湿法消解制备的氢氧化钙的粒度:影响因素和机理

IF 1.5 4区 材料科学 Q3 Chemistry Crystal Research and Technology Pub Date : 2024-03-18 DOI:10.1002/crat.202300335
Xin Wang, Ming Wei, Kun Liu, Kuixin Cui, Yahui Yang, Zhongliang Tian
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引用次数: 0

摘要

石灰湿溶解工艺是合成氢氧化钙的有效方法。工艺参数和添加剂对产品颗粒有影响。在工艺参数中,石灰粒度、反应温度和时间对产品粒度的影响较大,其次是液固比和搅拌速度。实验证明,反应时间通过影响晶体生长来影响产品粒度,而其他工艺参数则通过影响离子扩散行为来影响粒度。在无机添加剂方面,Ca(OH)2 对产品粒度的影响微乎其微;但 NaOH 和 CaCl2 能显著提高产品粒度,剂量越大,粒度增加越大。实验证明,Ca(OH)2、NaOH 和 CaCl2 是通过影响离子扩散行为来影响粒度的。在有机添加剂方面,可溶性淀粉对产品粒度的影响最大,其次是三乙醇胺和聚乙烯吡咯烷酮 K30。实验证明,可溶性淀粉、三乙醇胺和聚乙烯吡咯烷酮 K30 通过影响结晶位置来影响产品粒度。最后,在上述研究的基础上,采用石灰湿消化法制备出了超细氢氧化钙浆料,其粒度分布特征为 D10、D50 和 D90 值分别为 0.303、1.750 和 4.534 µm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Particle Size of Calcium Hydroxide Prepared by Wet Digestion: Influencing Factors and Mechanism

The wet dissolution process of lime is an effective approach for synthesizing calcium hydroxide. Process parameters and additives exert influence on the product particle. Among the process parameters, lime particle size, reaction temperature, and time have a significant impact on product particle size, followed by liquid-solid ratio and stirring speed. The experiment proved that reaction time affects product particle size by affecting the crystal growth, while other process parameters affect the particle size by affecting the ion diffusion behavior. In terms of inorganic additives, Ca(OH)2 has minimal effect on product particle size; however, NaOH and CaCl2 can significantly enhance it with a greater dose leading to a larger increase. The experiment proved that Ca(OH)2, NaOH, and CaCl2 influence particle size through their impact on ion diffusion behavior. Regarding organic additives, soluble starch exhibits the greatest effect on product size followed by triethanolamine and polyvinylpyrrolidone K30. The experiment proved that soluble starch, triethanolamine, and polyvinylpyrrolidone K30 affect product particle size by influencing its crystallization position. Finally, an ultrafine slurry of calcium hydroxide was prepared using the lime wet digestion method based on the aforementioned research, with particle size distribution characterized by D10, D50, and D90 values of 0.303, 1.750, and 4.534 µm respectively.

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来源期刊
CiteScore
2.50
自引率
6.70%
发文量
121
审稿时长
1.9 months
期刊介绍: The journal Crystal Research and Technology is a pure online Journal (since 2012). Crystal Research and Technology is an international journal examining all aspects of research within experimental, industrial, and theoretical crystallography. The journal covers the relevant aspects of -crystal growth techniques and phenomena (including bulk growth, thin films) -modern crystalline materials (e.g. smart materials, nanocrystals, quasicrystals, liquid crystals) -industrial crystallisation -application of crystals in materials science, electronics, data storage, and optics -experimental, simulation and theoretical studies of the structural properties of crystals -crystallographic computing
期刊最新文献
Issue Information: Crystal Research and Technology 2'2025 Issue Information: Crystal Research and Technology 1'2025 Approaching Six Decades! Research Progress on Stability of FAPbI3 Perovskite Solar Cells Molecular Simulations of Stereocomplex Crystallization in Grafted Diblock Copolymers
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