Structural variations of amorphous magnesium carbonate during nucleation, crystallization, and decomposition of nesquehonite MgCO3·3H2O

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作者
Gen-ichiro Yamamoto
Atsushi Kyono
Satoru Okada
机构
[1] University of Tsukuba,Division of Earth Evolution Sciences, Graduate School of Life and Environmental Sciences
来源
Physics and Chemistry of Minerals | 2023年 / 50卷
关键词
Amorphous magnesium carbonate; Nesquehonite; Hydromagnesite; Dypingite; Atomic pair distribution;
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摘要
Carbonate minerals are major contributors to carbon sequestration in geological deposits; however, their nature and behavior remain unclear. Amorphous magnesium carbonate (AMC) is formed as a precursor to crystalline magnesium carbonates and as a product of thermal decomposition of nesquehonite (NSQ). In this study, the AMCs formed during the crystallization and decomposition of NSQ were investigated using X-ray diffraction (XRD) and atomic pair distribution function (PDF) methods. An AMC with a hydromagnesite-like structure (AMC-I) was formed immediately after mixing MgCl2 and Na2CO3 solutions. After 5 min of stirring, no change was observed in the XRD pattern; however, the PDF pattern changed. This suggests that the medium-range ordered structure of AMC-I transformed into an intermediate structure (AMC-II) between AMC-I and NSQ. After 10 min of stirring, the AMC-II crystallized into NSQ. In the case of Rb2CO3, the AMC-II structure was formed immediately after the mixing of solutions and was stable for three days. AMC-II in the Rb2CO3 solution appeared to be in equilibrium with energetic local minima, indicating the existence of polyamorphism in AMC. When Cs2CO3 solution was used, the first precipitate had an AMC-I structure. By stirring for 5 min, the AMC-I was transformed to AMC-II, and after 10 min of stirring, a few quantities crystallized into NSQ. After three days, NSQ dissolved and transformed back into AMC-I. Thus, it is inferred that the crystallization of NSQ is significantly influenced by alkali cations in aqueous solutions. The AMC formed during the thermal decomposition also possesses the AMC-I structure.
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  • [1] Akao M(1977)The hydrogen bonding of hydromagnesite Acta Crystallogr B Struct Crystallogr Cryst Chem 33 1273-1275
  • [2] Iwai S(2017)A review of developments in carbon dioxide storage Appl Energy 208 1389-1419
  • [3] Aminu MD(1994)Aquifer disposal of CO Energy Convers Manag 35 269-279
  • [4] Nabavi SA(2010): hydrodynamic and mineral trapping J Hazard Mater 178 522-528
  • [5] Rochelle CA(2013)The thermal behaviour and structural stability of nesquehonite, MgCO Chem Geol 340 59-67
  • [6] Manovic V(2012)·3H Chem Geol 332–333 32-44
  • [7] Bachu S(2012)O, evaluated by in situ laboratory parallel-beam X-ray powder diffraction: new constraints on CO J Therm Anal Calorim 107 439-445
  • [8] Gunter WD(2014) sequestration within minerals Miner Mag 78 1363-1372
  • [9] Perkins EH(2007)Phase transitions in the MgCO J Phys Condens Matter 19 335219-2076
  • [10] Ballirano P(2008)H Polyhedron 27 2069-8891