首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Effects of operating factors on the particle size distribution and particle shape of synthesized precipitated CaCO_3: effect of reaction temperature,blowing rate of CO_2 gas and initial slurry concentration of Ca(OH)_2 on reaction completion time
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Effects of operating factors on the particle size distribution and particle shape of synthesized precipitated CaCO_3: effect of reaction temperature,blowing rate of CO_2 gas and initial slurry concentration of Ca(OH)_2 on reaction completion time

机译:操作因素对合成沉淀CaCO_3粒径分布和形状的影响:反应温度,CO_2吹入速率和Ca(OH)_2初始浆料浓度对反应完成时间的影响

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摘要

This study was carried out to investigate the mechanism and effects of experimental factors on the particle size distribution and particle morphology of synthesized precipitated CaCO_3 in the carbonation process in which CaCO_3 is formed by blowing rate of CO_2 gas into lime milk.The changes of pH and temperature occurred during the carbonation process for determining the dependence of the reaction completion time on experimental factors such as reaction temperature,initial concentration of lime milk and volumetric blowing rate of CO2 gas.The synthesized CaCO_3 powder was pure white calcite crystal of cubic shape with a median diameter of 0.75 mum.The reaction completion time was directly proportional to the initial concentration of Ca(OH)2 in slurry above 0.5 wt%.The observed dependence of reaction completion time on the initial slurry concentration and the blowing rate of CO_2 gas could be qualitatively interpreted in terms of the proposed formulation for the carbonation process,which was constructed on the basis of the concept that the rate of Ca(OH)2 dissolution is balanced by the rate of CO2 absorption and by the carbonation reaction in an aqueous slurry containing fine Ca(OH)2 particles.
机译:本研究旨在探讨实验因素对碳酸化过程中合成沉淀的CaCO_3的粒径分布和颗粒形态的机理和影响,在碳酸化过程中,通过向石灰乳中吹入CO_2气体来形成CaCO_3.pH和碳酸化过程中发生的温度是确定反应完成时间与实验温度,石灰乳的初始浓度和CO2气体的体积吹入速度等实验因素的关系。合成的CaCO_3粉末是立方形状的纯白色方解石晶体。平均直径为0.75毫米。反应完成时间与0.5wt%以上的浆料中Ca(OH)2的初始浓度成正比。观察到的反应完成时间对初始浆料浓度和CO_2气体吹入速率的依赖性根据碳酸化过程的拟定配方进行定性解释h是基于以下概念构造的:Ca(OH)2的溶解速率由CO 2吸收速率和包含细Ca(OH)2颗粒的水性浆料中的碳酸化反应平衡。

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