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Crystallization of microscopic Y2O3 powders by different techniques of fluidization at high temperature

机译:Y2O3微观粉末的高温流化技术结晶

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摘要

Ahigh temperature fluidized bed reactor (HTFBR)working at 900 to 1200 ◦Chas been developed to crystallize microscopic yttria (Y2O3) powders synthesized by spray pyrolysis. Such crystallization is classically performed in crucible or in moving belt furnaces. In order to demonstrate the advantages of the fluidized bed process over the conventional static mode treatments, a comparative study of the main characteristics of particles after heat treatment in a crucible and in the HTFBR has been performed. The high interparticle forces existing in such Geldart group C powders made it necessary to activate their fluidization. Following previous results, two activated fluidization processes were studied: addition of coarse powders to fine particles and vibrated fluidization. The hydrodynamic behavior of these fluidized beds was analyzed through pressure drop measurements. Convenient fluidization conditions were obtained for the two activated fluidization processes, leading to isothermal beds. The size distribution, the crystallinity and the outer morphology of particles before and after thermal treatments were analyzed and compared for the three processes tested. Some pre-sintering phenomena occurred at 1200 ◦C, which were clearly more intense in crucible than in activated fluidization. The crystallinity of the samples treated was equivalent for the three methods of thermal treatment. The interest of fluidization processes to post-treat microscopic particles is thus fully demonstrated.
机译:开发了工作在900至1200℃的高温流化床反应器(HTFBR),以使通过喷雾热解合成的微观氧化钇(Y2O3)粉末结晶。这种结晶通常在坩埚或移动式带式炉中进行。为了证明流化床工艺相对于常规静态模式处理的优势,已对坩埚和HTFBR中热处理后的颗粒主要特征进行了比较研究。此类Geldart C类粉末中存在的高粒子间作用力使其必须激活其流化作用。根据先前的结果,研究了两种活化流化过程:将粗粉添加到细颗粒中和振动流化。这些流化床的流体力学行为通过压降测量进行了分析。获得了两个活化流化过程的便利流化条件,从而形成了等温床。分析并比较了热处理前后颗粒的尺寸分布,结晶度和外部形态,并比较了三种测试方法。一些预烧结现象发生在1200℃,显然在坩埚中比在活化流化过程中更强烈。处理的样品的结晶度与三种热处理方法相同。因此,充分证明了流化过程对后处理微观颗粒的兴趣。

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