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Citrate Effects on Amorphous Calcium Carbonate (ACC) Structure, Stability, and Crystallization

机译:柠檬酸盐对无定形碳酸钙(ACC)结构,稳定性和结晶的影响

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Understanding the role of citrate in the crystallization kinetics of amorphous calcium carbonate (ACC) is essential to explain the formation mechanisms, stabilities, surface properties, and morphologies of CaCO3 biominerals. It also contributes to deeper insight into fluid-mineral interactions, both in nature and for industrial processes. In this study, ACC formation and its crystallization are monitored in real time as a function of citrate (CIT) concentration in solution. Additionally, synchrotron radiation pair distribution function analyses combined with solid-state, spectroscopic, and microscopic techniques are used to determine the effect of CIT on ACC structure, composition, and size. Results show an increase in ACC lifetime coupled with an increase in CIT uptake by ACC and slight changes in ACC atomic structure with an increase in CIT concentration. ACC does not form at concentrations 75% CIT/Ca and vaterite is absent in all cases where CIT is present. These findings can be explained by CIT binding with Ca ions, thereby forming Ca-CIT complexes in solution and decreasing ACC and calcite saturation levels. The formation of CIT-bearing ACC with calcitic structure and the absence of vaterite formation suggest that these solution complexes form a calcite-type atomic arrangement while CIT probably also acts as a growth inhibitor.
机译:了解柠檬酸盐在无定形碳酸钙(ACC)结晶动力学中的作用对于解释CaCO3生物矿物的形成机理,稳定性,表面性质和形态至关重要。它还有助于更深入地了解自然界和工业过程中的流体-矿物相互作用。在这项研究中,作为溶液中柠檬酸盐(CIT)浓度的函数,实时监测ACC的形成及其结晶。此外,同步辐射对分布函数分析与固态,光谱和显微技术相结合,可用于确定CIT对ACC结构,组成和尺寸的影响。结果显示,随着CIT浓度的增加,ACC寿命增加,ACC吸收CIT的数量增加,ACC原子结构略有变化。 ACC不会在CIT / Ca浓度达到75%的情况下形成,并且在所有存在CIT的情况下均不存在球ate石。这些发现可以通过CIT与Ca离子的结合来解释,从而在溶液中形成Ca-CIT复合物并降低ACC和方解石饱和度。带有钙结构的含CIT的ACC的形成以及没有球v石的形成表明这些溶液络合物形成了方解石型原子排列,而CIT可能还充当了生长抑制剂。

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