Crystalline-magnetism action in biomimetic mineralization of calcium carbonate
Full Length Article|Updated:2026-01-06
|
Crystalline-magnetism action in biomimetic mineralization of calcium carbonate
Crystalline-magnetism action in biomimetic mineralization of calcium carbonate
中国化学工程学报(英文版)2023年59卷第7期 页码:146-152
Affiliations:
1. State Key Laboratory of Environment-friendly Energy Materials, Southwest University of Science and Technology,Mianyang,China,621000
2. Materials Science and Engineering, Southwest University of Science and Technology,Mianyang,China,621000
3. National Health Commission Key Laboratory of Nuclear Technology Medical Transformation, Mianyang Central Hospital,Mianyang,China,621010
Author bio:
Funds:
DOI:
中图分类号:
纸质出版:2023
Accepted:
Scan QR Code
Chaoqun Wu, Xun Liu, Fujun Yao, 等. Crystalline-magnetism action in biomimetic mineralization of calcium carbonate[J]. 中国化学工程学报(英文版), 2023,59(7):146-152.
Chaoqun Wu, Xun Liu, Fujun Yao, Xin Yang, Yan Wang, Wenyuan Hu. Crystalline-magnetism action in biomimetic mineralization of calcium carbonate[J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 146-152.
Chaoqun Wu, Xun Liu, Fujun Yao, 等. Crystalline-magnetism action in biomimetic mineralization of calcium carbonate[J]. 中国化学工程学报(英文版), 2023,59(7):146-152.DOI:
Chaoqun Wu, Xun Liu, Fujun Yao, Xin Yang, Yan Wang, Wenyuan Hu. Crystalline-magnetism action in biomimetic mineralization of calcium carbonate[J]. Chinese Journal of Chemical Engineering, 2023, 59(7): 146-152.DOI:
Crystalline-magnetism action in biomimetic mineralization of calcium carbonate
摘要
Abstract
The influence of minor environmental factors
such as the geomagnetic field
on the biomineralization of nacres
is often ignored but a great deal of research has confirmed its important role in the normal mineralization of calcium carbonate. Although the geomagnetic field is weak
its cumulative effects need to be considered given that the biomineralization process can take years. Accordingly
the authors of this paper have investigated the effects of weak magnetic fields (25 Gs or 50 Gs) on calcium carbonate mineralization and analyzed the mechanism involved. The results show that even a weak magnetic field conduces to the formation of vaterite or aragonite
in the induction order of precursor → vaterite → aragonite. The stronger the magnetic field and the longer the time
the more obvious the induction effect. The effect of a magnetic field is strongest in the aging stage and weakest in the solution stage. Inductions by egg-white protein and by a magnetic field inhibit each other
but they both restrict particle growth. These findings highlight the importance of minor environmental factors for biomineralization and can serve as a reference for biomimetic preparation of a CaCO
3
nacre-like structure and for anti-scale technolog
y for circulating cooling water.
关键词
Keywords
references
The trial reading is over, you can activate your VIP account to continue reading.