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Mineral self-organization on a lifeless planet

机译:矿物自我组织在无生命的星球上

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It has been experimentally demonstrated that, under alkaline conditions, silica is able to induce the formation of mineral self-assembled inorganic-inorganic composite materials similar in morphology, texture and nanostructure to the hybrid biomineral structures that, millions of years later, life was able to self-organize. These mineral self-organized structures (MISOS) have been also shown to work as effective catalysts for prebiotic chemical reactions and to easily create compartmentalization within the solutions where they form. We reason that, during the very earliest history of this planet, there was a geochemical scenario that inevitably led to the existence of a large-scale factory of simple and complex organic compounds, many of which were relevant to prebiotic chemistry. The factory was built on a silica-rich high-pH ocean and powered by two main factors: a) a quasi-infinite source of simple carbon molecules synthesized abiotically from reactions associated with serpentinization, or transported from meteorites and produced from their impact on that alkaline ocean, and b) the formation of self-organized silica-metal mineral composites that catalyze the condensation of simple molecules in a methane-rich reduced atmosphere. We discuss the plausibility of this geochemical scenario, review the details of the formation of MISOS and its catalytic properties and the transition towards a slightly alkaline to neutral ocean. (C) 2020 Published by Elsevier B.V.
机译:实验证明,在碱性条件下,二氧化硅能够诱导矿物自组装无机-无机复合材料的形成,其形态、结构和纳米结构与杂交生物矿物结构相似,数百万年后,生命能够自组织。这些矿物自组织结构(MISOS)也被证明是益生元化学反应的有效催化剂,并且在形成它们的溶液中容易形成区域化。我们的理由是,在这个星球最早的历史上,有一种地球化学情景,不可避免地导致了简单和复杂有机化合物的大规模工厂的存在,其中许多与益生元化学有关。该工厂建在一个富含二氧化硅的高pH海洋上,由两个主要因素驱动:a)简单碳分子的准无限源,这些简单碳分子是通过与蛇纹石化相关的反应非生物合成的,或从陨石运输而来,并由其对碱性海洋的影响产生,b)形成自组织二氧化硅金属矿物复合物,在富含甲烷的还原大气中催化简单分子的冷凝。我们讨论了这一地球化学情景的合理性,回顾了味噌的形成及其催化性质的细节,以及向微碱性到中性海洋的过渡。(C) 2020年爱思唯尔公司出版。

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