Experimental investigation of large-ion-lithophile-element-, high-field-strength-element- and rare-earth-element-partitioning between calcic amphibole and basaltic melt: the effects of pressure and oxygen fugacity

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作者
Claude Dalpé
Don R. Baker
机构
[1] Department of Earth and Planetary Sciences,
[2] McGill University,undefined
[3] Montreal,undefined
[4] Quebec H3A 2A7,undefined
[5] Canada e-mail: claude.dalpe@bristol.ac.uk Tel.: +44-(0)117-9545409; Fax: +44-(0)117-9253385,undefined
[6] Department of Earth and Planetary Sciences,undefined
[7] McGill University,undefined
[8] Montreal,undefined
[9] Quebec H3A 2A7,undefined
[10] Canada,undefined
关键词
Partition Coefficient; Nickel Oxide; Oxygen Fugacity; Alkaline Basalt; Measured Partition;
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摘要
The effects of pressure and oxygen fugacity (fO2) on trace element partitioning between pargasitic amphibole and alkali-basaltic melts have been determined at pressures from 1.5 to 2.5 GPa and oxygen fugacities at 2 log units above and below the nickel–nickel oxide buffer. Amphibole crystallization experiments were performed in a piston cylinder apparatus and partition coefficients between amphibole and quenched melt of large-ion-lithophile elements (LILE: Rb, Sr, Ba), high-field-strength elements (HFSE: Zr, Nb, Ta, Hf, U, Th) and rare-earth elements (REE: La to Lu; +Y) were measured with a LASER ablation inductively coupled plasma – mass spectrometer. Increasing pressure from 1.5 to 2.5 GPa at similar temperatures and approximately constant fO2 increases DRb but decreases DZr and DHf and DREE (DLa, DCe, DPr). An empirical relationship was observed between DZr and (Ti/Al)M2 in the amphibole, which can be described by:
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页码:233 / 250
页数:17
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