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Species diffusion in clinopyroxene solid solution in the diopside–anorthite system

机译:透辉石-钙长石系统中斜辉石固溶体中的物种扩散

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摘要

The coupled multicomponent diffusion of the species Ca2Si2O6, CaAl2SiO6 and Mg2Si2O6 was determined in diopside crystals in the diopside/anorthite (Di/An) system at temperatures (T) of 1110–1260 °C and oxygen fugacities (fO2) between 1.0 log unit below and above the fayalite–magnetite–quartz equilibrium (FMQ ± 1). Diffusion couples were prepared by the seed overgrowth technique. Element concentration profiles were measured perpendicular to the rim/core interface by step-scanning profiling with a field emission gun scanning electron microscope (FEG-SEM). The multicomponent diffusion matrix was solved by fitting its eigenvalues (λ) and eigenvectors (v) to the measured concentration profiles. The full diffusion matrix D can be recovered by using the formula D=PΛP-1 resulting in the following equation: DDi/An=1.00-0.67-0.381.00λ1T00λ2T1.00-0.67-0.381.00-1.The eigenvalues (λ1 and λ2) represent upper limit values and are described by the following Arrhenius-type equations: λ1Di/An=10-15.98±1.17×exp-114.4±32.8kJ/molRT,λ2Di/An=10-16.23±1.17×exp-114.4±32.8kJ/molRT, where λ1 and λ2 are the first and second eigenvalue of the diffusion matrix in m2 s−1, R is the gas constant and T is the temperature in K. The dominant eigenvalue (λ1) is one quarter order of magnitude larger than the second eigenvalue (λ2). The eigenvectors are constant for all experiments inferring that the entire D matrix can be described with the eigenvalues as the only T-dependent parameter. Additionally, the derived diffusion data and modeling approach were applied to constrain the duration of magmatic processes recorded in zoned clinopyroxene (cpx) phenocrysts from a basaltic, post-plutonic dyke of the Tertiary Adamello batholiths (N-Italy). The results reveal residence times of the overgrown cpx prior to final emplacement in the range of 0.25–1.7 years (lower limit values) testifying that the data and method can be applied to model cpx diffusion profiles in complex natural cpx.Electronic supplementary materialThe online version of this article (10.1007/s00410-019-1571-9) contains supplementary material, which is available to authorized users.
机译:Ca2Si2O6,CaAl2SiO6和Mg2Si2O6的耦合多组分扩散是在透辉石/钙长石(Di / An)系统中透辉石晶体中确定的,温度(T)为1110–1260°C,氧逸度(fO2)在1.0 log单位以下高于铁橄榄石-磁铁矿-石英平衡(FMQ±1)。通过种子过度生长技术制备了扩散对。通过使用场发射枪扫描电子显微镜(FEG-SEM)进行逐步扫描分析,垂直于轮辋/核心界面测量元素浓度分布。通过将其特征值(λ)和特征向量(v)拟合到测得的浓度曲线来求解多组分扩散矩阵。可以通过使用公式 < mi> D = P Λ P -< / mo> 1 得出以下等式: D Di / An = <防御关闭=“]” open =“ [”分隔符=“”> 1.00 - 0.67 < mrow> - 0.38 1.00 λ 1 T 0 0 < / mrow> λ< / mi> 2 T 1.00 < /mn>-0.67 - 0.38 1.00 - 1 < / mrow> 特征值(λ1和λ2)表示上限值,并由以下Arrhenius型方程式描述: λ 1 < / mn> Di / An = 10 < mrow> - 15.98 ± 1.17 × exp - 114.4 ± 32.8 kJ / mol RT < / math> <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M8” display =“ block”溢出=“ scroll”> λ< / mi> 2 Di / An = < mn> 10 - 16.23 ± 1.17 × exp - 114.4 ± 32.8 kJ / mol RT 其中λ1和λ2是m 2 <中扩散矩阵的第一和第二特征值/ sup> s -1 ,R是气体常数,T是以K为单位的温度。主要特征值(λ1)比第二个特征值(λ2)大四分之一数量级。特征向量对于所有实验都是恒定的,这推断整个D矩阵可以用特征值作为唯一的T依赖参数来描述。此外,导出的扩散数据和建模方法被应用来约束从第三纪阿达梅洛岩基(N-意大利)的玄武质,后生代岩脉的分区斜向辉石(cpx)现象中记录的岩浆作用的持续时间。结果显示,在最终安置之前,长满的cpx的停留时间在0.25-1.7年(下限值)范围内,证明了该数据和方法可用于对复杂的自然cpx中的cpx扩散剖面进行建模。电子补充材料在线版本本文(10.1007 / s00410-019-1571-9)中的内容包含补充材料,可供授权用户使用。

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