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首页> 外文期刊>Analytica chimica acta >Simultaneous determination of neodymium and samarium in silicate rocks and minerals by isotope dilution inductively coupled plasma mass spectrometry: Results on twenty geochemical reference samples
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Simultaneous determination of neodymium and samarium in silicate rocks and minerals by isotope dilution inductively coupled plasma mass spectrometry: Results on twenty geochemical reference samples

机译:同位素稀释电感耦合等离子体质谱法同时测定硅酸盐岩和矿物中的钕和sa:二十个地球化学参考样品的结果

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摘要

A series of experiments was performed to test the feasibility and the advantages of the determination of Nd and Sm in igneous rocks and minerals by isotope dilution (ID) carried out by inductively coupled plasma quadrupole mass spectrometry (ICP-MS). The main advantage of this method, compared to isotope dilution analyses using thermal ionization mass spectrometers (TIMS), is the high sample throughput. This mainly arises (i) from the direct measurement of the solutions obtained from the acid attack on rock powders using a HF + HNO3 mixture without any chemical separation procedure, (ii) from the sampling of rock solutions at atmospheric pressure and (iii) from the short time of analysis (about 10 min/sample). In comparison with conventional ICP-MS, the proposed method, is less sensitive to all the possible causes of signal drift and does not need matrix-matched standards. Results obtained for international and in-house igneous rock standards, in a very wide range of Nd and Sm concentrations and Sm/Nd ratios, compared also with TIMS/ID and ICP-MS data, indicate an accuracy generally better than 5% and a precision about one order of magnitude better than external calibration ICP-MS. (C) 1997 Elsevier Science B.V.
机译:进行了一系列实验,以测试通过电感耦合等离子体四极杆质谱(ICP-MS)进行同位素稀释(ID)测定火成岩和矿物中Nd和Sm的可行性和优势。与使用热电离质谱仪(TIMS)进行同位素稀释分析相比,此方法的主要优点是样品通量高。这主要是由于(i)使用HF + HNO3混合物直接测量酸对岩石粉末的侵蚀而无需任何化学分离程序而获得的溶液;(ii)在大气压下对岩石溶液进行采样;以及(iii)分析时间短(大约10分钟/样品)。与传统的ICP-MS相比,该方法对所有可能的信号漂移原因不太敏感,并且不需要矩阵匹配的标准。与TIMS / ID和ICP-MS数据相比,在很宽的Nd和Sm浓度以及Sm / Nd比范围内,针对国际和内部火成岩标准所获得的结果表明,精度通常优于5%,并且精度大约比外部校准ICP-MS高一个数量级。 (C)1997年Elsevier Science B.V.

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