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采用电感耦合等离子体质谱扇形场质谱法测定纳克级天然碳酸盐稀土元素。

Measurements of natural carbonate rare earth elements in femtogram quantities by inductive coupled plasma sector field mass spectrometry.

机构信息

High-Precision Mass Spectrometry and Environment Change Laboratory (HISPEC), Department of Geosciences, National Taiwan University, Taipei, Taiwan 106, R.O.C.

出版信息

Anal Chem. 2011 Sep 1;83(17):6842-8. doi: 10.1021/ac201736w. Epub 2011 Aug 3.

DOI:10.1021/ac201736w
PMID:21774547
Abstract

A rapid and precise standard-bracketing method has been developed for measuring femtogram quantity rare earth element (REE) levels in natural carbonate samples by inductively coupled plasma sector field mass spectrometry that does not require chemical separation steps. A desolvation nebulization system was used to effectively reduce polyatomic interference and enhance sensitivity. REE/Ca ratios are calculated directly from the intensities of the ion beams of (46)Ca, (139)La, (140)Ce, (141)Pr, (146)Nd, (147)Sm, (153)Eu, (160)Gd, (159)Tb, (163)Dy, (165)Ho, (166)Er, (169)Tm, (172)Yb, and (175)Lu using external matrix-matched synthetic standards to correct for instrumental ratio drifting and mass discrimination. A routine measurement time of 3 min is typical for one sample containing 20-40 ppm Ca. Replicate measurements made on natural coral and foraminiferal samples with REE/Ca ratios of 2-242 nmol/mol show that external precisions of 1.9-6.5% (2 RSD) can be achieved with only 10-1000 fg of REEs in 10-20 μg of carbonate. We show that different sources for monthly resolved coral ultratrace REE variability can be distinguished using this method. For natural slow growth-rate carbonate materials, such as sclerosponges, tufa, and speleothems, the high sample throughput, high precision, and high temporal resolution REE records that can be produced with this procedure have the potential to provide valuable time-series records to advance our understanding of paleoclimatic and paleoenvironmental dynamics on different time scales.

摘要

一种快速、精确的标准内标法已经被开发出来,用于通过电感耦合等离子体扇形场质谱法测量天然碳酸盐样品中痕量稀土元素(REE)的含量,该方法不需要化学分离步骤。使用去溶雾化系统可以有效地减少多原子干扰并提高灵敏度。通过使用外部基质匹配合成标准物来校正仪器比漂移和质量歧视,可以直接从 (46)Ca、(139)La、(140)Ce、(141)Pr、(146)Nd、(147)Sm、(153)Eu、(160)Gd、(159)Tb、(163)Dy、(165)Ho、(166)Er、(169)Tm、(172)Yb 和 (175)Lu 的离子束强度计算 REE/Ca 比值。对于一个含有 20-40 ppm Ca 的样品,典型的常规测量时间为 3 分钟。对具有 2-242 nmol/mol REE/Ca 比值的天然珊瑚和有孔虫样品进行重复测量,结果表明,使用该方法可以在 10-20 μg 碳酸盐中仅含有 10-1000 fg REE 的情况下,实现 1.9-6.5%(2 RSD)的外部精密度。我们表明,使用这种方法可以区分不同来源的每月分辨珊瑚超痕量 REE 变化。对于天然生长速度较慢的碳酸盐材料,如硬珊瑚、钙华和钟乳石,该方法具有高通量、高精度和高时间分辨率的 REE 记录潜力,可以提供有价值的时间序列记录,以促进我们对不同时间尺度上古气候和古环境动态的理解。

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