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Partitioning of Ni, Co and V between Spinel-Structured Oxides and Silicate Melts: Importance of Spinel Composition

机译:Ni,Co和V在尖晶石结构的氧化物和硅酸盐熔体之间的分配:尖晶石成分的重要性

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摘要

Partitioning of Ni, Co and V between Cr-rich spinels and basaltic melt has been studied experimentally between 1150 and 1325 C, and at controlled oxygen fugacity from the Co-CoO buffer to slightly above the hematite magnetite buffer. These new results, together with new Ni, Co and V analyses of experimental run products from Leeman [Leeman, W.P., 1974. Experimental determination of the partitioning of divalent cations between olivine and basaltic liquid, Pt. II. PhD thesis, Univ. Oregon, 231 - 337.], show that experimentally determined spinel melt partition coefficients (D) are dependent upon temperature (T), oxygen fugacity (fO2) and spinel composition. In particular, partition coefficients determined on doped systems are higher than those in natural (undoped) systems, perhaps due to changing activity coefficients over the composition range defined by the experimental data. Using our new results and published runs (n =85), we obtain a multilinear regression equation that predicts experimental D(V) values as a function of T, fO2, concentration of V in melt and spinel composition. This equation allows prediction of D(V) spinel/melt values for natural mafic liquids at relevant crystallization conditions. Similarly, D(Ni) and D(Co) values can be inferred from our experiments at redox conditions approaching the QFM buffer, temperatures of 1150 to 1250 C and spinel composition (early Cr-bearing and later Ti-magnetite) appropriate for basic magma differentiation. When coupled with major element modelling of liquid lines of descent, these values (D(Ni) sp/melt=10 and D(Co) sp/melt=5) closely reproduce the compositional variation observed in komatiite, mid-ocean ridge basalt (MORB), ocean island basalt (OIB) and basalt to rhyolite suites.
机译:实验研究了1150至1325℃之间Ni,Co和V在富Cr尖晶石和玄武岩熔体之间的分配,并且在受控的氧气逸度下,从Co-CoO缓冲液到略高于赤铁矿磁铁矿缓冲液。这些新结果,以及来自Leeman的实验运行产品的新的Ni,Co和V分析[Leeman,W.P.,1974年。橄榄石和玄武质液体中二价阳离子分配的实验测定,Pt。二。博士论文,大学。俄勒冈,231-337。]表明,实验确定的尖晶石熔体分配系数(D)取决于温度(T),氧逸度(fO2)和尖晶石组成。特别地,在掺杂系统上确定的分配系数要比自然(未掺杂)系统中的分配系数高,这可能是由于在实验数据定义的组成范围内变化的活度系数所致。使用我们的新结果和已发表的数据(n = 85),我们获得了一个多线性回归方程,该方程可预测实验D(V)值与T,fO2,熔体和尖晶石成分中V的浓度的关系。该方程式允许在相关的结晶条件下预测天然镁铁质液体的D(V)尖晶石/熔体值。同样,可以从我们在接近QFM缓冲液的氧化还原条件,1150至1250 C的温度以及适用于基本岩浆的尖晶石成分(早期含铬和后来的钛磁铁矿)的氧化还原条件下的实验推断出D(Ni)和D(Co)值。差异化。当与下降液体管线的主要元素模型结合时,这些值(D(Ni)sp / melt = 10和D(Co)sp / melt = 5)紧密地再现了在科马提岩,中洋脊玄武岩中观察到的成分变化( MORB),大洋洲玄武岩(OIB)和流纹岩套件中的玄武岩。

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