Calcium carbonate (CaCO<sub>3</sub>) exhibits three polymorphs: calcite with arhombohedral, vaterite with a spherical, and aragonite with a needle-like structure. Qualitative and quantitative analyses of the morphology of CaCO<sub>3&...
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https://www.riss.kr/link?id=A108335757
2022
-
500
SCOPUS,KCI등재,ESCI
학술저널
564-573(10쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
Calcium carbonate (CaCO<sub>3</sub>) exhibits three polymorphs: calcite with arhombohedral, vaterite with a spherical, and aragonite with a needle-like structure. Qualitative and quantitative analyses of the morphology of CaCO<sub>3&...
Calcium carbonate (CaCO<sub>3</sub>) exhibits three polymorphs: calcite with arhombohedral, vaterite with a spherical, and aragonite with a needle-like structure. Qualitative and quantitative analyses of the morphology of CaCO<sub>3</sub> are very important to investigate the synthesis of single-crystal vaterite and aragonite. In this work, the polymorphs of calcium carbonate were quantitatively analyzed using XRD. Pure vaterite and pure aragonite were synthesized and the peak distribution of a single phase was analyzed. The vaterite fraction of a mixture of calcite and vaterite was calculated based on the intensity of a specific diffraction peak, and compared to the results based on the peak area. The mean value of f<sub>sV</sub> (the correction factor for the peak area of vaterite) was 0.654. The phase analysis of calcite-aragonite mixtures was performed, and the mean value of f<sub>sA</sub> (the correction factor for the peak area of aragonite) was obtained as 0.6713. Using these factors, Eq. (24)~Eq. (32) for the quantitative analysis based on the total peak area of XRD were derived to calculate the phase contents of ternary phase CaCO<sub>3</sub>. And three-component XRD section was defined considering overlapping sections.
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