Experimental determination of F and Cl partitioning between lherzolite and basaltic melt

被引:0
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作者
Célia Dalou
Kenneth T. Koga
Nobumichi Shimizu
Julien Boulon
Jean-Luc Devidal
机构
[1] Clermont Université,Laboratoire Magmas et Volcans
[2] Université Blaise Pascal,Laboratoire de Météorologie Physique
[3] CNRS,undefined
[4] UMR 6524,undefined
[5] LMV,undefined
[6] IRD,undefined
[7] R 163,undefined
[8] LMV,undefined
[9] Woods Hole Oceanographic Institution,undefined
[10] Clermont Université,undefined
[11] Université Blaise Pascal,undefined
关键词
Fluorine; Chlorine; Partition coefficients; Lherzolite minerals; Basaltic melt; Substitution; Lattice-strain model;
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学科分类号
摘要
We experimentally determined F and Cl partition coefficients together with that of 19 trace elements (including REE, U-Th, HFSE and LILE) between basaltic melt and lherzolite minerals: olivine, orthopyroxene, clinopyroxene, plagioclase and garnet. Under conditions from 8 to 25 kbars and from 1,265 to 1,430°C, compatibilities of F and Cl are globally ordered as DCpx/melt > DOpx/melt > DGrt/melt > DOl/melt > DPlag/melt, and DFmineral/melt is larger than DClmineral/melt. Four other major results were brought to light. (1) Chlorine partition coefficients positively correlate with the jadeite component in orthopyroxene, and increase of the CaTs component promotes Cl incorporation in clinopyroxene. (2) Variations of fluorine partition coefficients correlate strongly with melt viscosity. (3) F and Cl partition coefficients correlate with the Young’s modulus (E0) of pyroxene octahedral sites (M sites) and with Raman vibrational modes of pyroxenes. This demonstrates a fundamental interaction between the M site of pyroxenes and the incorporation of F and Cl. (4) We also determined the parameters of the lattice-strain model applied to 3+ cation trace elements for the two M sites in orthopyroxene and clinopyroxene: D0M1, D0M2, r0M1, r0M2, E0M1 and E0M2.
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页码:591 / 609
页数:18
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