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首页> 外文期刊>Journal of the Korean Physical Society >Synthesis of nano precipitated calcium carbonate by using a carbonation process through a closed loop reactor
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Synthesis of nano precipitated calcium carbonate by using a carbonation process through a closed loop reactor

机译:通过闭环反应器采用碳化工艺合成纳米沉淀碳酸钙

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摘要

Nano calcium carbonate particles have a wide range of industrial applications due to their beneficial properties such as high porosity and high surface area to volume ratio and due to their strengthening the mechanical properties of plastics and paper. Consequently, significant research has been done to deliver a new approach for the synthesis of precipitated nano calcium carbonate by using a carbonation process through a closed loop reactor. Both the experimental and the instrumental parameters, i.e. the CO2 flow rate, the concentration of the starting materials (Ca(OH)(2) and CaO), the pH, the orifice diameter, etc., were investigated. The carbonation efficiency was increased due to the diffusion process involved in the loop reactor. The particle size was affected by the CO2 flow rate, reaction time, and orifice diameter. Finally, precipitated nano calcite calcium carbonate (50 to 100 nm) was synthesized by optimizing all the experimental and the instrumental parameters. The synthesized precipitated nano calcium carbonate was characterized by using scanning electron microscopy (SEM), X-ray diffraction (XRD), and Fourier transform infrared (FTIR) spectroscopy. This study has proved that the carbonation efficiency can be enhanced for a short time by using a loop reactor and that the carbonation process was more energy efficient and cost effective than other conventional methods.
机译:纳米碳酸钙颗粒由于其诸如高孔隙率和高表面积/体积比之类的有益特性并且由于其增强了塑料和纸的机械性能而具有广泛的工业应用。因此,已经进行了大量研究以提供一种新的方法,该方法通过使用闭环反应器的碳化过程来合成沉淀的纳米碳酸钙。研究了实验参数和仪器参数,即CO2流量,原料浓度(Ca(OH)(2)和CaO),pH值,孔口直径等。归因于回路反应器中的扩散过程,增加了碳酸化效率。粒径受CO2流量,反应时间和孔口直径的影响。最后,通过优化所有实验参数和仪器参数,合成了沉淀的方解石碳酸钙(50至100 nm)。合成的沉淀纳米碳酸钙通过扫描电子显微镜(SEM),X射线衍射(XRD)和傅里叶变换红外(FTIR)光谱进行表征。这项研究证明,使用环管反应器可在短时间内提高碳酸化效率,并且碳酸化过程比其他常规方法更具能源效率和成本效益。

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