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Titan Tholins as Amino Acid Precursors and Their Solubility in Possible Titan Liquidospheres

机译:Titan Tholins作为氨基酸前体及其在可能的Titan Liquidospheres中的溶解度

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Experimental simulations have previously shown that tholins (complex solid organics) can be abundantly formed in Titan's atmosphere and that they contain precursors of amino acids. In this study, we investigated their relevance to possible chemical evolution toward the generation of life in various potential Titan environments (liquidospheres), using tholins synthesized by plasma discharge at low pressure (LP, 26 Pa) and high pressure (HP, 133 Pa). We focused our study on composition of amino acids recovered from LP and HP tholins, as well as on the solubility of these tholins in solvents such as hexane, acetonitrile, ethanol, methanol, water, and ammonia water. Both hydrolyzed extracts of LP and HP tholins were composed of a wide variety of amino acids. Tholins were dissolved more easily in polar solvents than in nonpolar ones: Ammonia water, simulating a potential Titan subsurface ocean, could dissolve tholins quite efficiently. These results show thus the possibility of starting chemical evolution toward life's origin in Titan's environment.
机译:以前的实验模拟表明,泰坦大气中可以大量形成索林(复杂的固体有机物),并且它们含有氨基酸的前体。在这项研究中,我们研究了在低压(LP,26 Pa)和高压(HP,133 Pa)下通过等离子放电合成的索林,它们与在各种潜在的泰坦环境(液球)中可能的化学演化对生命生成的相关性。 。我们的研究重点是从LP和HP索林中回收的氨基酸组成,以及这些索林在己烷,乙腈,乙醇,甲醇,水和氨水中的溶解度。 LP和HP索林的水解提取物均由多种氨基酸组成。与非极性溶剂相比,硫醇在极性溶剂中的溶解更容易:模拟潜在的土卫六地下海洋的氨水可以非常有效地溶解硫醇。这些结果表明,有可能在泰坦的环境中朝着生命的起源开始化学演化。

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