Ultrahigh purity CaCO 3 whiskers derived from the enhanced diffusion of carbonate ions from a larger liquid–gas interface through porous quartz stones

A larger liquid–gas interface area during the carbonation process for preparing high-purity aragonite CaCO 3 whiskers by using porous quartz stones was developed. The presence of plenty of open pores ranging from 0.02 to 0.20 mm inside the porous quartz stones could disperse CO 2 gas in Ca(OH) 2 sus...

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Veröffentlicht in:CrystEngComm 2020-10, Vol.22 (38), p.6407-6414
Hauptverfasser: Li, Qinglei, Dai, Zhengguan, Shang, Dengkui, Yin, Chong, Du, Piyi, Wang, Zongrong, Zhou, Chunhua, Yin, Cailiu
Format: Artikel
Sprache:eng
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Zusammenfassung:A larger liquid–gas interface area during the carbonation process for preparing high-purity aragonite CaCO 3 whiskers by using porous quartz stones was developed. The presence of plenty of open pores ranging from 0.02 to 0.20 mm inside the porous quartz stones could disperse CO 2 gas in Ca(OH) 2 suspension into tiny bubbles, with an average diameter ranging from 0.28 to 3.05 mm and a large liquid–gas interface area ranging from 3571.4 to 327.9 mm 2 , respectively, which could enhance the diffusion effect of CO 2 molecules and the uniformity of carbonate ions in the system. Thus, a uniform and low supersaturation was obtained, improving the growth of CaCO 3 whiskers. The prepared CaCO 3 whiskers showed the highest purity of 99.7%. The formation mechanism of ultrahigh purity CaCO 3 whiskers was also studied in detail. Then, the prepared CaCO 3 whiskers were introduced into a PVC matrix to study their effect on the tensile strength of PVC, and the results showed that the tensile strength was enhanced by 46.4% with 5 wt% whiskers. This method provides an effective way to enhance the performance of inorganic crystals.
ISSN:1466-8033
1466-8033
DOI:10.1039/D0CE01177K