Experimental calibration of vanadium partitioning and stable isotope fractionation between hydrous granitic melt and magnetite at 800 °C and 0.5 GPa

被引:42
作者
Sossi, Paolo A. [1 ,3 ]
Prytulak, Julie [2 ]
O'Neill, Hugh St. C. [1 ]
机构
[1] Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT 2601, Australia
[2] Imperial Coll London, Dept Earth Sci & Engn, London SW7 2AZ, England
[3] Univ Paris Diderot, Sorbonne Paris Cite, Inst Phys Globe Paris, CNRS, F-75005 Paris, France
基金
澳大利亚研究理事会;
关键词
Redox; Magnetite; Magma; Vanadium; Stable isotope fractionation; Equilibrium; A-TYPE GRANITOIDS; OXIDATION-STATE; OXYGEN FUGACITY; THERMODYNAMIC PROPERTIES; PHASE-EQUILIBRIA; SILICATE-GLASSES; TRACE-ELEMENTS; MAJOR-ELEMENT; REDOX STATES; ARC BASALTS;
D O I
10.1007/s00410-018-1451-8
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
Vanadium has multiple oxidation states in silicate melts and minerals, a property that also promotes fractionation of its isotopes. As a result, vanadium isotopes vary during magmatic differentiation, and can be powerful indicators of redox processes at high temperatures if their partitioning behaviour can be determined. To quantify the partitioning and isotope fractionation factor of V between magnetite and melt, piston cylinder experiments were performed in which magnetite and a hydrous, haplogranitic melt were equilibrated at 800 degrees C and 0.5 GPa over a range of oxygen fugacities (fO(2)), bracketing those of terrestrial magmas. Magnetite is isotopically light with respect to the coexisting melt, a tendency ascribed to the VI-fold V3+ and V4+ in magnetite, and a mixture of IV- and VI-fold V5+ and V4+ in the melt. The magnitude of the fractionation factor systematically increases with increasing logfO(2) relative to the Fayalite-Magnetite-Quartz buffer (FMQ), from Delta V-51(mag-gl) = -0.63 +/- 0.09 parts per thousand at FMQ - 1 to - 0.92 +/- 0.11 parts per thousand (SD) at approximate to FMQ + 5, reflecting constant V3+/V4+ in magnetite but increasing V5+/V4+ in the melt with increasing log fO(2). These first mineral-melt measurements of V isotope fractionation factors underline the importance of both oxidation state and co-ordination environment in controlling isotopic fractionation. The fractionation factors determined experimentally are in excellent agreement with those needed to explain natural isotope variations in magmatic suites. Furthermore, these experiments provide a useful framework in which to interpret vanadium isotope variations in natural rocks and magnetites, and may be used as a potential fingerprint the redox state of the magma from which they crystallise.
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页数:18
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