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Diffusion and partitioning of magnesium in quartz grain boundaries

机译:镁在石英晶界中的扩散和分配

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Experiments were conducted to study Mg diffusion in quartz grain boundaries. A detector particle method was used to study grain-boundary diffusion because Mg was confined exclusively to the grain boundaries. Diffusion couples were assembled by placing a MgF_2 disk against a disk of quartzite, which was placed against a disk of quartzite that contained fayalite (Fe_2SiO_4) 'detector particles.' During diffusion experiments, Mg diffused along the grain boundaries of the central quartzite toward the fayalite quartzite where it was incorporated into fayalite detector particles. The only pathway for transport from the diffusant source to fayalite detector particles was through the grain boundaries in the central quartzite. The cross-sectional area of the grain boundaries that delivered Mg to the fayalite detector particles was determined from scanning electron microscope images. The Mg contents of the fayalite detector particles were used to calculate the mass of Mg that fluxed through the grain boundaries. During the diffusion experiments, pyroxene crystallites nucleated and grew in the central quartzites from Mg and Fe that was transported along quartz grain boundaries. The Mg contents of the crystallites vary linearly throughout the quartzites, suggesting that steady-state transport conditions were rapidly established in the quartz grain boundaries. Magnesium concentrations in the pyroxene crystallites are proportional to concentration gradients in the grain boundaries of the central quartzite. Grain-boundary fluxes and linear concentration gradients were used to calculate diffusion of Mg in grain boundaries of the central quartzite component in the diffusion couples.
机译:进行实验以研究镁在石英晶界中的扩散。由于Mg仅限于晶界,所以使用检测器颗粒法研究晶界扩散。通过将MgF_2圆盘放在石英岩圆盘上来组装扩散对,而石英岩则放在含有铁橄榄石(Fe_2SiO_4)“探测器粒子”的石英岩圆盘上。在扩散实验中,Mg沿中心石英岩的晶界扩散到铁橄榄石石英岩中,并被掺入铁橄榄石探测器颗粒中。从扩散源到铁橄榄石探测器颗粒的唯一途径是穿过中心石英岩的晶界。由扫描电子显微镜图像确定了将Mg传递至铁橄榄石检测器颗粒的晶界的截面积。铁橄榄石探测器颗粒中的Mg含量用于计算通过晶界的Mg的质量。在扩散实验中,辉石微晶在中央石英岩中从镁和铁中成核并生长,并沿石英晶界传输。在整个石英岩中,微晶的Mg含量呈线性变化,这表明在石英晶界中迅速建立了稳态传输条件。辉石微晶中的镁浓度与中心石英岩晶界中的浓度梯度成比例。使用晶界通量和线性浓度梯度来计算Mg在扩散对中中心石英岩组分晶界中的扩散。

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