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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >The study on the preparation methods and the fluidity of large rare earth oxide particles
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The study on the preparation methods and the fluidity of large rare earth oxide particles

机译:稀土氧化物大颗粒的制备方法及流动性研究

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In this work large CeO2 particles were prepared using H2C2O4 and NH4HCO3 as precipitators. The effects of feeding mode and speed, stirring speed, aging time, precipitate and calcination temperature and precipitation method on physicochemical properties of CeO2 were studied when the precipitator was H2C2O4. By the NH4HCO3 precipitation method, the effects of adding inoculating crystals and additives on particle size, loose density and fluidity of CeO2 were investigated. Under optimized conditions, large CeO2 Particles with high loose density and good fluidity of can be prepared by either H2C2O4 or NH4HCO3 precipitation method. SEM also investigates the morphology of the particles prepared by both methods. The results show that physicochemical properties of CeO2 particles prepared by the NH4HCO3 precipitation method are not as good as those of CeO2 particles prepared by the H2C2O4 Precipitation method. However, both methods are suitable for industrial production due to their simple processes, low equipment investment and ease for industrial development. Our results show that large rare earth particle can be prepared by the optimized conventional methods. This study provided a useful method to prepare of large rare earth particles.
机译:在这项工作中,使用H2C2O4和NH4HCO3作为沉淀剂制备了大的CeO2颗粒。研究了当沉淀剂为H2C2O4时,CeO2的理化性质对进料方式,速度,搅拌速度,时效时间,沉淀,煅烧温度和沉淀方法的影响。通过NH4HCO3沉淀法,研究了添加接种晶体和添加剂对CeO2的粒径,疏松密度和流动性的影响。在最佳条件下,可以通过H2C2O4或NH4HCO3沉淀法制备具有高疏松密度和良好流动性的CeO2大颗粒。 SEM还研究了通过两种方法制备的颗粒的形态。结果表明,NH4HCO3沉淀法制备的CeO2颗粒的理化性能不及H2C2O4沉淀法制备的CeO2颗粒。但是,这两种方法由于其工艺简单,设备投资少且易于工业发展而适合工业生产。我们的结果表明,可以通过优化的常规方法制备大的稀土粒子。该研究提供了一种制备大稀土颗粒的有用方法。

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