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Uphill diffusion, zero-flux planes and transient chemical solitary waves in garnet

机译:石榴石中的上坡扩散,零通量平面和瞬态化学孤立波

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Diffusion profiles in minerals are increasingly used to determine the duration of geological events. For this purpose, the distinction between growth and diffusion zoning is critical; it requires the understanding of complex features associated with multicomponent diffusion. Seed-overgrowth interdiffusion experiments carried out in the range 1,050-1,250°C at 1.3 GPa have been designed to quantify and better understand Fe-Mg-Ca interdiffusion in garnet. Some of the diffusion profiles measured by analytical transmission electron microscope show characteristic features of multicomponent diffusion such as uphill diffusion, chemical solitary waves, zero-flux planes and complex diffusion paths. We implemented three different methods to calculate the interdiffusion coefficients of the D matrix from the experimental penetration curves and determined that with Ca as the dependent component, the crossed coefficients of the D matrix are negative. Experiments and numerical simulations indicate that: (1) uphill diffusion in garnet can be observed indifferently on the three components Fe, Mg and Ca, (2) it takes the form of complementary depletion/repletion waves and (3) chemical waves occur preferentially on initially flat concentration profiles. Derived D matrices are used to simulate the fate of chemical waves in time, in finite crystals.
机译:矿物中的扩散曲线越来越多地用于确定地质事件的持续时间。为此,增长分区和扩散分区之间的区别至关重要。它需要了解与多组分扩散相关的复杂特征。在1,050-1,250°C的温度下以1.3 GPa进行的种子过度生长互扩散实验旨在量化和更好地理解石榴石中Fe-Mg-Ca互扩散。分析型透射电子显微镜测得的某些扩散曲线显示出多组分扩散的特征,如上坡扩散,化学孤波,零通量平面和复杂的扩散路径。我们采用三种不同的方法从实验渗透曲线计算D矩阵的互扩散系数,并确定以Ca为依存分量,D矩阵的交叉系数为负。实验和数值模拟表明:(1)石榴石的上坡扩散在Fe,Mg和Ca的三个成分上几乎可以观察到,(2)它以互补的耗尽/补充波的形式出现,(3)化学波优先出现在石榴石上。最初的浓度曲线平坦。导出的D矩阵用于模拟有限晶体中化学波的时间变化。

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