Retzmann A, Zimmermann T, Pröfrock D, Prohaska T, Irrgeher J
Department of Chemistry, Division of Analytical Chemistry, VIRIS Laboratory, University of Natural Resources and Life Sciences Vienna, Konrad-Lorenz-Str. 24, 3430, Tulln, Austria.
Institute of Coastal Research, Marine Bioanalytical Chemistry, Helmholtz-Centre Geesthacht, Max-Planck Str. 1, 21502, Geesthacht, Germany.
Anal Bioanal Chem. 2017 Sep;409(23):5463-5480. doi: 10.1007/s00216-017-0468-6. Epub 2017 Jul 4.
A novel, fast and reliable sample preparation procedure for the simultaneous separation of Sr, Pb, and Nd has been developed for subsequent isotope ratio analysis of sediment digests. The method applying a fully automated, low-pressure chromatographic system separates all three analytes in a single-stage extraction step using self-packed columns filled with DGA Resin. The fully automated set-up allows the unattended processing of three isotopic systems from one sediment digest every 2 h, offering high sample throughput of up to 12 samples per day and reducing substantially laboratory manpower as compared to conventional manual methods. The developed separation method was validated using the marine sediment GBW-07313 as matrix-matched certified reference material and combines quantitative recoveries (>90% for Sr, >93% for Pb, and >91% for Nd) with low procedural blank levels following the sample separation (0.07 μg L Sr, 0.03 μg L Pb, and 0.57 μg L Nd). The average δ values for Sr, Pb, and Nd of the separated reference standards were within the certified ranges (δ (Sr/Sr) of -0.05(28) ‰, δ(Pb/Pb) of -0.21(14) ‰, and δ(Nd/Nd) of 0.00(7) ‰). The DGA Resin proved to be reusable for the separation of >10 sediment digests with no significant carry-over or memory effects, as well as no significant on-column fractionation of Sr, Pb, and Nd isotope ratios. Additional spike experiments of NIST SRM 987 with Pb, NIST SRM 981 with Sr, and JNdi-1 with Ce revealed no significant impact on the measured isotopic ratios, caused by potential small analyte peak overlaps during the separation of Sr and Pb, as well as Ce and Nd.
已开发出一种新颖、快速且可靠的样品制备程序,用于同时分离锶(Sr)、铅(Pb)和钕(Nd),以便对沉积物消解物进行后续同位素比值分析。该方法采用全自动低压色谱系统,使用填充有二甘醇酰胺(DGA)树脂的自装柱,在单步萃取过程中分离所有三种分析物。这种全自动装置允许每2小时无人值守地处理来自一份沉积物消解物的三个同位素系统,与传统手动方法相比,每天的样品通量高达12个,大大减少了实验室人力。使用海洋沉积物GBW - 07313作为基体匹配的有证标准物质对所开发的分离方法进行了验证,该方法在样品分离后具有定量回收率(锶>90%、铅>93%、钕>91%)以及低程序空白水平(0.07 μg/L锶、0.03 μg/L铅和0.57 μg/L钕)。分离出的参考标准物质中锶、铅和钕的平均δ值在认证范围内(δ(Sr/Sr)为 - 0.05(28)‰、δ(Pb/Pb)为 - 0.21(14)‰、δ(Nd/Nd)为0.00(7)‰)。事实证明,DGA树脂可重复用于分离超过10份沉积物消解物,不存在明显的残留或记忆效应,锶、铅和钕同位素比值也不存在明显的柱上分馏现象。对NIST SRM 987加铅、NIST SRM 981加锶以及JNdi - 1加铈(Ce)的额外加标实验表明,在锶和铅以及铈和钕分离过程中,潜在的小分析物峰重叠对测量的同位素比值没有显著影响。