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Nano-Montmorillonite Regulated Crystallization of Hierarchical Strontium Carbonate in a Microbial Mineralization System

机译:纳米蒙脱石调控微生物矿化系统中碳酸锶的结晶

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摘要

In this paper, nano-montmorillonite (nano-MMT) was introduced into the microbial mineralization system of strontium carbonate (SrCO3). By changing the nano-MMT concentration and the mineralization time, the mechanism of mineralization was studied. SrCO3 superstructures with complex forms were acquired in the presence of nano-MMT as a crystal growth regulator. At low concentrations of nano-MMT, a cross-shaped SrCO3 superstructure was obtained. As the concentration increased, flower-like SrCO3 crystals formed via the dissolution and recrystallization processes. An emerging self-assembly process and crystal polymerization mechanism have been proposed by forming complex flower-like SrCO3 superstructures in high concentrations of nano-MMT. The above research indicated that unique bionic synthesis strategies in microbial systems could not only provide a useful route for the production of inorganic or inorganic/organic composites with a novel morphology and unique structure but also provide new ideas for the treatment of radionuclides.
机译:本文将纳米蒙脱土(nano-MMT)引入碳酸锶(SrCO3)的微生物矿化系统中。通过改变纳米MMT的浓度和矿化时间,研究了矿化机理。在纳米MMT作为晶体生长调节剂的情况下,获得了具有复杂形式的SrCO3超结构。在低浓度的纳米MMT下,获得了十字形的SrCO3超结构。随着浓度增加,通过溶解和重结晶过程形成花状SrCO3晶体。通过在高浓度的纳米MMT中形成复杂的花状SrCO3超结构,提出了一种新兴的自组装过程和晶体聚合机理。上述研究表明,微生物系统中独特的仿生合成策略不仅可以为生产具有新颖形态和独特结构的无机或无机/有机复合材料提供有用的途径,而且可以为放射性核素的处理提供新的思路。

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