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Reevaluated martian atmospheric mixing ratios from the mass spectrometer on the Curiosity rover

机译:通过好奇号火星车上的质谱仪重新评估了火星大气混合比

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The Sample Analysis at Mars (SAM) instrument suite of the Mars Science Laboratory (MSL) Curiosity rover is a miniature geochemical laboratory designed to analyze martian atmospheric gases as well as volatiles released by pyrolysis of solid surface materials (Mahaffy et al., 2012). SAM began sampling the martian atmosphere to measure its chemical and isotopic composition shortly after Curiosity landed in Mars' Gale Crater in August 2012 (Mahaffy et al., 2013). Analytical methods and constants required for atmospheric measurements with SAM's quadrupole mass spectrometer (QMS) were provided in a previous contribution (Franz et al., 2014). Review of results obtained through application of these constants to repeated analyses over a full martian year and supporting studies with laboratory instruments offer new insights into QMS performance that allow refinement of the calibration constants and critical reassessment of their estimated uncertainties. This report describes the findings of these studies, provides updated calibration constants for atmospheric analyses with the SAM QMS, and compares volume mixing ratios for the martian atmosphere retrieved with the revised constants to those initially reported (Mahaffy et al., 2013). Sufficient confidence is enabled by the extended data set to support calculation of precise abundances for CO rather than an upper limit. Reanalysis of data acquired on mission sols 45 and 77 (at solar longitudes of 175 degrees and 193 degrees, respectively) with the revised constants leads to the following average volume mixing ratios: CO2 0.957(+/- 0.016), N-2 0.0203(+/- 0.0003), Ar 0.0207(+/- 0.0002), O-2 1.73(+/- 0.06) x 10(-3), CO 749(+/- 0.026) x 10(-4). (C) 2015 Elsevier Ltd. All rights reserved.
机译:火星科学实验室(MSL)好奇号流动站的火星样品分析(SAM)仪器套件是一个微型地球化学实验室,旨在分析火星大气中的气体以及固体表面材料热解所释放的挥发物(Mahaffy等,2012)。 。好奇号于2012年8月降落在火星的大风火山坑后不久,SAM开始对火星大气进行采样,以测量其化学和同位素组成(Mahaffy等,2013)。在先前的贡献中提供了使用SAM的四极质谱仪(QMS)进行大气测量所需的分析方法和常数(Franz等,2014)。通过将这些常数应用到整个火星年中的重复分析以及使用实验室仪器进行的辅助研究中获得的结果的回顾,为QMS性能提供了新的见解,从而可以完善校准常数并对其估计的不确定性进行严格的重新评估。该报告描述了这些研究的结果,提供了使用SAM QMS进行大气分析的更新校准常数,并将经过修正的常数与最初报告的火星大气混合体积比进行了比较(Mahaffy等,2013)。扩展的数据集可提供足够的置信度,以支持计算CO的精确丰度而不是上限。使用修正后的常数重新分析在任务溶胶45和77(分别在太阳经度175度和193度)上获取的数据会导致以下平均体积混合比:CO2 0.957(+/- 0.016),N-2 0.0203( +/- 0.0003),Ar 0.0207(+/- 0.0002),O-2 1.73(+/- 0.06)x 10(-3),CO 749(+/- 0.026)x 10(-4)。 (C)2015 Elsevier Ltd.保留所有权利。

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