ISSN: 0304-128X ISSN: 2233-9558
Copyright © 2025 KICHE. All rights reserved

Articles & Issues

Language
korean
Conflict of Interest
In relation to this article, we declare that there is no conflict of interest.
Publication history
Received October 17, 2012
Accepted November 20, 2012
Available online January 30, 2013
articles This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
Copyright © KIChE. All rights reserved.

All issues

미세유체 결정화기를 이용한 탄산칼슘 Biomineralization

CaCO3 Biomineralization in Microfluidic Crystallizer

충남대학교 화학공학과, 305-764 대전시 유성구 궁동 220
Department of Chemical Engineering, Chungnam National University, 220 Gung-dong, Yuseong-gu, Daejeon 305-764, Korea
ihkim@cnu.ac.kr
Korean Chemical Engineering Research, February 2013, 51(1), 151-156(6)
https://doi.org/10.9713/kcer.2013.51.1.151
downloadDownload PDF

Abstract

Polydimethylsiloxane (PDMS) 기반의 미세유체 시스템을 이용해 탄산칼슘의 결정화 실험을 수행하였다. 탄산칼슘의 결정화를 위한 다양한 반응방법 중 액체-액체 반응을 위해 염화칼슘 수용액과 탄산나트륨 수용액을 사용하였고 아스파르트산을 첨가하여 탄산칼슘 결정 중 베터라이트와 칼사이트의 생성에 어떤 차이를 보이는지 조사하였다. 그리고 탄산칼슘의 결정화 진행상황에서 결정핵 생성에 유리한 염화칼슘과 탄산나트륨의 비율을 조사하였다. 이를 위해 크리스 마스트리 모양의 미세유체 반응기를 사용하여 채널 내부에 염화칼슘과 탄산나트륨의 농도구배를 형성하도록 하였다. 미세유체 결정화기 내부를 광학현미경으로 촬영한 결과, 탄산나트륨과 염화칼슘의 농도비가 2:1일 때 결정핵이 생성됨을 확인하였고 핵 생성 이후의 결정 성장 과정을 촬영하여 결정형태의 변화를 관찰하였다. 아스파르트산의 첨가 시에 결정핵 생성과 성장을 저해하며 전체 결정형태 중 베터라이트의 비율이 높아짐을 보였다.
Crystallization of CaCO3 is practiced on a polymethylsiloxane (PDMS) - based microfluidic system. Liquid-liquid reaction was investigated by mixing calcium chloride (CaCl2) and sodium carbonate (Na2CO3) solution to crystallize CaCO3. Aspartic acid (Asp) was added to investigate the morphology change such as vaterite and calcite. Suitable ratio of Na2CO3 and CaCl2 was searched for initial seed formation. Christmas tree model was used as microfluidic device to form concentration gradient of Na2CO3 and CaCl2. After observing microfluidic channel by using optical microscope, we found that seeds of CaCO3 were formed under the condition that the ratio of Na2CO3 and CaCl2 was 2:1. Morphology of crystals were also observed as CaCO3 crystals grow. When Asp was added, vaterite crystal was more frequently found in two morphologies (vaterite and calcite) and seed formation and crystal growth were inhibited.

References

Lyu SG, Sur GS, Kang SH, HWAHAK KONGHAK, 35(2), 186 (1997)
Park JW, Kim JS, Ahn JW, Han C, J. Korean Ind. Eng. Chem., 17(1), 67 (2006)
Han YS, Hadiko G, Fuji M, Takahashi M, J. Cryst. Growth, 289(1), 269 (2006)
Carmona JG, Morales JG, Clemente RR, J. Colloid Interface Sci., 261(2), 434 (2003)
Han HK, Kim BM, Kim JA, Korean Chem. Eng. Res., 46(6), 1052 (2008)
Altay E, Shahwan T, Tanoglu M, Powder Technol., 178(3), 194 (2007)
Hou WT, Feng QL, J. Cryst. Growth, 282(1-2), 214 (2005)
Manoli F, Kanakis J, Malkaj P, Dalas E, J. Cryst. Growth, 236(1-3), 363 (2002)
Lyu SG, Park NK, Sur GS, Lee TJ, J. Korean Ind. Eng. Chem., 12(2), 174 (2001)
Song SM, Kim IH, Korean J. Chem. Eng., 28(8), 1749 (2011)
Jung WM, Kang SH, Kim WS, Choi CK, Chem. Eng. Sci., 55(4), 733 (2000)
Song SM, Seong BI, Koo JH, Kim IH, Korean Chem. Eng. Res., 49(1), 109 (2011)
Kim JH, Kim JM, Kim WS, Kim IH, Korean Chem. Eng. Res., 47(2), 213 (2009)
Hwang DJ, Cho KH, Choi MK, Yu YH, Lee SK, Ahn JW, Lim GI, Han C, Lee JD, Korean J. Chem. Eng., 28(9), 1927 (2011)
Naka K. (ed), “Biomineralization I,” Springer, New York (2007)
Addadi L, Weiner S, Proc. Natl. Acad. Sci. USA., 82, 4110 (1985)
Kim JH, Kim JM, Kim WS, Kim IH, Korean Chem. Eng. Res., 46(6), 1107 (2008)
Yin H, Ji B, Dobson PS, Mosbahi K, Glidle A, Gadegaard N, Freer A, Cooper JM, Cusack M, Anal. Chem., 81(1), 473 (2009)
Jung JH, Lee CS, Korean Chem. Eng. Res., 48(5), 545 (2010)
Revzin A, Tompkins RG, Toner M, Langmuir, 19(23), 9855 (2003)
Xia Y, Whitesides GM, Angew. Chem.Int. Ed., 37, 550 (1998)
Jo BH, Van Lerberghe LM, Motsegood KM, Beebe DJ, J. Microelectromech. Syst., 9(1), 76 (2000)
Dertinger SKW, Chiu DT, Jeon NL, Whitesides GM, Anal. Chem., 73(6), 1240 (2001)
Desiraju GR, Vittal JJ, Ramanan A, “Crystal Engineering," World Scientific (2011)

The Korean Institute of Chemical Engineers. F5,119, Anam-ro, Seongbuk-gu, Seoul, Republic of Korea
Phone No. +82-2-458-3078FAX No. +82-507-804-0669E-mail : kiche@kiche.or.kr

Copyright (C) KICHE.all rights reserved.

- Korean Chemical Engineering Research 상단으로