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Hydrothermal controls on the genesis of REE deposits: Insights from an in situ XAS study of Yb solubility and speciation in high temperature fluids (T < 400 degrees C)

机译:REE矿床成因的热液控制:对高温流体(T <400摄氏度)中Yb溶解度和形态的原位XAS研究的真知灼见

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High pressure-high temperature experiments are used to investigate the effect of temperature, pH and fluid composition on the transport and deposition of REE and provide constraints on the role of hydrothermal fluids in the formation of rare metal deposits. In situ X-ray absorption (XAS) measurements were conducted at 50 MPa to determine simultaneously the solubility of Yb compounds (Yb2O3, Yb2Si2O7 and YbPO4) and Yb speciation from 200 to 350-400 degrees C in fluids involving Cl, F and P ligands. Yb concentrations were monitored down to tens of ppm from the height of the absorption edge while XANES and EXAFS analyses were used to refine the aqueous speciation of Yb in the high temperature fluids. The XAS analysis suggests that Yb solubility is retrograde from 200 degrees C and that 10 to 100 ppm Yb can be dissolved in acidic fluids (pH < 2) at T < 400 degrees C, most probably as Yb[(H2O)(7,8)](3+) species. Increasing pH and adding phosphorus trigger the precipitation of Yb compounds from 200 to 400 degrees C. Hence buffering of acid orthomagmatic fluids and leaching of P from host rocks could be major mechanisms in the development of (H)REE enrichments in magmatic-hydrothermal systems. Crown Copyright (C) 2015 Published by Elsevier B.V. All rights reserved.
机译:高压高温实验用于研究温度,pH和流体组成对REE的传输和沉积的影响,并限制了热液在稀有金属矿床形成中的作用。在50 MPa下进行原位X射线吸收(XAS)测量,以同时测定Yb化合物(Yb2O3,Yb2Si2O7和YbPO4)的溶解度以及200至350-400摄氏度下Yb形态在涉及Cl,F和P配体的流体中。监测Yb的浓度,使其从吸收边缘的高度下降至数十ppm,同时使用XANES和EXAFS分析来完善高温流体中Yb的水形态。 XAS分析表明,Yb的溶解度从200摄氏度开始逆行,并且在T <400摄氏度时,Yb可以溶解在酸性流体(pH <2)中,最有可能是Yb [(H2O)(7,8) )](3+)种。增加pH值和添加磷会触发Yb化合物从200到400摄氏度的沉淀。因此,酸性正磁流体的缓冲和P从基质岩石中的浸出可能是岩浆热液系统(H)REE富集发展的主要机制。 Crown版权所有(C)2015,Elsevier B.V.保留所有权利。

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