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REE mobilization during small-scale high-pressure fluid-rock interaction and zoisite/fluid partitioning of La to Eu

机译:La到Eu的小规模高压流体-岩石相互作用和黄铁矿/流体分配过程中的REE动员

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A zoisite-quartz segregation and its adjacent host metabasite from the Tauern Window (Austria) have been investigated in detail to study the geochemical behaviour of REE during high-pressure fluid-rock interaction and the role of zoisite. The segregation formed at T = 500 to 550 degreesC/P much greater than 0.6 GPa because of decompressional dehydration of the host metabasite. During the formation of the segregation the REE La to Tb and Dy to Lu were geochemically decoupled. In the metabasite La to Tb are incorporated in allanite and were leached from the host rock by the fluid phase. This decoupling and the leaching of La to Tb significantly alter the REE patterns of the host rock in the immediate vicinity of the segregation from LREE enriched to LREE depleted. Based on a mass-balance calculation for La, Ce, Nd, Sm, and Eu the composition of the fluid from which the segregation was precipitated is calculated. The fluid is LREE enriched with (La/Sm)(N) = 3.7. Individual REE contents range from Eu = 2.4 +/- 1.1 ppm up to Ce = 90 +/- 20 ppm, Sigma REE = 190 +/- 50 ppm. Calculated partition coefficients D-REE(zoisite/fluid) are generally <1 and increase from D-La(zosite/fluid) = 0.08 +/- 0.02 to D-Eu(zoisite/fluid) = 0.8 +/- 0.4, indicating a stronger preference of zoisite for MREE than for LREE. To describe the fractionation of La relative to Sm between zoisite and fluid, the La-Sm exchange coefficient between zoisite and fluid is calculated. The derived exchange coefficient K-D(La/Sm)(zoisite/fluid) = 0.2+/- 0.1 suggests that a fluid in equilibrium with zoisite will have a three- to ten-times higher La/Sm ratio than coexisting zoisite. Copyright (C) 2001 Elsevier Science Ltd. [References: 41]
机译:为了研究稀土在高压流体-岩石相互作用中的地球化学行为及其作用,详细研究了陶恩窗(奥地利)的石英岩-石英偏析及其邻近的主体代谢物。在T = 500至550℃/ P时形成的偏析远大于0.6 GPa,这是由于主体异位沸石的脱水作用所致。在偏析的形成过程中,稀土元素稀土元素La到Tb和Dy到Lu进行了地球化学解耦。 La-Tb在异位沸石中掺入尿囊石中,并通过液相从基质岩石中浸出。 La到Tb的这种解耦和浸出作用极大地改变了从富集的LREE到贫化的LREE隔离带附近岩体岩石的REE模式。基于对La,Ce,Nd,Sm和Eu的质量平衡计算,计算了从中析出偏析的流体的成分。流体富含(La / Sm)(N)= 3.7的LREE。单个REE含量范围从Eu = 2.4 +/- 1.1 ppm到Ce = 90 +/- 20 ppm,Sigma REE = 190 +/- 50 ppm。计算得出的分配系数D-REE(沸石/流体)通常<1,并且从D-La(沸石/流体)= 0.08 +/- 0.02到D-Eu(沸石/流体)= 0.8 +/- 0.4增大,表明绿泥石对MREE的偏好要强于LREE。为了描述在沸石和流体之间La相对于Sm的分馏,计算在沸石和流体之间的La-Sm交换系数。导出的交换系数K-D(La / Sm)(沸石/流体)= 0.2 +/- 0.1表明,与沸石混合的流体比共存的沸石具有更高的La / Sm比三至十倍。版权所有(C)2001 Elsevier Science Ltd. [参考:41]

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