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首页> 外文期刊>Journal of near infrared spectroscopy >Real-time monitoring of the drying of extruded granules in a fluidised bed using near infrared spectroscopy and kinetic evaluation of the drying process
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Real-time monitoring of the drying of extruded granules in a fluidised bed using near infrared spectroscopy and kinetic evaluation of the drying process

机译:使用近红外光谱实时监测流化床中挤出颗粒的干燥情况,并对干燥过程进行动力学评估

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摘要

The purpose of this study was to quantitatively evaluate the water content of granules drying in a fluidised bed by near infrared (NIR) spectroscopy in real time and estimate a constant drying rate. Riboflavin granules were prepared by extrusion based on a standard formulation. NIR spectra collected during drying and the water content of granules was correlated by partial least squares (PLS) regression. To consider variability among batches, the leave-one-batch-out cross-validation procedure was performed. The PLS analysis showed that the plots of predicted vs actual values were linearly correlated with a coefficient content which can be continuously predicted with small errors. The difference between batches was clarified by results of score plots. In each batch, water content was predicted accurately using the PLS model. Based on water content values predicted in real time, constant drying rate was estimated. This result suggested constant drying rate might increase as the granule size decreases. This technique provides a robust calibration model for a better understanding and control of the drying process.
机译:这项研究的目的是通过近红外(NIR)光谱实时定量评估流化床中干燥的颗粒的含水量,并估计恒定的干燥速率。核黄素颗粒是根据标准配方通过挤出制备的。干燥期间收集的NIR光谱和颗粒的水分含量通过偏最小二乘(PLS)回归相关。为了考虑批次之间的差异,执行了留一批次交叉验证程序。 PLS分析表明,预测值与实际值的图线与系数含量线性相关,该系数含量可以连续不断地进行预测,误差很小。批次之间的差异通过得分图的结果得以阐明。在每个批次中,使用PLS模型可准确预测含水量。基于实时预测的水含量值,估计恒定的干燥速率。该结果表明恒定的干燥速率可能随着颗粒尺寸的减小而增加。该技术提供了可靠的校准模型,可以更好地理解和控制干燥过程。

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