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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effect of fluidized bed particle properties and agglomerate shape on the stability of agglomerates in a fluidized bed
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Effect of fluidized bed particle properties and agglomerate shape on the stability of agglomerates in a fluidized bed

机译:流化床颗粒性质和附聚物形状对附聚物在流化床中稳定性的影响

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摘要

In particulate operations, agglomeration is a vital process as it is inevitable in the pharmaceutical, food, and detergent industries. It can be used to create particles of specific shapes and sizes, stabilize particulate mixtures and reduce dust emissions. However, agglomeration increases reactor fouling in fluid coking systems. The goal of this study is to understand the effect of fluidized bed particles and agglomerate shape on agglomerate stability, i.e. the resistance of agglomerates to breakage. Artificial agglomerates were made of polyurethane foam, magnets and radio frequency identification (RFID) tags. Artificial agglomerates greatly improve the reproducibility and ease of the agglomerate stability measurements, and agglomerate breakage anywhere in the bed is detected with an RFID reader. The important findings for the effect Of bed particles on the stability of agglomerates are that at low excess fluidization velocities, if the density of the bed particles is increased, the agglomerates spend more time in the surface region of bed, where bubbles are larger. At high velocity, the effect is negligible. An empirical correlation is developed to predict the agglomeration breakage time. The bed particle size and shape have a negligible effect on the agglomerate stability. Spherical agglomerates are more stable than cylindrical agglomerate as these agglomerates are exposed to less shear from bed turbulence.
机译:在颗粒操作中,团聚是至关重要的过程,因为在制药,食品和洗涤剂行业中这是不可避免的。它可用于产生特定形状和尺寸的颗粒,稳定颗粒混合物并减少粉尘排放。但是,团聚增加了流体焦化系统中反应器的结垢。这项研究的目的是了解流化床颗粒和附聚物形状对附聚物稳定性的影响,即附聚物的抗破碎性。人造团块由聚氨酯泡沫,磁铁和射频识别(RFID)标签制成。人工团聚体极大地提高了团聚体稳定性测量的可重复性和简便性,并且可以使用RFID阅读器检测床中任何地方的团聚体破损。床颗粒对附聚物稳定性影响的重要发现是,在较低的过流化速度下,如果床颗粒的密度增加,则附聚物在床表面区域中会花费更多的时间,在此处气泡较大。在高速下,效果可忽略不计。建立了经验相关性以预测团聚破裂时间。床的粒度和形状对附聚物稳定性的影响可忽略不计。球形附聚物比圆柱形附聚物更稳定,因为这些附聚物受到来自床湍流的较小剪切力。

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