition and Moho depth

G. W. Mantle and W. J. Collins
Quantifying crustal thickness variations in evolving orogens; correlation between arc basalt composition and Moho depth
Geology (Boulder) (January 2008) 36 (1): 87-90

Abstract

A compilation of geochemical data from >50 active volcanoes where seismically defined Moho depth measurements are available, representing most volcanic arcs around the world, indicates a relation exists between crustal thickness (Moho depth) and the trace element composition of basalts. The best correlation exists for maximum light/heavy rare earth element (REE) ratios, and we use maximum Ce/Y (R (super 2) = 0.90) to show the exponential function with increasing depth, to 50 km. Application to New Zealand, part of the eastern Gondwanan margin through much of the Phanerozoic, shows that higher Ce/Y ratios in arc basalts correspond to two periods of recognized crustal thickening, plus an additional event at ca. 240 Ma, which links New Zealand to the Gondwanide Orogeny. Conversely, low Ce/Y ratios in basalts correlate with periods of recognized extension in eastern Gondwana. Very high Ce/Y ratios in ca. 120 Ma rocks imply an unusually thickened ( approximately 50 km) arc crust, consistent with independent geological estimates of crustal thickness at that time. The correlation shows that crustal thickness variations during orogenesis can be conservatively estimated to within + or -3 km.


ISSN: 0091-7613
EISSN: 1943-2682
Coden: GLGYBA
Serial Title: Geology (Boulder)
Serial Volume: 36
Serial Issue: 1
Title: Quantifying crustal thickness variations in evolving orogens; correlation between arc basalt composition and Moho depth
Affiliation: University of Newcastle, School of Environmental and Life Sciences, Callaghan, N.S.W., Australia
Pages: 87-90
Published: 200801
Text Language: English
Publisher: Geological Society of America (GSA), Boulder, CO, United States
References: 30
Accession Number: 2008-028907
Categories: Solid-earth geophysicsGeochemistry of rocks, soils, and sediments
Document Type: Serial
Bibliographic Level: Analytic
Annotation: With GSA Data Repository Item 2008019
Illustration Description: illus.
S46°40'60" - S44°45'00", E166°25'00" - E169°16'00"
Secondary Affiliation: James Cook University, AUS, Australia
Country of Publication: United States
Secondary Affiliation: GeoRef, Copyright 2017, American Geosciences Institute. Reference includes data from GeoScienceWorld, Alexandria, VA, United States. Reference includes data supplied by the Geological Society of America, Boulder, CO, United States
Update Code: 200809

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