首页> 外文期刊>International Journal of Astrobiology >Hexagonal plate-like magnetite nanocrystals produced in komatiite-H2O-CO2 reaction system at 450 degrees C
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Hexagonal plate-like magnetite nanocrystals produced in komatiite-H2O-CO2 reaction system at 450 degrees C

机译:柯马铁矿-H2O-CO2反应体系在450摄氏度下生成的六角形片状磁铁矿纳米晶体

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Batch experiments of komatiite-H2O-CO2 system with temperatures from 200 to 450 degrees C were performed to simulate the interactions between the newly formed ultramafic crust and the proto-atmosphere on Earth before the formation of its earliest ocean. Particularly, magnetite nanocrystals were observed in the experiment carried out at 450 degrees C that are characterized by their hexagonal platelet-like morphology and porous structure. Exactly the same set of lattice fringes on the two opposite sides of one pore suggests post-crystallization erosion. The results demonstrate that magnetite could be produced by the direct interactions between the ultramafic rocky crust and the atmosphere before the formation of the ocean on the Hadean Earth. These magnetite nanoparticles could serve as a catalyst in the synthesis of simple organic molecules during the organochemical evolution towards life.
机译:进行了温度在200至450摄氏度之间的科马铁矿-H2O-CO2系统的分批实验,以模拟新形成的超镁铁壳与最早的海洋形成之前地球上原大气之间的相互作用。特别地,在450℃下进行的实验中观察到磁铁矿纳米晶体,其特征在于其六角形的片状形态和多孔结构。在一个孔的两个相对侧上完全相同的一组晶格条纹表明结晶后腐蚀。结果表明,磁铁矿可以由超镁铁质岩石壳与哈德系地球上形成海洋之前的大气之间的直接相互作用产生。这些磁铁矿纳米颗粒可以在有机化学向生命发展的过程中充当简单有机分子合成的催化剂。

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