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Determination of Crystallization Kinetics and Size Distribution Parameters of Agglomerated Calcium Carbonate Nanoparticles during the Carbonation of a Suspension of Lime

机译:石灰悬浮液碳酸化过程中团聚碳酸钙纳米粒子的结晶动力学和尺寸分布参数的确定

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The reaction studied in this work is the synthesis of nanometric size calcium carbonate by carbonation of a suspension of lime, which represents the most common industrial route. The carbonation was proceeded in a pilot batch reactor. This article presents a method for the determination of nucleation and crystal growth rates of calcium carbonate by following two macroscopic parameters: the mass production rate by precipitation and the specific surface area. The results give a constant nucleation rate around 4 × 1015m-3 ·s-1 and a decreasing crystal growth rate between 0.2 and 2 × 10-10 m·s-1. It also provides the main characteristics of the monoparticle size distributions (i.e. the mean particle sizes and in situ coefficient of variation) in the agglomerates, which cannot be obtained by other known methods. For the carbonation carried out in this work, the mean mass particle size at the end of the reaction is about 300 nm and the coefficient of variation of 0.28 indicates a narrow particle size distribution of the monoparticles.
机译:在这项工作中研究的反应是通过碳酸钙悬浮液的碳化合成纳米级碳酸钙,这是最常见的工业路线。碳酸化在中试间歇反应器中进行。本文提出了一种通过以下两个宏观参数确定碳酸钙的成核和晶体生长速率的方法:沉淀的量产速率和比表面积。结果显示成核速率恒定在4×1015m-3·s-1附近,晶体生长速率下降在0.2至2×10-10 m·s-1之间。它还提供了附聚物中单粒径分布的主要特征(即平均粒径和原位变异系数),这是其他已知方法无法获得的。对于在该工作中进行的碳酸化,反应结束时的平均质量粒径为约300 nm,变异系数为0.28表示单颗粒的粒径分布较窄。

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