Experimental determination of fractionation of11B/10B between tourmaline and aqueous vapor: A temperature- and pressure-dependent isotopic system

M.R. Palmer , D. London , G.B. Morgan VI , H.A. Babb
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引用次数: 157

Abstract

The extent of boron isotope fractionation between tourmaline and aqueous vapor has been determined over theP−T range 50–200 MPa and 350–750°C. The results show that the extent of fractionation is inversely dependent on temperature. An unusual feature of the reaction is that the isotope fractionation is less of extensive at higher pressures for an equivalent temperature. Due to its refractory nature the experiments involved synthesis of tourmaline from constituents rather than equilibration of the preformed mineral with an isotopically distinct aqueous phase. For this reason we cannot, as yet, be certain whether the pressure effect is the result of equilibrium or kinetic processes.

电气石和水蒸气之间11b /10B分馏的实验测定:一个温度和压力相关的同位素系统
在50-200 MPa和350-750℃的温度范围内,测定了电气石和水蒸气之间硼同位素分馏的程度。结果表明,分馏程度与温度成反比。该反应的一个不寻常的特点是,在同等温度下,在较高的压力下,同位素分馏较少或广泛。由于电气石的难熔性,实验涉及从成分合成电气石,而不是用同位素不同的水相平衡预成型矿物。因此,我们还不能确定压力效应是平衡过程的结果还是动力学过程的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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