Abstract
The reaction studied in this work is the synthesis of nanometric size calcium carbonate by carbo-nation of a suspension of lime, which represents the most common industrial route. The carbona-tion 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 para-meters: the mass production rate by precipitation and the specific surface area. The results give a constant nucleation rate around 4 × 10 15 m −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 in-dicates a narrow particle size distribution of the monoparticles.
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CITATION STYLE
Schnebelen, M., Ricaud, M., Jakob, A., Sy, D., Plasari, E., & Muhr, H. (2015). Determination of Crystallization Kinetics and Size Distribution Parameters of Agglomerated Calcium Carbonate Nanoparticles during the Carbonation of a Suspension of Lime. Crystal Structure Theory and Applications, 04(02), 16–27. https://doi.org/10.4236/csta.2015.42003
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