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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Contribution of Aggregation to the Growth Mechanism of Seeded Calcium Carbonate Precipitation in the Presence of Polyacrylic Acid
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Contribution of Aggregation to the Growth Mechanism of Seeded Calcium Carbonate Precipitation in the Presence of Polyacrylic Acid

机译:聚丙烯酸存在下聚集对种子碳酸钙沉淀生长机理的贡献

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Our work investigates the precipitation mechanism of a seeded calcium carbonate reaction, by using cryogenic TEM to observe the early stages of the reaction. The early precipitation of a hydrated phase is proposed as an intermediate phase before transformation into calcite. Thermodynamic modeling in conjunction with pH, surface potential measurements, and colloidal stability modeling demonstrate that calcite growth is dominated by agglomeration. This is in agreement with the cryogenic TEM observations, which suggest oriented attachment dominates early aggregation. The final stage of the reaction is described by a ripening mechanism that is significantly inhibited when high concentrations of polyacrylic acid (PAA) are used. The different concentrations of PAA lead to significant differences in the final particle substructure observed using cross section TEM. At low PAA concentrations, single crystal particles result, coherent with the proposed early oriented attachment mechanism and interfacial energy calculations. A core shell model is proposed for high PAA concentrations, whereas internal ripening of nanosized pores has been observed for low PAA concentrations, suggesting trapped solvent during the rapid initial particle formation at the relatively high supersaturations (S = 30) investigated.
机译:我们的工作通过使用低温TEM观察反应的早期阶段来研究接种碳酸钙反应的沉淀机理。建议将水合相的早期沉淀作为转变为方解石之前的中间相。热力学模型与pH值,表面电势测量和胶体稳定性模型相结合证明,方解石的生长主要由团聚形成。这与低温TEM观察结果一致,后者表明定向附着主导了早期聚集。反应的最后阶段由成熟机制描述,该成熟机制在使用高浓度的聚丙烯酸(PAA)时会受到明显抑制。使用横截面TEM观察到,不同浓度的PAA导致最终粒子亚结构的显着差异。在低PAA浓度下,会产生单晶颗粒,这与建议的早期定向附着机制和界面能计算相一致。对于高PAA浓度,建议使用核壳模型,而对于低PAA浓度,则观察到纳米孔的内部成熟,这表明在相对较高的过饱和度(S = 30)下快速初始颗粒形成过程中被捕集的溶剂。

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