Quantitative 3D measurement of ilmenite abundance in Alpe Arami olivine by confocal microscopy: Confirmation of high-pressure origin

被引:30
作者
Bozhilov, KN [1 ]
Green, HW
Dobrzhinetskaya, LF
机构
[1] Univ Calif Riverside, Inst Geophys & Planetary Phys, Riverside, CA 92521 USA
[2] Univ Calif Riverside, Dept Earth Sci, Riverside, CA 92521 USA
关键词
D O I
10.2138/am-2003-0413
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
A critical aspect of the debate about the origin and conditions of metamorphism of the Alpe Arami (AA) peridotite is the disagreement over how much ilmenite is contained in the older generation of olivine and therefore how much TiO2 might have been dissolved at high pressure and temperature. We have now determined quantitatively the 3-dimensional distribution of ilmenite in AA olivine by confocal laser scanning microscopy (CLSM). The CLSM measurements show an average concentration of 0.31 vol% of ilmenite in olivine, with individual grains containing up to 1.2 vol%. This translates into average and maximum concentrations of 0.23 and 0.9 wt% TiO2 in olivine, respectively, and confirms the original estimation of maximum concentration of similar to1 vol% TiO2. The vast majority of ilmenite in AA olivine is distributed randomly (although topotactically oriented) and, in all cases, is accompanied by chromite in a ratio of similar to4:1. These observations are consistent with an origin of the ilmenite (and chromite) by exsolution from an olivine solid solution at P = 9-12 GPa and temperatures above the stability field of titanian clinohumite, but are not consistent with suggested breakdown of titanian clinohumite. Combining these results with other recent findings suggests that exsolution followed deformation under relatively high fugacity of H2O, and that the high solubility of TiO2 is probably explained by pressure-induced accommodation of Ti in the tetrahedral site of silicates.
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页码:596 / 603
页数:8
相关论文
共 36 条
[1]   P-T-X data on P21/c-clinopyroxenes and their displacive phase transitions [J].
Arlt, T ;
Kunz, M ;
Stolz, J ;
Armbruster, T ;
Angel, RJ .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 2000, 138 (01) :35-45
[2]   Clinoenstatite in Alpe Arami peridotite: Additional evidence of very high pressure [J].
Bozhilov, KN ;
Green, HW ;
Dobrzhinetskaya, L .
SCIENCE, 1999, 284 (5411) :128-132
[3]   Reconstruction of the exhumation path of the Alpe Arami garnet-peridotite body from depths exceeding 160 km [J].
Brenker, FE ;
Brey, GP .
JOURNAL OF METAMORPHIC GEOLOGY, 1997, 15 (05) :581-592
[4]  
BUISKOOL JMA, 1976, LEIDSE GEOL MEDED, V51, P1
[5]   NUCLEATION AND GROWTH OF IRON OXIDES IN OLIVINES, (MG,FE)2SIO4 [J].
CHAMPNESS, PE .
MINERALOGICAL MAGAZINE, 1970, 37 (291) :790-+
[6]  
Dawson J, 1986, EARTH ENV SCI T R SO, V77, P181, DOI DOI 10.1017/S026359330001083X
[7]   Alpe Arami: A peridotite massif from depths of more than 300 kilometers [J].
Dobrzhinetskaya, L ;
Green, HW ;
Wang, S .
SCIENCE, 1996, 271 (5257) :1841-1845
[8]   The solubility of TiO2 in olivine:: implications for the mantle wedge environment (vol 160, pg 357, 1999) [J].
Dobrzhinetskaya, L ;
Bozhilov, KN ;
Green, HW .
CHEMICAL GEOLOGY, 2000, 163 (1-4) :323-+
[9]   Silica precipitates in omphacite from eclogite at Alpe Arami, Switzerland: evidence of deep subduction [J].
Dobrzhinetskaya, LF ;
Schweinehage, R ;
Massonne, HJ ;
Green, HW .
JOURNAL OF METAMORPHIC GEOLOGY, 2002, 20 (05) :481-492
[10]  
ERNST WG, 1981, AM MINERAL, V66, P443