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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Determination of zircon/melt trace element partition coefficients from SIMS analysis of melt inclusions in zircon [Review]
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Determination of zircon/melt trace element partition coefficients from SIMS analysis of melt inclusions in zircon [Review]

机译:通过SIMS分析锆石中的熔体夹杂物确定锆石/熔体中痕量元素的分配系数[点评]

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摘要

Partition coefficients for rare earth elements (REE) (La, Ce, Nd, Sm, Dy, Er and Yb) and other trace elements (Ba, Rb, B, Sr, Ti, Y and Nb) between zircon and melt have been calculated from secondary ion mass spectrometric (SIMS) analyses of zircon/melt inclusion pairs. The melt inclusion-mineral (MIM) technique shows that D-REE increase in compatibility with increasing atomic number, similar to results of previous studies. However, D-REE determined using the MIM technique are, in general, lower than previously reported values. Calculated D-REE indicate that light REE with atomic numbers less than Sm are incompatible in zircon and become more incompatible with decreasing atomic number. This behavior is in contrast to most previously published results which indicate D > 1 and define a flat partitioning pattern for elements from La through Sm. The partition coefficients for the heavy REE determined using the MIM technique are lower than previously published results by factors of approximate to15 to 20 but follow a similar trend. These differences are thought to reflect the effects of mineral and/or glass contaminants in samples from earlier studies which employed bulk analysis techniques. D-REE determined using the MIM technique agree well with values predicted using the equations of Brice (1975), which are based on the size and elasticity of crystallographic sites. The presence of Ce4+ in the melt results in elevated D-Ce compared to neighboring REE due to the similar valence and size of Ce4+ and Zr4+. Predicted D-zircom/melt values for Ce4+ and Ce3+ indicate that the Ce4+/Ce3+ ratios of the melt ranged from about 10(-3) to 10(-2). Partition coefficients for other trace elements determined in this study increase in compatibility in the order Ba < Rb < B < Sr < Ti < Y < Nb, with Ba, Rb, B and Sr showing incompatible behavior (D-M < 1.0), and Ti, Y and Nb showing compatible behavior (D-M > 1.0). The effect of partition coefficients on melt evolution during petrogenetic modeling was examined using partition coefficients determined in this study and compared to trends obtained using published partition coefficients. The lower D-REE determined in this study result in smaller REE bulk distribution coefficients, for a given mineral assemblage, compared to those calculated using previously reported values. As an example, fractional crystallization of an assemblage composed of 35% hornblende, 64.5% plagioclase and 0.5% zircon produces a melt that becomes increasingly more enriched in Yb using the D-Yb from this study. Using D-Yb from Fujimaki (1986) results in a melt that becomes progressively depleted in Yb during crystallization. Copyright (C) 2002 Elsevier Science Ltd. [References: 102]
机译:计算了锆石和熔体之间稀土元素(REE)(La,Ce,Nd,Sm,Dy,Er和Yb)和其他痕量元素(Ba,Rb,B,Sr,Ti,Y和Nb)的分配系数锆石/熔体夹杂物对的二次离子质谱(SIMS)分析。矿物熔体矿物(MIM)技术表明,D-REE的相容性随着原子序数的增加而增加,与先前的研究结果相似。但是,使用MIM技术确定的D-REE通常低于先前报告的值。计算得出的D-REE表明,原子序数小于Sm的轻REE在锆石中不相容,并且随着原子序数的减少变得更加不相容。此行为与大多数以前发表的结果相反,后者表明D> 1并定义了从La到Sm的元素的平坦分配模式。使用MIM技术确定的重稀土元素的分配系数比以前发表的结果低约15至20倍,但遵循相似的趋势。这些差异被认为反映了采用大量分析技术的早期研究样品中的矿物和/或玻璃污染物的影响。使用MIM技术确定的D-REE与使用Brice(1975)方程式预测的值非常吻合,该方程式基于晶体学位点的大小和弹性。与邻近的REE相比,熔体中Ce4 +的存在导致D-Ce升高,这是由于Ce4 +和Zr4 +的化合价和尺寸相似。 Ce4 +和Ce3 +的预测D-Zircom /熔体值表明熔体的Ce4 + / Ce3 +比在大约10(-3)至10(-2)的范围内。本研究中确定的其他痕量元素的分配系数按Ba 1.0)。使用这项研究中确定的分配系数检查了分配系数对成岩建模过程中熔体演化的影响,并将其与使用已发布的分配系数获得的趋势进行了比较。与使用先前报告的值计算出的D-REE相比,对于给定的矿物组合,本研究中确定的较低D-REE导致较小的REE体积分布系数。例如,由35%角闪石,64.5%斜长石和0.5%锆石组成的组件的分步结晶会产生熔体,使用本研究的D-Yb,熔体中的Yb越来越多。使用来自Fujimaki(1986)的D-Yb导致熔体在结晶过程中逐渐逐渐耗尽Yb。版权所有(C)2002 Elsevier Science Ltd. [参考:102]

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