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Monitoring fluidized bed dryer hydrodynamics using pressure fluctuations and electrical capacitance tomography.

机译:使用压力波动和电容层析成像技术监测流化床干燥机的流体动力学。

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摘要

As part of the production of certain solid-dosage pharmaceuticals, granulated ingredients are dried in a batch fluidized bed dryer. Currently, the determination of the completion of the drying process is accomplished through measurements of product or outlet air temperatures. No quantitative measurement of hydrodynamic behaviour is employed. Changes in bed hydrodynamics caused by variations in fluidization velocity may lead to increased particle attrition. In addition, excessive desiccation of the granules caused by inaccurate determination of the drying endpoint may lead to an increase in the thermal and mechanical stresses within the granules. The activity of future high-potency or peptide based drug products may be influenced by these effects. Therefore, the quantification of hydrodynamic changes may be a key factor in the tighter control of both fluidization velocity and product moisture, which are critical for maintaining product quality.; High-frequency measurements of pressure fluctuations in a batch fluidized bed dryer containing pharmaceutical granulate have been used to provide a global, non-intrusive indication of the hydrodynamic changes occurring throughout the drying process. A chaotic attractor comparison statistical test known as the S-statistic, has been applied to quantify these changes in drying and a related unit operation, fluidized bed granulation. The S-statistic showed a sensitivity to moisture which is not seen with frequency and amplitude analysis. In addition, the S-statistic has been shown to be useful in identifying an undesirable bed state associated with the onset of entrainment in a bed instrumented for the collection of both pressure fluctuation and entrainment data.; Thus, the use of the S-statistic analysis of pressure fluctuations may be utilized as a low-cost method for determining product moisture or changes hydrodynamic state during fluidized bed drying.; Electrical capacitance tomography (ECT) has also been applied in this study to image the flow structure within a batch fluidized bed used for the drying of pharmaceutical granulate. This represents the first time that ECT has been applied to a bed of wet granulate material. This was accomplished through the use of a novel dynamic correction technique which accounts for the significant reduction in electrical permittivity occurring as moisture is lost during the drying process. The correction has been independently verified using x-ray tomography.
机译:作为某些固体剂量药物生产的一部分,将颗粒状成分在间歇流化床干燥机中干燥。当前,确定干燥过程的完成是通过测量产品或出口空气温度来完成的。没有对水动力行为进行定量测量。由流化速度变化引起的床流体动力学变化可能导致颗粒磨损增加。另外,由于不精确地确定干燥终点而导致的颗粒的过度干燥可能导致颗粒内的热应力和机械应力增加。这些效果可能会影响未来的高效能或基于肽的药物产品的活性。因此,流体动力学变化的量化可能是更严格控制流化速度和产品水分的关键因素,这对于维持产品质量至关重要。含有药物颗粒的间歇式流化床干燥机中压力波动的高频测量已用于提供整个干燥过程中发生的流体动力学变化的全局,非侵入性指示。一种称为S统计的混沌吸引子比较统计检验已用于量化干燥和相关单元操作(流化床造粒)中的这些变化。 S统计量显示出对水分的敏感性,这在频率和幅度分析中是看不到的。另外,已经表明,S统计量可用于识别与床中夹带开始有关的不良床状态,该床用于收集压力波动和夹带数据。因此,压力波动的S统计分析的使用可以用作确定产品水分或在流化床干燥过程中改变流体力学状态的低成本方法。在这项研究中还应用了电容层析成像(ECT)来成像用于制药颗粒干燥的分批流化床内的流动结构。这是首次将ECT应用于湿粒料床。这是通过使用一种新颖的动态校正技术来实现的,该技术可解决由于干燥过程中水分流失而导致的介电常数的大幅降低。该校正已使用X射线断层扫描进行了独立验证。

著录项

  • 作者

    Chaplin, Gareth.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 226 p.
  • 总页数 226
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化工过程(物理过程及物理化学过程);
  • 关键词

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