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Development of Argon Isotope Reference Standards for the U.S. Geological Survey

机译:为美国地质调查局开发氩同位素参考标准

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摘要

The comparison of physical ages of geological materials measured by laboratories engaged in geochronological studies has been limited by the accuracy of mineral standards or monitors for which reported ages have differed by as much as 2 %. In order to address this problem, the U.S. Geological Survey is planning to calibrate the conventional 40Ar/40K age of a new preparation of an international hornblende standard labeled MMhb-2. The 40K concentration in MMhb-2 has already been determined by the Analytical Chemistry Division at NIST with an uncertainty of 0.2 %. The 40Ar concentration will be measured by the USGS using the argon isotope reference standards that were recently developed by NIST and are described in this paper. The isotope standards were constructed in the form of pipette/reservoir systems and calibrated by gas expansion techniques to deliver small high-precision aliquots of high-purity argon. Two of the pipette systems will deliver aliquots of 38Ar having initial molar quantities of 1.567 × 10−10 moles and 2.313 × 10−10 moles with expanded (k = 2) uncertainties of 0.058 % and 0.054 %, respectively. Three other pipette systems will deliver aliquots (nominally 4 × 10−10 moles) of 40Ar:36Ar artificial mixtures with similar accuracy and with molar ratios of 0.9974 ± 0.06 %, 29.69 ± 0.06 %, and 285.7 ± 0.08 % (k = 2). These isotope reference standards will enable the USGS to measure the 40Ar concentration in MMhb-2 with an expanded uncertainty of ≈ 0.1 %. In the process of these measurements, the USGS will re-determine the isotopic composition of atmospheric Ar and calculate a new value for its atomic weight. Upon completion of the USGS calibrations, the MMhb-2 mineral standard will be certified by NIST for its K and Ar concentrations and distributed as a Standard Reference Material (SRM). The new SRM and the NIST-calibrated transportable pipette systems have the potential for dramatically improving the accuracy of interlaboratory calibrations and thereby the measured ages of geological materials, by as much as a factor of ten.
机译:由从事年代学研究的实验室所测量的地质材料的物理年龄的比较受到矿物标准或监测器准确性的限制,而矿物标准或监测器的报告年龄相差多达2%。为了解决这个问题,美国地质调查局正计划校准新制备的标记为MMhb-2的国际角闪石标准品的常规 40 Ar / 40 K年龄。 。 NIST的分析化学部门已经确定MMhb-2中的 40 K浓度,不确定度为0.2%。 USGS使用NIST最近开发的氩同位素参考标准测量 40 Ar浓度,并在本文中进行了描述。同位素标准液以移液管/储液器系统的形式构建,并通过气体膨胀技术进行校准,以提供高纯度氩气的少量高精度等分试样。两个移液器系统将提供等分的 38 Ar,其初始摩尔量为1.567×10 -10 摩尔和2.313×10 -10 摩尔(k = 2)的不确定度分别为0.058%和0.054%。其他三个移液器系统将提供等分(<4> 10 −10 摩尔) 40 Ar: 36 Ar人工混合物的等分试样摩尔比为0.9974±0.06%,29.69±0.06%和285.7±0.08%(k = 2)。这些同位素参考标准将使USGS能够测量MMhb-2中 40 Ar的浓度,不确定度扩展为≈0.1%。在进行这些测量的过程中,USGS将重新确定大气Ar的同位素组成,并为其原子量计算一个新值。完成USGS校准后,MMhb-2矿物标准品将通过NIST的K和Ar浓度认证,并作为标准参考材料(SRM)分发。新的SRM和经过NIST校准的便携式移液器系统具有显着提高实验室间校准的准确性的潜力,从而可以将地质材料的测量年龄提高多达10倍。

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