Ilmenite composition in the tellnes Fe-Ti deposit, SW Norway:: fractional crystallization, postcumulus evolution and ilmenite-zircon relation

被引:75
作者
Charlier, Bernard [1 ]
Skar, Oyvind
Korneliussen, Are
Duchesne, Jean-Clair
Auwera, Jacqueline Vander
机构
[1] Univ Liege, Dept Geol, B-4000 Liege, Belgium
[2] Geol Survey Norway, N-7494 Trondheim, Norway
关键词
ilmenite; magnetite; zircon; laser ablation; titanium ores; anorthosite; Rogaland;
D O I
10.1007/s00410-007-0186-8
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
Major and trace element XRF and in situ LA-ICP-MS analyses of ilmenite in the Tellnes ilmenite deposit, Rogaland Anorthosite Province, SW Norway, constrains a two stage fractional crystallization model of a ferrodioritic Fe-Ti-P rich melt. Stage I is characterized by ilmenite-plagioclase cumulates, partly stored in the lower part of the ore body (Lower Central Zone, LCZ), and stage 2 by ilmenite-plagioclase-orthopyroxene-olivine cumulates (Upper Central Zone, UCZ). The concentration of V and Cr in ilmenite, corrected for the trapped liquid effect, (1) defines the cotectic proportion of ilmenite to be 17.5 wt% during stage 1, and (2) implies an increase of D-V(IIm) during stage 2, most likely related to a shift in fO(2). The proportion of 17.5 wt% is lower than the modal proportion of ilmenite (ca. 50 wt%) in the ore body, implying accumulation of ilmenite and flotation of plagioclase. The fraction of residual liquid left after crystallization of Tellnes cumulates is estimated at 0.6 and the flotation of plagioclase at 26 wt% of the initial melt mass. The increasing content of intercumulus magnetite with stratigraphic height, from 0 to ca. 3 wt%, results from differentiation of the trapped liquid towards magnetite saturation. The MgO content of ilmenite (1.4-4.4 wt%) is much lower than the expected cumulus composition. It shows extensive postcumulus re-equilibration with trapped liquid and ferromagnesian silicates, correlated with distance to the host anorthosite. The Zr content of ilmenite, provided by in situ analyses, is low (<114 ppm) and uncorrelated with stratigraphy or Cr content. The data demonstrate that zircon coronas observed around ilmenite formed by subsolidus exsolution of ZrO2 from ilmenite. The U-Pb zircon age of 920 +/- 3 Ma probably records this exsolution process.
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页码:119 / 134
页数:16
相关论文
共 39 条
[1]   QUILF - A PASCAL PROGRAM TO ASSESS EQUILIBRIA AMONG FE-MG-MN-TI OXIDES, PYROXENES, OLIVINE, AND QUARTZ [J].
ANDERSEN, DJ ;
LINDSLEY, DH ;
DAVIDSON, PM .
COMPUTERS & GEOSCIENCES, 1993, 19 (09) :1333-1350
[2]  
Ashwal L.D., 1993, Anorthosites, P422, DOI DOI 10.1007/978-3-642-77440-9
[3]   The deformation of the Egersund-Ogna anorthosite massif, south Norway: finite-element modelling of diapirism [J].
Barnichon, JD ;
Havenith, H ;
Hoffer, B ;
Charlier, R ;
Jongmans, D ;
Duchesne, JC .
TECTONOPHYSICS, 1999, 303 (1-4) :109-130
[4]   The 616 Ma old Egersund basaltic dike swarm, SW Norway, and Late Neoproterozoic opening of the Iapetus Ocean [J].
Bingen, B ;
Demaiffe, D ;
van Breemen, O .
JOURNAL OF GEOLOGY, 1998, 106 (05) :565-574
[5]   Molybdenite re-os dating constrains gravitational collapse of the Sveconorwegian orogen, SW Scandinavia [J].
Bingen, B ;
Stein, HJ ;
Bogaerts, M ;
Bolle, O ;
Mansfeld, J .
LITHOS, 2006, 87 (3-4) :328-346
[6]   Molybdenite Re-Os dating of biotite dehydration melting in the Rogaland high-temperature granulites, S Norway [J].
Bingen, B ;
Stein, H .
EARTH AND PLANETARY SCIENCE LETTERS, 2003, 208 (3-4) :181-195
[7]   U-Pb monazite ages in amphibolite- to granulite-facies orthogneiss reflect hydrous mineral breakdown reactions: Sveconorwegian Province of SW Norway [J].
Bingen, B ;
van Breemen, O .
CONTRIBUTIONS TO MINERALOGY AND PETROLOGY, 1998, 132 (04) :336-353
[8]   Ilmenite as a source for zirconium during high-grade metamorphism? Textural evidence from the Caledonides of western Norway and implications for zircon geochronology [J].
Bingen, B ;
Austrheim, H ;
Whitehouse, M .
JOURNAL OF PETROLOGY, 2001, 42 (02) :355-375
[10]   Imaging downward granitic magma transport in the Rogaland Igneous Complex, SW norway [J].
Bolle, O ;
Trindade, RIF ;
Bouchez, JL ;
Duchesne, JC .
TERRA NOVA, 2002, 14 (02) :87-92