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Hollow structure formation mechanism of calcium carbonate particles synthesized by the CO _2 bubbling method

机译:CO _2鼓泡法合成碳酸钙颗粒的中空结构形成机理。

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The hollow structure formation mechanism of calcium carbonate particles synthesized by the CO _2 bubbling method has been investigated. Samples were sequentially taken during the bubbling process to be structurally evaluated by X-ray diffraction and scanning electron microscopy. As a result, it has been elucidated that there are three development stages (A, B, and C) in the formation of the hollow structure. In stage A, amorphous CaCO _3 precipitates as primary particles with the decreasing pH by CO _2 bubbling. The primary particles then aggregate around pH 9.1 to form secondary particles, and turbidity ensues. Furthermore, because of the decreasing pH, the primary particles on the surface of the secondary particles begin to transform into the vaterite phase and form a shell. During stage B, the surface potential decreases along with a steep decrease in the pH, interparticle attraction of the primary particles on the surface of the secondary particles becomes stronger, and a highly compacted shell is formed. At the same time as vaterite precipitation on the surface, dissolution of the amorphous phase on the inside rapidly proceeds to precipitate vaterite particles by adhesion to the inside of the outer shell. At this time, contraction due to the release of water occurs and the hollow structure is formed. Moreover, it has been elucidated that, at pH ≤7, redissolution of the particulates inside the secondary particles occurs and definite shell structures are formed.
机译:研究了CO _2鼓泡法合成碳酸钙颗粒的中空结构形成机理。在起泡过程中顺序地取样,以通过X射线衍射和扫描电子显微镜对结构进行评估。结果,已经阐明在空心结构的形成中存在三个显影阶段(A,B和C)。在阶段A中,无定形CaCO _3以初级颗粒的形式沉淀,随着CO _2鼓泡,pH降低。然后,初级粒子在pH 9.1左右聚集形成次级粒子,随后出现混浊。此外,由于pH降低,次级颗粒表面上的初级颗粒开始转变为球ate石相并形成壳。在阶段B期间,表面电势随着pH的急剧下降而降低,一次粒子在二次粒子表面上的粒子间吸引力变得更强,并且形成了高度致密的壳。在球v石表面析出的同时,内部的非晶相溶解迅速,通过附着在外壳内部而使球ate石粒子析出。此时,由于放水而产生收缩,形成中空结构。此外,已经阐明,在pH≤7下,二次颗粒内部的颗粒发生再溶解,并且形成确定的壳结构。

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