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Measurement of the residence time distribution of a cohesive powder in a flighted rotary kiln

机译:飞行窑中粘性粉末停留时间分布的测量

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摘要

The rotary kiln is an essential device in chemical and metallurgical industries, with applications in a wide range of solids manufacturing processes. In particular, in the preparation of industrial chemical catalysts, the kiln has become a popular reactor for continuous calcination of catalysts ranging from millimeter-sized extrudates to micron-sized powders. As granular and powder flow behaviors are difficult to characterize, the design and scale-up of rotary calcination processes are often performed empirically. The goal of this research is to improve the fundamental understanding of powder flow in rotary kilns to aid in optimization of the continuous calcination process. For successful calcination to occur, the residence time of the particles must exceed the time required for heating and subsequent treatment. For uniform treatment of the feed, the particles must also exhibit low axial dispersion. In this work, the mean residence time and axial dispersion coefficient for a cohesive fluid catalytic cracking powder were determined in a pilot plant kiln by measuring the residence time distribution. This study utilized a pulse test developed by Danckwerts. Results were fit to the Taylor solution of the axial dispersion model and compared to the Sullivan prediction for mean residence time. It was found that the mean residence time decreases as the feed rate, kiln incline, and rotation rate increase. It was also found that the axial dispersion coefficient increases with speed of rotation and angle of incline. However, the axial dispersion coefficient decreases as the feed rate is increased.
机译:旋转窑是化学和冶金行业的必备装​​置,具有各种固体制造工艺的应用。特别地,在制备工业化学催化剂时,窑已成为一种流行的反应器,用于连续煅烧的催化剂,范围从毫米尺寸的挤出物到微米尺寸粉末。作为颗粒和粉末流动性难以表征,旋转煅烧过程的设计和扩展通常经验上进行。本研究的目标是提高对窑中粉末流动的根本理解,以帮助优化连续煅烧过程。为了发生成功煅烧,颗粒的停留时间必须超过加热和随后的治疗所需的时间。对于饲料的均匀处理,颗粒还必须表现出低轴向分散体。在这项工作中,通过测量停留时间分布,在先导植物窑中测定有粘性流体催化裂粉末的平均停留时间和轴向分散系数。本研究利用Danckwerts开发的脉冲测试。结果适用于轴分散模型的泰勒溶液,与平均停留时间的Sullivan预测相比。发现平均停留时间随着进料速率,窑倾斜和旋转速率增加而降低。还发现轴向分散系数随着旋转速度和斜角而增加。然而,随着进料速率的增加,轴向分散系数减小。

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