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Impact of Two-Dimensional Particle Size Distribution on Estimation of Water Vapor Diffusivity in Micrometric Size Cellulose Particles

机译:二维粒径分布对微米级纤维素颗粒中水蒸气扩散率估算的影响

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摘要

This work aims at assessing the impact of two-dimensional particle size distribution (2D-PSD) on the identification of water vapor diffusivity in micrometric size cellulose particles displaying a size aspect ratio lower than 2 and a cylindrical shape. First, different methodologies to obtain the two-dimensional (2D) particle size distribution (diameter versus length) were compared, based on image analysis. Then, experimental sorption kinetics were obtained by using a quartz crystal microbalance (QCM) coupled with a water vapor adsorption system. Diffusivity values were estimated when considering either the 2D-PSD or global descriptors, such as the mean or median diameter and length of particles. Results revealed that the use of an analytical approach when considering the 2D mean-PSD or the median-PSD was the most accurate way to get diffusivity values at the scale of particles in a polydisperse sample of cellulose particles. Following this approach, a water vapor apparent diffusivity of 3.1 × 10−12 ± 2.3 × 10−12 m2·s−1 was found for the considered cellulose sample. Neglecting PSD in diffusivity estimation led to an underestimation of a factor of 2. This procedure could be extended for all the polydisperse samples in order to have an accurate estimation of water vapor diffusivity at the scale of single particles.
机译:这项工作旨在评估二维粒度分布(2D-PSD)对尺寸尺寸比小于2且呈圆柱形的微米级纤维素颗粒中水蒸气扩散率鉴定的影响。首先,基于图像分析,比较了获得二维(2D)粒度分布(直径与长度)的不同方法。然后,通过使用石英微天平(QCM)结合水蒸气吸附系统获得实验吸附动力学。在考虑2D-PSD或全局描述符(例如粒子的平均直径或中值直径和长度)时,会估计扩散值。结果表明,在考虑二维均值-PSD或中值-PSD时,使用分析方法是获得纤维素颗粒多分散样品中颗粒级扩散系数值的最准确方法。按照这种方法,水蒸气的表观扩散率为3.1×10 −12 ±2.3×10 −12 m 2 ·s -发现1 是所考虑的纤维素样品。在扩散率估计中忽略PSD导致低估了2倍。可以对所有多分散样品扩展此过程,以便在单个颗粒的尺度上准确估计水蒸气的扩散率。

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