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Imaging Method for Measurements of Particle Density and Solid Holdup of Entangled MWCNTs in a Fluidized Bed

机译:成像方法测量流化床中纠缠的多壁碳纳米管的颗粒密度和固着率

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摘要

A measurement method of the apparent particle density of the carbon nanotube (CNT) particles, characterized by enveloped volume formed by loosely entangled nanotubes, has been proposed for the CNT fluidized bed application. The method is characterized by obtaining the enveloped volume from the CNTs imaging under the free falling condition similar to the fluidized bed. The shape of the falling CNT particles in a column (0.1 m long × 0.012 m wide × 0.60 m high) was photographed using a high-speed camera under the sedimentation condition, and the apparent CNT particle density was calculated from the enveloped volume obtained by image-processing for the particles images. The apparent densities and solid holdups by the imaging method at various conditions were compared with those by the previous Hg-porosimetry method for the two types of CNTs (a vertically aligned CNT and two entangle CNTs) and the nonporous polycarbonate particle (a reference particle). The imaging method reflects well the packed bed and fluidized bed phenomena observed in the experiments with reasonable solid holdups, compared with the Hg-porosimetry method showing high densities and low holdups. The sizes of CNT particles predicted with the density by the imaging method were in good agreement with the measured mean particle sizes when calculated based on the Richardson–Zaki equation, indicating the imaging method represented well the enveloped volume and shape formed by entangled nanotubes on the CNTs.
机译:已经提出了一种用于碳纳米管(CNT)颗粒的表观颗粒密度的测量方法,其特征在于由松散缠结的纳米管形成的包封体积。该方法的特征在于,在类似于流化床的自由下落条件下,从CNT成像获得包络体积。在沉降条件下,使用高速照相机拍摄柱状下落的CNT颗粒的形状(长0.1 m×宽0.012 m×高0.60 m),并通过包封体积计算得到表观CNT颗粒密度。对粒子图像进行图像处理。通过成像方法在各种条件下的表观密度和固含量与之前的汞孔率法比较了两种类型的CNT(垂直排列的CNT和两个纠缠的CNT)和无孔聚碳酸酯颗粒(参考颗粒)的表观密度和固含量。 。成像方法很好地反映了在实验中观察到的填充床和流化床现象,并具有合理的固体滞留率,而Hg孔隙率法显示出高密度和低滞留率。根据Richardson-Zaki方程计算,通过成像方法用密度预测的CNT颗粒尺寸与测得的平均颗粒尺寸非常吻合,这表明成像方法很好地代表了纳米管缠结的包裹体积和形状。碳纳米管。

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