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REE profiling in basic volcanic rocks after ultrasonic sample treatment and ICPMS analysis with oxide ion formation in ICP enriched with O-2

机译:在超声波样品处理和ICPMS分析富含ICP中氧化物离子形成后的ICPMS分析富含O-2的氧化物离子形成

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ICP-MS methods, and its variants, had been extensively used to determine REEs due to their lower detection limits, high sensitivity and dynamic linear range. However, spectral interferences caused by oxide and hydroxide ions always represents an issue regardless the type of sample been dealt. In the present work it was described the study of REEs oxides formation with the introduction of an auxiliary line directly to the cyclonic chamber to generate a mix Ar/O-2 plasma. Plasma conditions were optimized by studying and selecting the best flow rates to induce the formation of REEs oxides. A new analytical method for REE determination was thus proposed using ICPMS with Ar-O2 mixed plasma to aid the formation of MO ions. This method was validated through CRM analysis and through the analysis of real-world samples. The REE concentrations evaluated and normalized to chondrite REE levels allowed the analysis of basaltic rocks study in terms of their origin. (C) 2016 Elsevier B.V. All rights reserved.
机译:ICP-MS方法及其变体已经广泛地用于确定由于其较低的检测限,高灵敏度和动态线性范围而导致的REES。然而,由氧化物和氢氧化物离子引起的光谱干扰始终代表一个问题,无论是否已处理样品类型。在本作工作中,描述了Rees氧化物的研究通过将辅助线的形成直接与旋风室引入旋风室以产生混合物Ar / O-2等离子体。通过研究和选择最佳流速来优化血浆条件以诱导芦苇氧化物的形成。因此,使用具有Ar-O2混合等离子体的ICPM提出了一种新的REE测定的分析方法,以帮助形成Mo离子。通过CRM分析验证该方法,并通过对现实世界样本的分析来验证。评估并标准化的REE浓度允许在其来源方面分析玄武岩岩石研究。 (c)2016年Elsevier B.v.保留所有权利。

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