首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Accurate Measurement of Rare Earth Elements by ICP‐MS after Ion‐Exchange Separation: Application to Ultra‐Depleted Samples
Authors:Marc Ulrich  Sarah Bureau  Catherine Chauvel  Christian Picard
Institution:1. PPME, EA 3325, Université de la Nouvelle‐Calédonie, 98851, Nouméa, New‐Caledonia, France;2. ISTerre, CNRS, Université Grenoble 1, BP 53, 38041 Grenoble, France;3. UMR 6249 Chrono‐environnement, Université de Franche Comté, 25000, Besan?on, France
Abstract:This study reports precise and accurate data for rare earth elements (REE) measured on eight geological reference materials, five enriched in REE (BE‐N, BHVO‐2, BR, BR‐24 and RGM‐1) and three very depleted in REE (BIR‐1, UB‐N and DTS‐2). Data were acquired by quadrupole ICP‐MS after isolation of the REE using an ion‐exchange chromatography procedure. All the measured REE abundances were similar within ≈ 5% (10% for the most REE‐depleted sample DTS‐2) to the high‐quality measurements previously published in the literature. We also show that by using an internal Tm spike, the reproducibility of the data was improved to ~ 1%. Applying this technique to the analysis of ultra‐depleted rock samples (sub ng g?1), we show that significant improvements were obtained relative to the routine trace element measurement method. The chondrite‐normalised patterns were smooth instead of displaying irregularities. Although the classical method gives excellent results on REE‐rich samples, we believe that our technique improves the precision and accuracy of measurements for highly REE‐depleted rocks.
Keywords:REE  quadrupole ICP‐MS  ion‐exchange  cation resin  ultramafic rocks  REE  ICP‐MS quadripolaire  é  change d’  ions    sine cationique  roches ultramafiques
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号