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Assessment and control of organic and other contaminants associated with the Stardust sample return from comet 81P/Wild 2

机译:评估和控制与81P / Wild 2彗星返回的星尘样本相关的有机污染物和其他污染物

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Numerous potential sources of organic contaminants could have greatly complicated the interpretation of the organic portions of the samples returned from comet 81P/Wild 2 by the Stardust spacecraft. Measures were taken to control and assess potential organic (and other) contaminants during the design, construction, and flight of the spacecraft, and during and after recovery of the sample return capsule. Studies of controls and the returned samples suggest that many of these potential sources did not contribute any significant material to the collectors. In particular, contamination from soils at the recovery site and materials associated with the ablation of the heatshield do not appear to be significant problems. The largest source of concern is associated with the C present in the original aerogel. The relative abundance of this carbon can vary between aerogel tiles and even within individual tiles. This C was fortunately not distributed among a complex mixture of organics, but was instead largely present in a few simple forms (mostly as Si-CH_3 groups). In most cases, the signature of returned cometary organics can be readily distinguished from contaminants through their different compositions, nonterrestrial isotopic ratios, and/or association with other cometary materials. However, some conversion of the carbon indigenous to the flight aerogel appears to have happened during particle impact, and some open issues remain regarding how this C may be processed into new forms during the hypervelocity impact collection of the comet dust.
机译:许多潜在的有机污染物源可能使星尘号飞船从81P / Wild 2彗星返回的样品有机部分的解释变得非常复杂。在航天器的设计,建造和飞行过程中,以及在回收样品返回舱期间和之后,采取了措施来控制和评估潜在的有机(和其他)污染物。对对照和返回样品的研究表明,这些潜在来源中的许多对收集者没有任何重要的贡献。特别地,来自回收站处的土壤的污染以及与隔热板烧蚀有关的材料似乎不是重大问题。最大的担忧来源与原始气凝胶中存在的碳有关。这种碳的相对丰度在气凝胶砖之间甚至在单个砖中都可以变化。幸运的是,该C没有分布在复杂的有机混合物中,而是主要以几种简单形式(主要是Si-CH_3基团)存在。在大多数情况下,返回的彗星有机物的特征很容易通过其不同的组成,非地球同位素比率和/或与其他彗星物质的结合与污染物区分开。但是,似乎在粒子撞击期间发生了原生碳到飞行气凝胶的某种转化,并且在彗星尘埃的超高速撞击收集过程中,如何将这种碳加工为新形式仍然存在一些悬而未决的问题。

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