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首页> 外文期刊>Drying technology: An International Journal >Fluid Dynamics and Drying of Cohesive Particles of a Biodegradable Polymer (Poly-Hydroxybutyrate) in a Rotating Pulsed Fluidized Bed
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Fluid Dynamics and Drying of Cohesive Particles of a Biodegradable Polymer (Poly-Hydroxybutyrate) in a Rotating Pulsed Fluidized Bed

机译:旋转脉冲流化床中可生物降解的聚合物(聚羟基丁酸酯)的粘性聚合物的流体动力学和干燥

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摘要

This article presents the results of fluid dynamics and drying of poly-hydroxybutyrate (PHB) granules in a rotating pulsed fluidized bed (RPFB) dryer. Cohesiveness of PHB results in problems when using conventional drying techniques, such as a fluidized bed dryer. The excess surface water on the particles may form agglomerates that damage the flowability of the material inside the dryer. The drying study in RPFB consisted of adjusting mathematical models for predicting the moisture evaporation during the constant drying rate period (linear fit) and the decreasing drying rate period (analytical solution of Fick's second law). The influence of temperature, rotation frequency, and velocity of the drying air on the constant drying rate (N_c), effective diffushity (D_(eff)), and mass of particles elutriated (m_e) during drying was evaluated. Particle porosity was analyzed before and after drying and scanning electronic microscopy (SEM) was employed to verify structural changes on the PHB granules after drying. The RPFB dryer proved to be appropriate to dry the PHB granules, resulting in an excellent fluid dynamics behavior of the particles inside the bed and providing uniform drying of the solids. Temperature and velocity of the air had a significant influence on the drying process, but rotation frequency did not affect the process in the ranges analyzed. Fine particle elutriation occurred during the first 10 min of drying. After drying, the porosity changed and breakage of the particles was observed due to attrition inside the bed.
机译:本文介绍了在旋转脉冲流化床(RPFB)干燥机中进行流体动力学和干燥多羟基丁酸酯(PHB)颗粒的结果。当使用常规干燥技术(例如流化床干燥器)时,PHB的内聚性会导致问题。颗粒上多余的表面水可能会形成附聚物,从而损坏干燥机内部物料的流动性。 RPFB中的干燥研究包括调整数学模型,以预测恒定干燥速率期间(线性拟合)和降低干燥速率期间(菲克第二定律的解析解)期间的水分蒸发。评估了温度,旋转频率和干燥空气速度对干燥过程中恒定干燥速率(N_c),有效扩散度(D_(eff))和淘析颗粒质量(m_e)的影响。在干燥前后对颗粒孔隙率进行分析,并采用扫描电子显微镜(SEM)验证干燥后PHB颗粒的结构变化。事实证明,RPFB干燥机适合干燥PHB颗粒,从而使床内颗粒具有出色的流体动力学性能,并能均匀干燥固体。空气的温度和速度对干燥过程有显着影响,但在所分析的范围内,旋转频率对过程没有影响。干燥的前10分钟发生细颗粒淘析。干燥后,孔隙率改变并且由于床内的磨损而观察到颗粒的破裂。

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