Planning Considerations Related to Contamination Control for the Return and Analysis of Martian Samples.

IF 2.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Astrobiology Pub Date : 2025-10-01 Epub Date: 2025-10-03 DOI:10.1177/15311074251382157
Alex L Sessions, Cara Magnabosco, Hazel A Barton, Christoph Burkhardt, Jason P Dworkin, Caroline Freissinet, Katherine L French, Daniel P Glavin, Natalie Leys, Frank Maixner, Karen Olsson-Francis, Alexander J Probst, Ghylaine Quitté, Elizabeth Rampe, Andrew Steele, Brandi L Carrier, Lindsay E Hays, Fiona Thiessen, Daniel Paardekooper, Aurore Hutzler, Andrea D Harrington, Bronwyn L Teece
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引用次数: 0

Abstract

The joint National Aeronautics and Space Administration and European Space Agency Mars Sample Return (MSR) Campaign is a proposed multi-mission effort to bring selected geological samples from Mars to Earth for the purpose of scientific investigation. Significant parts of these investigations could be affected by Earth-sourced contamination that is either misinterpreted as having a martian origin or that masks a martian signal. The Mars 2020 Perseverance rover implemented strict contamination control requirements to limit contamination of the samples during sample collection. Contamination control and contamination knowledge requirements have not yet been established for the samples after they arrive on Earth. The MSR Sample Receiving Facility (SRF) Contamination Panel (SCP) was tasked with defining the terrestrial biological, organic, and inorganic contamination limits for martian samples during their residence inside the SRF. To reach our recommendations, the SCP studied (i) the previously proposed limits and rationale of the Organic Contamination Panel, (ii) cleanliness levels achieved for sampling hardware by the M2020 mission, (iii) recent improvements in analytical technology and detection limits, (iv) updated information regarding the organic content of martian samples (e.g., from the Sample Analysis at Mars instrument on the Curiosity rover and laboratory analyses of martian meteorites), and (v) information about the composition and geologic context of samples being collected by the Perseverance rover for return to Earth.

火星样品返回和分析的污染控制计划考虑。
美国国家航空航天局(nasa)和欧洲航天局(esa)联合发起的火星样本返回(MSR)运动是一项拟议的多任务努力,旨在将选定的火星地质样本带回地球,用于科学调查。这些调查的很大一部分可能受到来自地球的污染的影响,这些污染要么被误解为来自火星,要么被掩盖了火星的信号。火星2020“毅力号”探测器实施了严格的污染控制要求,以限制样本收集过程中对样本的污染。在样品到达地球后,还没有建立污染控制和污染知识要求。MSR样品接收设施(SRF)污染小组(SCP)的任务是确定火星样品在SRF内驻留期间的陆地生物,有机和无机污染限制。为了达到我们的建议,SCP研究了(i)先前提出的有机污染小组的限制和基本原理,(ii) M2020任务对采样硬件达到的清洁度水平,(iii)分析技术和检测限制的最新改进,(iv)关于火星样品有机含量的最新信息(例如,来自好奇号火星车上的火星样品分析仪器和火星陨石的实验室分析)。(v)关于毅力号火星车收集的返回地球的样品的组成和地质背景的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Astrobiology
Astrobiology 生物-地球科学综合
CiteScore
7.70
自引率
11.90%
发文量
100
审稿时长
3 months
期刊介绍: Astrobiology is the most-cited peer-reviewed journal dedicated to the understanding of life''s origin, evolution, and distribution in the universe, with a focus on new findings and discoveries from interplanetary exploration and laboratory research. Astrobiology coverage includes: Astrophysics; Astropaleontology; Astroplanets; Bioastronomy; Cosmochemistry; Ecogenomics; Exobiology; Extremophiles; Geomicrobiology; Gravitational biology; Life detection technology; Meteoritics; Planetary geoscience; Planetary protection; Prebiotic chemistry; Space exploration technology; Terraforming
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