...
首页> 外文期刊>Chemical geology >Precise Pb isotope ratio determination of picogram-size samples: A comparison between multiple Faraday collectors equipped with 10(12) Omega amplifiers and multiple ion counters
【24h】

Precise Pb isotope ratio determination of picogram-size samples: A comparison between multiple Faraday collectors equipped with 10(12) Omega amplifiers and multiple ion counters

机译:皮克大小的样品的精确铅同位素比测定:配备10(12)Omega放大器的多个法拉第收集器和多个离子计数器的比较

获取原文
获取原文并翻译 | 示例
           

摘要

While typical ion-counting peak hopping methods using a single Daly detector or a single secondary electron multiplier have proven very effective in analyzing small Pb samples by TIMS, the measurements often require long acquisition times, typically of several hours. Here we compare and evaluate static multi-collector determination of Pb isotope ratios in samples containing between 100 and 1 pg total Pb using Faraday detectors, equipped with 10(12) Omega feedback resistors in the current amplifier system, versus a multiple ion counting (MIC) system, installed in a Triton Plus TIMS. Faraday cup measurements of pg size Pb samples using 10(12) Omega amplifiers require precise measurement of long baselines for optimal repeatability (defined as internal precision or the precision of a single run) and intermediate precision (defined as the closeness of the replicated measurements over an extended period of time). In our system, using a 20 min baseline before and after the measurement, we achieved a repeatability of 0.02-0.03% (2SE) and an intermediate precision of 0.05% (2SD) on Pb-207/Pb-206 and Pb-208/Pb-206 in as little as 1 h for samples containing between 80 and 10 pg Pb. This is equivalent to the performance obtained from a 4 to 5 hour-long single SEM peak hopping analysis of larger (10.0-0.5 ng) samples. For measurements in MIC mode, the main analytical uncertainty is the relative instability of the detector yields, which is 0.1-0.3% (2SD; following a 1 hour detector stabilization period). Using a correction based on the average yield measured before and after sample analysis, we achieved a repeatability of 0.03%-0.06% (2SE) and an intermediate precision of 0.18%-0.23% (2SD) on Pb-207/Pb-206 for 80 to 10 pg loads. For sample sizes between 10 and 1 pg, which were only measured in MIC mode because the Pb-204 intensity is below detection limit in Faraday mode, the main source of uncertainty is the variable loading blank contribution (5-15%). We conclude that a Faraday array equipped with 10(12) Omega amplifiers performs very well for Pb sample load sizes down to 10 pg, allowing much more rapid data acquisition than peak-hoping SEM measurements and producing data that is 4-5 times more precise than static MIC measurements. In contrast, the MIC system offers considerable promise for tracer Pb work in the sub-10 pg Pb analyte range where data with a few % level of accuracy and precision are useful, providing that acceptable total procedural blanks (below 0.1 pg) can be achieved. (C) 2014 Elsevier B. V. All rights reserved.
机译:尽管已证明使用单个Daly检测器或单个二次电子倍增器的典型离子计数峰跳方法在通过TIMS分析小Pb样品中非常有效,但测量通常需要较长的采集时间,通常需要几个小时。在这里,我们使用法拉第检测器(在电流放大器系统中配备了10(12)Omega反馈电阻器)与多次离子计数(MIC)进行比较,并评估通过静态多收集器测定的总铅含量介于100和1 pg之间的铅中铅的静态同位素比)系统,安装在Triton Plus TIMS中。使用10(12)Omega放大器对pg大小的Pb样品进行法拉第杯测量需要对长基线进行精确测量,以实现最佳重复性(定义为内部精度或单次运行的精度)和中间精度(定义为重复测量的接近度)延长的时间)。在我们的系统中,使用测量前后的20分钟基线,我们在Pb-207 / Pb-206和Pb-208 /上获得了0.02-0.03%(2SE)的可重复性,以及0.05%(2SD)的中间精度。对于包含80至10 pg铅的样品,仅需1小时即可获得Pb-206。这相当于从较大(10.0-0.5 ng)样品进行4到5小时的单SEM跳峰分析获得的性能。对于以MIC模式进行的测量,主要的分析不确定性是探测器收率的相对不稳定,为0.1-0.3%(2SD;在经过1小时的探测器稳定期后)。使用基于样品分析之前和之后测得的平均产率的校正,我们在Pb-207 / Pb-206上获得了0.03%-0.06%(2SE)的可重复性和0.18%-0.23%(2SD)的中间精度。 80至10 pg负载。对于10到1 pg之间的样本大小(仅在MIC模式下测量,因为Pb-204强度低于法拉第模式下的检测极限),不确定性的主要来源是可变的空白空白贡献(5-15%)。我们得出的结论是,配备有10(12)Omega放大器的法拉第阵列在低至10 pg的Pb样品负载量下表现出色,与峰跃迁SEM测量相比,可以更快地获取数据,并产生4-5倍的精确数据比静态MIC测量。相比之下,MIC系统为在小于10 pg的Pb分析物范围内的示踪Pb工作提供了可观的前景,在这种情况下,具有少量准确度和精密度水平的数据是有用的,前提是可以实现可接受的总程序空白(低于0.1 pg) 。 (C)2014 Elsevier B. V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号