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Large effect of water on Fe-Mg interdiffusion in garnet

机译:水对石榴石Fe-mg Interdiffific的大量影响

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The effect of water on the kinetics of Fe-Mg interdiffusion in garnet was investigated at 3 GPa and 1373-1673 K using diffusion couples of pyrope and almandine aggregates, over a wide range of water content (C-H2O) from 7 up to similar to 1260 wt. ppm. Diffusion profiles were measured by electron microprobe, and the obtained data were fitted by the Boltzmann-Matano equation. Our results show that Fe-Mg interdiffusion coefficient (DFe-Mg) is nearly independent of the composition of garnet over a wide range of Fe/Mg ratios (with X-Fe ranging from 0 to 1). The determined DFe-Mg can be described by the following Arrhenius relation: DFe-Mg (m(2)/s) = D0CH2Or exp(- Delta H/RT), where log(D-0) = -1.70 +/- 0.50, r = 1.38 +/- 0.06, and H = 310 +/- 33 kJ/mol. The exponent r of 1.38 implies the incorporation mechanism of water is hydrogen associated with metal and partly silicon vacancies to form neutral point defect complexes. While at the same time, it also suggests a profound role of water in enhancing the Fe Mg interdiffusion in garnet. With increasing water content from 100 to 1260 wt. ppm H2O, the Fe-Mg inter-diffusivity is enhanced by about two orders of magnitude, comparable to the effect of temperature increased by about 300 degrees C under dry condition. Such large effect of water on the kinetics of garnet is expected to have important implications for evaluating the closure temperature of available geospeedometry and geothermometry. (C) 2018 Published by Elsevier B.V.
机译:在3GPA和1373-1673K使用Pyrope和Almandine聚集体的扩散耦合,在来自诸多水含量(C-H 2 O)的含水含量(C-H 2 O)的扩散耦合,在3GPa和1373-1673k中研究了水对Fe-Mg间隔的动力学的影响。 7至1260重量%。 PPM。通过电子微探针测量扩散型材,通过Boltzmann-Matano方程装配所获得的数据。我们的结果表明,Fe-Mg间隔系数(DFE-MG)几乎与Garnet的组成无关,在各种Fe / Mg比率(X-Fe为0至1)。确定的DFE-Mg可以通过以下Arhenius关系描述:DFE-MG(M(2)/ s)= D0CH2OR EXP( - Delta H / RT),其中log(D-0)= -1.70 +/- 0.50 ,r = 1.38 +/- 0.06,H = 310 +/- 33 KJ / mol。 1.38的指数r意味着水的掺入机制是与金属相关的氢,部分硅空位以形成中性点缺陷复合物。虽然同时,它还表明了水在加强石榴石中的Fe Mg Interdiffific中的一种深刻作用。随着100至1260重量%的水量增加。 PPM H 2 O,Fe-Mg间扩散率大约两种数量级,与干燥条件下的温度效果增加约300℃。预计将对石榴石动力学进行这种巨大影响,对评估可用的地球间测量和地热测定法的闭合温度具有重要意义。 (c)2018由elestvier b.v出版。

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