首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Evidence from Tm anomalies for non-CI refractory lithophile element proportions in terrestrial planets and achondrites
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Evidence from Tm anomalies for non-CI refractory lithophile element proportions in terrestrial planets and achondrites

机译:来自Tm异常的证据表明地球行星和陨石中非CI难熔的亲石元素比例

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Thulium is a heavy rare earth element (REE) whose geochemical behavior is intermediate between Er and Yb, and that is not expected to be decoupled from these elements during accretion of planetary bodies and geological processes. However, irregularities in REE volatilities at higher temperature could have decoupled the REEs relative to one another during the early stages of condensation of the solar nebula. Indeed, positive Tm anomalies are found in some refractory inclusions from carbonaceous chondrites, and it is possible that large scale nebular reservoirs displaying positive or negative Tm anomalies were formed during the early history of the solar system. We analyzed a series of meteorites and terrestrial rocks in order to evaluate the existence of Tm anomalies in planetary materials. Relative to CIs (Ivuna-type carbonaceous chondrites), carbonaceous chondrites display unresolved or positive Tm anomalies, while most of the noncarbonaceous chondrites show slightly negative Tm anomalies. Quantification of these anomalies in terrestrial samples is complicated when samples display fractionated heavy REE patterns. Taking this effect into account, we show that the Earth, Mars, Vesta, the aubrite and ureilite parent bodies display small negative anomalies (Tm/Tm* approximate to 0.975), very similar to those found in ordinary and enstatite chondrites. We suggest that a slight negative Tm anomaly relative to CI is a widespread feature of the materials from the inner solar system. This finding suggests that CI chondrites may not be appropriate for normalizing REE abundances of most planetary materials as they may be enriched in a high-temperature refractory component with non-solar composition. The presence of Tm anomalies at a bulk planetary scale is, to this day, the strongest piece of evidence that refractory lithophile elements are not present in constant CI proportions in planetary bodies. (C) 2015 Elsevier Ltd. All rights reserved.
机译:is是一种重稀土元素(REE),其地球化学行为介于Er和Yb之间,并且在行星体和地质过程中不会与这些元素脱钩。但是,在太阳星云凝结的早期阶段,较高温度下稀土元素挥发度的不规则性可能使稀土元素彼此解耦。确实,在碳质球粒陨石的一些难熔夹杂物中发现了正Tm异常,并且在太阳系的早期历史中可能形成了显示正Tm异常或负Tm异常的大型星云状储层。为了分析行星材料中Tm异常的存在,我们分析了一系列的陨石和陆地岩石。相对于CI(Ivuna型碳质球粒陨石),碳质球粒陨石显示出未解决的Tm异常或为正值,而大多数非碳质球粒陨石显示出略为负的Tm异常。当样品显示分级的重稀土元素模式时,对地面样品中的这些异常进行量化非常复杂。考虑到这种影响,我们表明地球,火星,维斯塔,铁矾石和点彩石母体显示出较小的负异常(Tm / Tm *约为0.975),与普通和辉长陨石球体中的异常非常相似。我们建议,相对于CI而言,轻微的Tm负异常是来自内部太阳系的材料的普遍特征。这一发现表明,CI球粒陨石可能不适用于标准化大多数行星材料的REE丰度,因为它们可能富含具有非太阳能成分的高温耐火材料。迄今为止,在整个行星尺度上都存在Tm异常,这是最有力的证据,表明在行星体内CI比例恒定时不存在难熔的亲石元素。 (C)2015 Elsevier Ltd.保留所有权利。

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