وثيقة
Plagioclase-bearing ultramafic tectonites from the Galicia margin (leg 103, site 637): comparison of their origin and evolution with low-pressure ultramafic bodies in western Europe.
المعرف
DOI: 10.2973/odp.proc.sr.103.141.1988
المصدر
Proc., scientific results, ODP, Leg 103, Galicia Margin, p. 253-268
المساهمون
Tabit, Abdelhalim., مؤلف
الدولة
United States.
مكان النشر
Texas
الناشر
ODP, Texas A & M University, College Station; UK distributors, IPOD Committee, NERC, Swindon
ميلادي
1988-01-01
اللغة
الأنجليزية
الموضوع
الملخص الإنجليزي
Mineral compositions of the plagioclase-bearing ultramafic tectonites dredged and cored seaward of the continental slope of the Galicia margin (Leg 103, Site 637) were compared to mineral compositions from onshore low-pressure ultramafic bodies (southeastern Ronda, western Pyrennes, and Lizard Point), on the basis of standardized (30-s counting time) probe analyses. The comparison was extended to some plagioclase-free harzburgites related to ophiolites (Santa Elena in Costa Rica, north Oman, and the Humboldt body in New Caledonia) on the basis of new analytical data and data from the literature. The behavior of Cr, Na, Al, Mg, Fe, Ni, and Ti in olivine, pyroxenes, and spinel was examined in order to distinguish between the effects of partial melting and mineral facies change, from the spinel to plagioclase stability fields. The peridotite from the Galicia margin appears slightly depleted in major incompatible elements and experienced a minor partial melting. However, it experienced large scale but heterogeneous recrystallization in the plagioclase field. These features are very similar to those observed in Ronda. Diffusion profiles of Al and Cr across pyroxenes and spinel show that recrystallization features occurred at different speeds or temperatures in the different bodies. Recrystallization speed is related to emplacement speed in the present geological environment. The slow-rising Galicia margin peridotite was emplaced by thinning of the lithospheric subcontinental mantle near an incipient mid-oceanic ridge.
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