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The kinetics and mechanisms of amorphous calcium carbonate (ACC) crystallization to calcite, viavaterite.

Nanoscale · 2010 · Vol. 3(1) · pp. 265–271
Juan Diego Rodriguez‐BlancoSamuel ShawLiane G. Benning

Abstract

The kinetics and mechanisms of nanoparticulate amorphous calcium carbonate (ACC) crystallization to calcite, via vaterite, were studied at a range of environmentally relevant temperatures (7.5-25 °C) using synchrotron-based in situ time-resolved Energy Dispersive X-ray Diffraction (ED-XRD) in conjunction with high-resolution electron microscopy, ex situ X-ray diffraction and infrared spectroscopy. The crystallization process occurs in two stages; firstly, the particles of ACC rapidly dehydrate and crystallize to form individual particles of vaterite; secondly, the vaterite transforms to calcite via a dissolution and reprecipitation mechanism with the reaction rate controlled by the surface area of calcite. The second stage of the reaction is approximately 10 times slower than the first. Activation energies of calcite nucleation and crystallization are 73±10 and 66±2 kJ mol(-1), respectively. A model to calculate the degree of calcite crystallization from ACC at environmentally relevant temperatures (7.5-40 °C) is also presented.

Calcium Carbonate Crystallization and InhibitionClay minerals and soil interactionsBuilding materials and conservationCalciteVateriteCrystallizationNucleationCalcium carbonateChemical engineeringAmorphous calcium carbonateAmorphous solidDissolutionMaterials science

MeSH terms

Calcium CarbonateCrystallizationKineticsSpectrophotometry, InfraredTemperatureThermodynamicsX-Ray DiffractionNanoparticles
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References
A fundamental parameters approach to X-ray line-profile fitting
Journal of Applied Crystallography · 1992 · 1,624 citations
Solubility of amorphous calcium carbonate
Journal of Crystal Growth · 1989 · 538 citations
Amorphous calcium carbonate transforms into calcite during sea urchin larval spicule growth
Proceedings of the Royal Society B Biological Sciences · 1997 · 716 citations
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