Qin Liping, Dauphas Nicolas, Janney Philip E, Wadhwa Meenakshi
Department of the Geophysical Sciences, The University of Chicago, Illinois 60637, USA.
Anal Chem. 2007 Apr 15;79(8):3148-54. doi: 10.1021/ac062040c. Epub 2007 Mar 8.
A procedure was developed to accurately measure the W isotopic compositions of iron meteorites with a precision of better than +/-0.1 epsilon on epsilon182W and epsilon184W (normalized to 186W/183W). Purification of W was achieved through a two-step, ion-exchange procedure. In most cases, the yield is better than 80%, and purified W solutions are clear of matrix elements and direct isobars of W. The final W solutions were analyzed using a Micromass Isoprobe multicollector inductively coupled plasma mass spectrometer (MC-ICPMS). Tests performed on mixtures of terrestrial standards and meteorite samples demonstrate that the method is accurate and that epsilon182W variations as small as approximately 0.1 epsilon can be detected. Analyses of three different aliquots of the Gibeon (IVA) iron meteorite obtained over a period of 6 months show identical epsilon182W values with a weighted mean of 3.38 +/- 0.05, consistent with literature data for IVA iron meteorites, and indicating that the metal-silicate differentiation event in its parent body was either contemporaneous with or slightly postdated (by up to approximately 2.5 My) the formation of refractory inclusions. We demonstrate our ability to measure epsilon184W accurately and precisely (within +/-0.1 epsilon), which is useful for characterizing cosmogenic and nucleosynthetic effects that may be present in iron meteorites. We also report for the first time measurements of epsilon180W, albeit with large error bars (<+/-4 epsilon, in most cases).
开发了一种程序,用于精确测量铁陨石的钨同位素组成,其在ε182W和ε184W(相对于186W/183W归一化)上的精度优于±0.1 ε。通过两步离子交换程序实现钨的纯化。在大多数情况下,产率优于80%,纯化后的钨溶液不含基体元素和钨的直接同量异位素。最终的钨溶液使用Micromass Isoprobe多接收电感耦合等离子体质谱仪(MC-ICPMS)进行分析。对地球标准物质和陨石样品混合物进行的测试表明,该方法是准确的,并且可以检测到小至约0.1 ε的ε182W变化。在6个月内获得的吉布森(IVA)铁陨石的三个不同等分试样的分析显示,ε182W值相同,加权平均值为3.38±0.05,与IVA铁陨石的文献数据一致,表明其母体中的金属-硅酸盐分异事件与难熔包体的形成同时发生或稍晚发生(最多约250万年)。我们展示了准确和精确测量ε184W(在±0.1 ε范围内)的能力,这对于表征铁陨石中可能存在的宇宙成因和核合成效应很有用。我们还首次报告了ε180W的测量结果,尽管误差较大(大多数情况下<±4 ε)。