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首页> 外文期刊>Chromatographia >In-situ chemical investigation of a comet nucleus by gas chromatography: Porous layer open tubular columns for the separation of light, volatile compounds
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In-situ chemical investigation of a comet nucleus by gas chromatography: Porous layer open tubular columns for the separation of light, volatile compounds

机译:气相色谱法对彗核的原位化学研究:多孔层开放式管状柱,用于分离轻质挥发性化合物

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摘要

In the framework of the cometary sampling and composition (COSAC) experiment of the European Space Agency (ESA) Rosetta space mission to a comet, a new generation of porous polymer porous-layer open tubular (PLOT) columns has been investigated with the aim of separating the light organic compounds targeted by the experiment within the constraints of the operating conditions used in space. Both styrene-divinylbenzene and ethylene glycol-dimethyl acrylate-divinylbenzene porous polymers can be used to separate most of the target compounds, but the latter was selected because of its better separating properties. The most appropriate column characteristics were found to be 10 m length, 0.18 mm internal diameter, and 1–2 μm layer thickness, despite the low sample-loading capacity of such a column, which impairs its chromatographic performance. The influence of column overloading on retention properties and efficiency was, therefore, studied. To achieve the separation with optimum sensitivity, and within the in-situ time allowed for the analysis, it was also demonstrated that the maximum allowed temperature and reduced outlet pressure are required. Finally, it was shown that in the presence of water, the most abundant volatile compound in comets the separating properties of the studied columns are conserved. This paper thus demonstrates the suitability of the porous polymer PLOT column selected for the COSAC experiment and requirements for use in space; it is the first porous polymer PLOT column to be used in space exploration.
机译:在欧洲航天局(ESA)罗塞塔号太空彗星的彗星取样和成分(COSAC)实验的框架内,已研究了新一代多孔聚合物多孔层开孔管状(PLOT)色谱柱,旨在:在太空中使用的操作条件的限制下,分离实验目标的轻质有机化合物。苯乙烯-二乙烯基苯和乙二醇-丙烯酸二甲酯-二乙烯基苯多孔聚合物均可用于分离大多数目标化合物,但选择后者是因为其具有更好的分离性能。尽管这种色谱柱的样品上样能力低,但会损害其色谱性能,但最合适的色谱柱特征是长10 m,内径0.18 mm和层厚1-2μm。因此,研究了色谱柱超载对保留性能和效率的影响。为了以最佳灵敏度实现分离,并在分析允许的原位时间内,还证明需要最高允许温度和降低的出口压力。最后,结果表明,在水的存在下,彗星中挥发性最强的化合物得以保留,所研究色谱柱的分离特性得以保留。因此,本文证明了为COSAC实验选择的多孔聚合物PLOT色谱柱的适用性以及在空间上的使用要求;它是第一款用于太空探索的多孔聚合物PLOT色谱柱。

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  • 来源
    《Chromatographia 》 |2001年第6期| 369-376| 共8页
  • 作者单位

    Laboratoire Interuniversitaire des Systèmes Atmosphériques (LISA) UMR 7583 CNRS Université Paris 7 and Paris 12 C.M.C.;

    Laboratoire Interuniversitaire des Systèmes Atmosphériques (LISA) UMR 7583 CNRS Université Paris 7 and Paris 12 C.M.C.;

    Laboratoire Interuniversitaire des Systèmes Atmosphériques (LISA) UMR 7583 CNRS Université Paris 7 and Paris 12 C.M.C.;

    Laboratoire Interuniversitaire des Systèmes Atmosphériques (LISA) UMR 7583 CNRS Université Paris 7 and Paris 12 C.M.C.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Gas-solid chromatography; Column characteristics; Stationary phases; PLOT columns; Porous polymer;

    机译:气固色谱法;色谱柱特征;固定相;PLOT色谱柱;多孔聚合物;

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