首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The formation of NeH+ in static vacuum mass spectrometers and re-determination of Ne-21/Ne-20 of air
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The formation of NeH+ in static vacuum mass spectrometers and re-determination of Ne-21/Ne-20 of air

机译:Neh +在静态真空质谱仪中形成并重新确定Ne-21 / Ne-20的空气

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摘要

Air-derived neon is used for routine calibration of magnetic sector mass spectrometers, principally for determining sensitivity and mass discrimination for Ne isotope determinations. The commonly accepted Ne-21/Ne-20 ratio of air (0.002959 +/- 0.000022; Eberhardt et al. (1965) does not take account of the contribution of (NeH+)-Ne-20 at m/z = 21. Honda et al. (2015) and Wielandt and Storey (2019) have recently re-determined the Ne-21/Ne-20(air) by resolving (NeH+)-Ne-20 from Ne-21(+). The Ne-21/Ne-20(air) values of the two studies differ by 1.8%, beyond the uncertainty of the measurements (+/- <0.1%). We have developed a protocol for precise determination of NeH+ in air using a low-resolution Thermo Fisher ARGUS VI mass spectrometer and use it to re-determine the Ne-21/Ne-20 of air. (NeH+)-Ne-22/Ne-22(+) measured at different H-2(+) and Ne+ intensities reveal that (i) the partial pressure of H-2(+) in the instrument is the primary control on NeH+ production, and (ii) increasing Ne+ pressure suppresses the formation of NeH+. Calibration curves of (NeH+)-Ne-22/Ne-22(+) vs. Ne-22(+) at constant H-2(+) are used to calculate the (NeH+)-Ne-20 production in aliquots of air-derived Ne and allow for hydride correction at m/z = 21. The fully isobaric interference-corrected Ne isotope compositions measured at different electron energy (eV) settings define a single mass fractionation line in Ne-2(2)/Ne-20 vs. Ne-21/Ne-20 space. The (NeH+)-Ne-20/Ne-21(+) line in ratio varies between 0.4% (90 eV) and 2.3% (60 and 70 eV). Correcting for (NeH+)-Ne-20 assuming (NeH+)-Ne-22/(NeH+ )-Ne-20= Ne-22/(20) yields an over-correction of up to 0.7% and the data do not plot on a single mass fractionation line. Our study defines Ne-21/Ne-20(air) to be 0.002959 +/- 0.14% (1 sigma) assuming Ne-22/Ne-20 = 0.102 (Eberhardt et al., 1965). This overlaps the value determined by Wielandt and Storey (2019), albeit with a slightly higher uncertainty. However, our value is statistically more robust and accounts for the dependency on hydride formation by Ne partial pressure. From this we conclude that high precision Ne isotope ratio determinations in future require the quantification of (NeH+)-Ne-20. The improved precision of air Ne-21/Ne-20 will result in more precise cosmogenic Ne-21 surface exposure and (U + Th)/Ne ages. (C) 2019 Elsevier Ltd. All rights reserved.
机译:空气衍生的氖性用于磁性扇形质谱仪的常规校准,主要用于确定NE同位素测定的灵敏度和质量辨别。通常接受的NE-21 / NE-20的空气(0.002959 +/- 0.000022; Eberhardt等人;(1965)不考虑在M / Z = 21.本田等人。(2015)和Wielandt和Storey(2019)最近通过从NE-21(+)中解析(NEH +) - NE-20来重新确定NE-21 / NE-20(空气)。NE-21 / Ne-20(空气)两项研究的值不同1.8%,超出了测量的不确定性(+/- <0.1%)。我们开发了一种用于使用低分辨率热量进行精确测定NEH +的协议Fisher Argus VI质谱仪并使用它来重新确定空气中的NE-21 / NE-20。(NEH +) - NE-22 / NE-22(+)在不同的H-2(+)和NE +强度下测量(i)仪器中H-2(+)的分压是NEH +生产的主要控制,(ii)增加NE +压力抑制了NEH +的形成。(NEH +) - NE-22 / NE的校准曲线恒定H-2(+)的-22(+)与Ne-22(+)用于计算(NEH +) - NE-20在等分试样中产生R-衍生的NE并允许M / Z = 21的氢化物校正。在不同电子能量(EV)设置下测量的完全异差干扰校正的NE同位素组合物在NE-2(2)/ NE-中定义单个质量分馏线。 20 vs.ne-21 / Ne-20空间。 (NEH +) - NE-20 / NE-21(+)线的比例在0.4%(90eV)和2.3%(60和70eV)之间变化。校正(NEH +) - NE-20假设(NEH +) - NE-22 /(NEH +)-NE-20 = NE-22 /(20)产生高达0.7%的过度校正,数据不会打开单个质量分馏线。我们的研究假定NE-22 / NE-20 = 0.102(Eberhardt等,1965),将Ne-21 / Ne-20(空气)定义为0.002959 +/- 0.14%(1秒字节)。这与Wielandt和Storey(2019)确定的值重叠,尽管具有略微更高的不确定性。但是,我们的价值是统计上更强大的,并且依赖于NE分压对氢化物形成的依赖性。由此,我们得出结论,未来的高精度NE同位素比率确定需要(NEH +) - NE-20的定量。 Air Ne-21 / Ne-20的改进精度将导致更精确的宇宙内生成的NE-21表面暴露和(U + TH)/ NE年龄。 (c)2019年elestvier有限公司保留所有权利。

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