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Implementing bioburden reduction and control on the deliquescent hydrogel of the ExoMars HABIT instrument

机译:在乳膏习惯仪器潮嗜鼻蛋白糖凝胶中实施生物塑料减少和控制

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The HABIT (HabitAbility, Brines, Irradiation and Temperature) instrument will be the first Swedish instrument that will land on the surface of Mars as a part of the ExoMars 2020 mission (ESA/IKI). It is also the first European ISRU (In-situ Resource Utilization) instrument capable of producing liquid water on Mars extracting atmospheric water vapor using salt deliquescence to form a stable liquid brine. HABIT also will study current habitability conditions on Mars investigating the air and surface thermal ranges and UV (Ultraviolet) irradiance. The BOTTLE (Brine Observation Transition To Liquid Experiment) is the container element of HABIT with four independent cells housing deliquescent salts, which have been found on Mars, exposing them to the Martian atmosphere. In order to prevent capillarity of deliquescent or hydrated salts, a mixture of deliquescent salts with Super Absorbent Polymer (SAP) based on polyacrylamide is utilized. This mixture has deliquescent and hydrogel properties and can be reused by applying a thermal cycle, complying thus with the purpose of the instrument. A High Efficiency Particulate Air (HEPA) grade filter made of polytetrafluroethylene (PTFE) porous membrane sandwiched between spunbounded non-woven fabric stands as a physical barrier allowing interaction between the gaseous molecules of the Martian atmosphere and the salt mixtures, and at the same time preventing the passage of any potential biological contamination from the cells to the outside or vice-versa. In addition to the physical barrier, a strict bioburden reduction and analysis procedure is applied to the hardware and the contained salt mixtures adhering to the European Cooperation for Space Standardization protocol of microbial examination of flight hardware (ECSS-Q-ST-70-55C). The deliquescent salts and the SAP products need to be properly treated independently to adhere to the planetary protection protocols. In this paper, we have described the bioburden reduction process u
机译:习惯(适当性,盐水,辐照和温度)仪器将成为第一个将在火星的一部分降落于火星的一部分2020任务(ESA / IKI)的瑞典乐器。它也是第一个欧洲ISRU(原位资源利用率)仪器,其能够在火星上产生液态水,用盐疏水蒸汽提取大气水蒸气,形成稳定的液体盐水。习惯还将研究火星的当前适合性条件调查空气和表面热范围和UV(紫外线)辐照度。瓶子(盐水观察到液体实验)是习惯的容器元素,具有四个独立的细胞潮流盐盐,在火星上发现,将它们暴露在火星大气中。为了防止潮解的嗜湿盐的毛细血管,利用基于聚丙烯酰胺的超吸收性聚合物(SAP)的潮解盐的混合物。该混合物具有潮解性和水凝胶特性,并且可以通过施加热循环来重复使用,因此符合仪器的目的。由聚四氟乙烯(PTFE)多孔膜制成的高效率微粒空气(HEPA)级过滤器夹在螺旋非织造织物之间的多孔膜,作为物理屏障,允许Martian大气和盐混合物的气态分子与盐混合物之间的相互作用,同时防止任何潜在的生物污染从细胞到外部或反之亦然。除了物理障碍之外,严格的生物上的减少和分析程序适用于坚持飞行硬件的微生物检查空间标准化协议的欧洲标准化方案的含盐混合物(ECS-Q-ST-70-55C)。 。潮解盐和SAP产品需要适当地独立处理,以遵守行星保护方案。在本文中,我们已经描述了生物上的减少过程U.

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