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首页> 外文期刊>Crystal growth & design >Formation of Crystalline Silica-Carbonate Biomorphs of Alkaline Earth Metals (Ca, Ba, Sr) from Ambient to Low Temperatures: Chemical Implications during the Primitive Earth's Life
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Formation of Crystalline Silica-Carbonate Biomorphs of Alkaline Earth Metals (Ca, Ba, Sr) from Ambient to Low Temperatures: Chemical Implications during the Primitive Earth's Life

机译:从环境温度到低温的碱土金属(CA,BA,SR)的结晶二氧化硅 - 碳酸盐生物晶体:在原始地球生命中的化学意义

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摘要

The Earth has undergone at least four great glaciations, during which the ice layers and the glaciers have expanded all over the planet, corresponding to significant drops in global temperatures that lasted millions of years. Since the Precambrian era, ice ages have occurred at intervals of several millions of years. It is considered that the impact on the biosphere was large, because life was on the brink of disappearing completely from the planet. During these glaciation periods, carbon was reassigned, with the subsequent formation of carbonates called cap carbonates, which present stromatolite-like activity. These findings prove that life was conserved even during the glacial period. Knowledge on life conservation during the glacial period through stromatolites that have endured until the present day, is of special relevance. In recent investigations, in vitro structures have been synthesized; these crystalline aggregates have been named biomorphs because they mirror the morphologies of primitive organisms called Precambrian cherts. These biomorphs have been synthesized at different temperatures (from room temperature to lower ones). The aim of the present work was to synthesize CaCO3, BaCO3, and SrCO3 silica-carbonate biomorphs at three low temperatures (4 degrees C, -20 degrees C, and -70 degrees C). CaCO3 biomorphs present almost the same morphology at all temperatures with a calcite crystalline structure, whereas BaCO3 and SrCO3 biomorphs present remarkably different morphologies depending on temperature with witherite and strontianite crystalline structure, respectively.
机译:地球经历了至少四个巨大的冰川冰川,在此期间,冰层和冰川在整个地球上扩展,对应于全球气温的显着下降,该次数持续了数百万年。由于前兆时代,冰年龄在数百万年的间隔发生。认为,对生物圈的影响很大,因为生活在完全从地球中消失的边缘。在这些冰川期间,重新分配碳,随后形成称为碳酸帽的碳酸盐,该碳酸纤维素含有类似的碳酸盐状活性。这些调查结果证明即使在冰川期间也被保守。通过遗传到现今持久的血管醇的冰川期间冰川期间的生命保育知识具有特殊的相关性。在最近的研究中,已经合成了体外结构;这些结晶聚集体已被命名为生物圆形照片,因为它们反映了称为Precambrian Cherts的原始生物的形态。这些生物型照片已在不同的温度下合成(从室温到较低的)。本作者的目的是在三个低温(4℃,-20℃和-70℃)下合成CaCO 3,Baco3和Srco3二氧化硅生物素。 CaCO3生物型照片在具有方解石结晶结构的所有温度下存在几乎相同的形态,而Baco3和Srco3生物形式分别根据温度和锶晶体结构的温度呈现出显着不同的形态。

著录项

  • 来源
    《Crystal growth & design》 |2020年第2期|共10页
  • 作者单位

    Univ Guanajuato Dept Biol Div Ciencias Nat &

    Exactas Campus Guanajuato Noria Alta S-N Guanajuato 36050 Guanajuato Mexico;

    Brookhaven Natl Lab NSLS II Upton NY 11973 USA;

    Brookhaven Natl Lab NSLS II Upton NY 11973 USA;

    Univ Nacl Autonoma Mexico Inst Ciencias Aplicadas &

    Tecnol Circuito Exterior S-N Ciudad Univ Ciudad De Mexico 04510 Mexico;

    Univ Nacl Autonoma Mexico Inst Quim Av Univ 3000 Ciudad Univ Ciudad De Mexico 04510 Mexico;

    Univ Nacl Autonoma Mexico Inst Quim Av Univ 3000 Ciudad Univ Ciudad De Mexico 04510 Mexico;

    Univ Los Andes Fac Ciencias Dept Quim Lab Cristal LNDRX Merida 5101 Venezuela;

    Univ Nacl Autonoma Mexico Inst Quim Av Univ 3000 Ciudad Univ Ciudad De Mexico 04510 Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 晶体学;
  • 关键词

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