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Investigation of Hydrodynamic Behavior of Alginate Aerogel Particles in a Laboratory Scale Wurster Fluidized Bed

机译:海藻酸酯气凝胶颗粒在实验室规模的Wurster流化床中的水动力行为研究

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摘要

The effects of design and operating parameters on the superficial velocity at the onset of circulatory motion and the residence time of alginate aerogel particles in a laboratory scale Wurster fluidized bed were investigated. Several sets of experiments were conducted by varying Wurster tube diameter, Wurster tube length, batch volume and partition gap height. The superficial velocities for Wurster tube with 10 cm diameter were lower than the tube with 8 cm diameter. Superficial velocities increased with increasing batch volume and partition gap height. Moreover, increasing batch volume and partition gap height led to a decrease in the particle residence time in the Wurster tube. The results showed that there is an upper limit for each parameter in order to obtain a circulatory motion of the particles. It was found that the partition gap height should be 2 cm for proper particle circulation. Maximum batch volume for the tube with 10 cm diameter was found as 500 mL whereas maximum batch volume was 250 mL for the tube with 8 cm diameter. The fluidization behavior of the aerogel particles investigated in this study could be described by the general fluidization diagrams in the literature.
机译:研究了设计和运行参数对循环运动开始时的表面速度以及藻酸盐气凝胶颗粒在实验室规模的Wurster流化床中的停留时间的影响。通过改变Wurster管直径,Wurster管长度,批料体积和分隔间隙高度来进行几组实验。直径为10 cm的Wurster管的表面速度低于直径为8 cm的管。表面速度随批料体积和分隔间隙高度的增加而增加。此外,增加批料体积和分隔间隙高度导致在Wurster管中的颗粒停留时间减少。结果表明,为了获得颗粒的循环运动,每个参数都有上限。已经发现,分隔间隙的高度应为2cm,以使颗粒循环适当。发现直径为10 cm的管的最大批处理体积为500 mL,而直径为8 cm的管的最大批处理体积为250 mL。在这项研究中研究的气凝胶颗粒的流化行为可以通过文献中的一般流化图来描述。

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