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无氧泰坦托林的低温碱性pH水解:碳酸盐的影响

Low-Temperature Alkaline pH Hydrolysis of Oxygen-Free Titan Tholins: Carbonates' Impact.

作者信息

Brassé Coralie, Buch Arnaud, Coll Patrice, Raulin François

机构信息

1 Laboratoire Interuniversitaire des Systèmes Atmosphériques (LISA), UMR CNRS 7583, Université Paris Est Créteil et Université Paris Diderot , Institut Pierre Simon Laplace, C.M.C., Créteil, France .

2 Laboratoire de Génie des Procédés et Matériaux (LGPM) , Ecole Centrale Paris, Chatenay-Malabry, France .

出版信息

Astrobiology. 2017 Jan;17(1):8-26. doi: 10.1089/ast.2016.1524.

Abstract

Titan, the largest moon of Saturn, is one of the key planetary objects in the field of exobiology. Its dense, nitrogen-rich atmosphere is the site of important organic chemistry. This paper focuses on the organic aerosols produced in Titan's atmosphere that play an important role in atmospheric and surface processes and in organic chemistry as it applies to exobiological interests. To produce reliable laboratory analogues of these aerosols, we developed, tested, and optimized a device for the synthesis of clean tholins. The potential chemical evolution of Titan aerosols at Titan's surface has been studied, in particular, the possible interaction between aerosols and putative ammonia-water cryomagma. Modeling of the formation of Saturn's atmosphere has permitted the characterization of a composition of salts in the subsurface ocean and cryolava. From this new and original chemical composition, a laboratory study of several hydrolyses of tholins was carried out. The results obtained show the formation of many organic compounds, among them, species identified only in the presence of salts. In addition, a list of potential precursors of these compounds was established, which could provide a database for research of the chemical composition of tholins and/or aerosols of Titan. Key Words: Titan tholins-Titan aerosols-Hydrolysis-Carbonates-Titan's surface. Astrobiology 17, 8-26.

摘要

土卫六是土星最大的卫星,是外生物学领域的关键行星天体之一。其浓密的富含氮的大气层是重要有机化学过程发生的场所。本文聚焦于土卫六大气层中产生的有机气溶胶,这些气溶胶在大气和表面过程以及与外生物学相关的有机化学中发挥着重要作用。为了制备这些气溶胶可靠的实验室模拟物,我们开发、测试并优化了一种用于合成纯净索林的装置。研究了土卫六表面气溶胶可能的化学演化,特别是气溶胶与假定的氨 - 水低温岩浆之间可能的相互作用。对土星大气层形成的建模使得能够确定地下海洋和低温熔岩中盐的成分。基于这种全新的化学成分,对索林的几种水解反应进行了实验室研究。所得结果表明形成了许多有机化合物,其中一些物种仅在有盐存在的情况下才能被识别。此外,还建立了这些化合物潜在前体的清单,这可为研究土卫六索林和/或气溶胶的化学成分提供一个数据库。关键词:土卫六索林 - 土卫六气溶胶 - 水解 - 碳酸盐 - 土卫六表面。《天体生物学》17卷,8 - 26页 。

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