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首页> 外文期刊>Contributions to Mineralogy and Petrology >Metasomatic coronas around hornblendite xenoliths in granulite facies marble, Ivrea zone, N Italy, I: constraints on component mobility
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Metasomatic coronas around hornblendite xenoliths in granulite facies marble, Ivrea zone, N Italy, I: constraints on component mobility

机译:意大利北部伊夫雷亚地区花岗石相大理石中角闪石异岩周围的交代电晕I:组分迁移率的限制

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摘要

Centimeter- to decimeter-thick reaction bands occur at hornblendite/marble interfaces in Val Fiorina in the granulite facies metamorphic Ivrea zone. From hornblendite to marble the reaction bands show a consistent succession of sharply bounded mineral layers comprising a monomineralic clinopyroxene layer, a garnet–clinopyroxene layer and a scapolite–clinopyroxene layer. Reaction band formation occurred as a response to gradients in the chemical potentials of calcium and magnesium as defined by the hornblendite assemblage and the marble matrix. The metasomatic corona primarily replaced the hornblendite, and only minor amounts of marble were consumed. The reaction band behaved as an open system with net transfer of calcium from the marble into the reaction band, and a net transfer of iron and magnesium in the opposite direction. Mass balance considerations allow us to constrain a range of feasible mass balance scenarios for which major element fluxes across the boundaries of the reaction band may be quantified. Modeling of layer growth as a steady diffusion process yields ratios of the phenomenological diffusion coefficients for Si, Al, Mg, and Ca of ${{L_{SiSi} } over {L_{CaCa} }}> 2.5,{kern 1pt} {rm }{{L_{AlAl} } over {L_{CaCa} }}<10,{rm }{{L_{MgMg} } over {L_{CaCa} }}> 1.$ . The relative diffusivities are primarily constrained by the sequence of mineral layers of the reaction band and by the relative thickness of the layers. The results of steady-state diffusion modeling are relatively insensitive with respect to variations in the major element boundary fluxes.
机译:厘米至分米厚的反应带出现在粒岩相变质Ivrea带的Val Fiorina的角闪石/大理石界面。从角闪石到大理石,反应谱带显示出连续一致的尖锐结合的矿物层,包括单矿物的斜辉石层,石榴石-斜辉石层和蓝宝石-斜辉石层。反应带的形成是作为对钙和镁化学势梯度的响应而发生的,而钙和镁的化学势由角闪石组件和大理石基质定义。交代电晕主要替代了角闪石,仅消耗了少量的大理石。反应带表现为开放系统,其中钙从大理石向反应带中净转移,而铁和镁在相反方向上净转移。质量平衡考虑因素使我们可以限制一系列可行的质量平衡方案,对于这些方案,可以量化反应带边界上的主要元素通量。将层生长建模为稳定扩散过程会产生Si,Al,Mg和Ca的现象学扩散系数与{L_ {CaCa}}}> 2.5,{kern 1pt} { rm} {{L_ {AlAl}}超过{L_ {CaCa}}} <10,{rm} {{L_ {MgMg}}超过{L_ {CaCa}}}> 1. $。相对扩散率主要受反应带矿物层的顺序和层的相对厚度的限制。对于主要元素边界通量的变化,稳态扩散建模的结果相对不敏感。

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  • 来源
    《Contributions to Mineralogy and Petrology》 |2001年第4期|473-493|共21页
  • 作者

    R. Abart; R. Schmud; D. Harlov;

  • 作者单位

    Institut für Mineralogie und Petrologie ttt Karl-Franzens-Universität Graz Graz Austria;

    Institut für Mineralogie und Petrographie ttt ETH-Zürich Zürich Switzerland;

    Geoforschungszentrum Potsdam Telegrafenberg Potsdam ttt Germany;

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