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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Preparation and in-situ surface modification of CaCO3 nanoparticles with calcium stearate in a microreaction system
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Preparation and in-situ surface modification of CaCO3 nanoparticles with calcium stearate in a microreaction system

机译:微孔系统中硬脂酸钙的CaCO3纳米粒子的制备及原位表面改性

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摘要

Nano-sized calcium carbonate, as a multifunctional material, is widely used in various industrial fields. The morphology, particle size, surface property of CaCO3 particles have great impact on the application effect. This study presents an energy-saving and efficient approach to controllably prepare CaCO3 nanoparticles and conduct surface modification simultaneously. Ca(OH)(2)/CO2 carbonation method was adopted to prepare CaCO3 nanoparticles using a membrane dispersion microreactor in the presence of calcium stearate (CaSt(2)) surfactant. The effects of gas and liquid flow rates, temperature and the dosage of surfactant were systematically investigated. The effect of surface modification was evaluated by contact angle and active ratio. The as-prepared hydrophobic CaCO3 nanoparticles were of good dispersity, with an average particle size of 34 nm, a specific surface area of above 30 m(2)/g and a contact angle of 107.8 degrees. In this work, the effect of surfactant on the carbonation reaction was greatly diminished by adding CaSt(2) surfactant to a portion of Ca(OH)(2) slurry. Additionally, the modification process was carried out without organic solvents and high temperature. As compared to post-modification method, the in-situ modification process is of significant practical importance because of high production efficiency, excellent process stability, and high product quality. (C) 2019 Published by Elsevier B.V.
机译:作为多功能材料的纳米碳酸钙被广泛用于各种工业领域。 CaCO3颗粒的形态,粒度,表面性质对应用效果产生了很大的影响。该研究提出了节能和有效的方法,可控制地制备CaCO 3纳米颗粒并同时进行表面改性。采用Ca(OH)(2)/ CO 2碳酸化方法在硬脂酸钙(浇铸(2))表面活性剂存在下使用膜分散微反应器制备CaCO 3纳米颗粒。气体和液体流速,温度和表面活性剂剂量的影响得到了系统地研究。通过接触角和主动比评估表面改性的影响。制备的疏水性CaCO 3纳米颗粒具有良好的分散性,平均粒度为34nm,比表面积为30μm(2)/ g的比例,接触角为107.8度。在这项工作中,通过向Ca(OH)(2)浆液的一部分添加(2)表面活性剂,大大减小了表面活性剂对碳化反应的影响。另外,改性过程无需有机溶剂和高温。与修饰后方法相比,原位改装过程具有重要的实际重要性,因为高生产效率,优异的工艺稳定性和高产品质量。 (c)2019年由elestvier b.v发布。

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