Mateo-Marti Eva, Prieto-Ballesteros Olga, Muñoz Caro Guillermo, González-Díaz Cristobal, Muñoz-Iglesias Victoria, Gálvez-Martínez Santos
Centro de Astrobiología (CSIC-INTA), Ctra. Ajalvir, Km. 4, 28850-Torrejón de Ardoz, Spain.
Life (Basel). 2019 Sep 10;9(3):72. doi: 10.3390/life9030072.
At present, the study of diverse habitable environments of astrobiological interest has become a major challenge. Due to the obvious technical and economical limitations on in situ exploration, laboratory simulations are one of the most feasible research options to make advances both in several astrobiologically interesting environments and in developing a consistent description of the origin of life. With this objective in mind, we applied vacuum and high pressure technology to the design of versatile simulation chambers devoted to the simulation of the interstellar medium, planetary atmospheres conditions and high-pressure environments. These simulation facilities are especially appropriate for studying the physical, chemical and biological changes induced in a particular sample by in situ irradiation or physical parameters in a controlled environment. Furthermore, the implementation of several spectroscopies, such as infrared, Raman, ultraviolet, etc., to study solids, and mass spectrometry to monitor the gas phase, in our simulation chambers, provide specific tools for the in situ physico-chemical characterization of analogues of astrobiological interest. Simulation chamber facilities are a promising and potential tool for planetary exploration of habitable environments. A review of many wide-ranging applications in astrobiology are detailed herein to provide an understanding of the potential and flexibility of these unique experimental systems.
目前,对具有天体生物学研究价值的多样宜居环境的研究已成为一项重大挑战。由于实地探测存在明显的技术和经济限制,实验室模拟是在多个具有天体生物学研究价值的环境中取得进展以及对生命起源形成连贯描述的最可行研究选择之一。出于这一目的,我们将真空和高压技术应用于多功能模拟舱的设计,该模拟舱致力于模拟星际介质、行星大气条件和高压环境。这些模拟设施特别适合研究在受控环境中,原位辐照或物理参数对特定样品所引起的物理、化学和生物变化。此外,在我们的模拟舱中,采用多种光谱技术,如红外光谱、拉曼光谱、紫外光谱等研究固体,并用质谱分析法监测气相,为具有天体生物学研究价值的模拟物进行原位物理化学表征提供了特定工具。模拟舱设施是用于宜居环境行星探测的一种有前景且具潜力的工具。本文详细综述了其在天体生物学中的众多广泛应用,以帮助理解这些独特实验系统的潜力和灵活性。