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Nanoparticle fluidization and Geldart's classification

机译:纳米粒子流态化和Geldart的分类

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摘要

The behaviour of gas-particle interaction in a fluidized bed depends strongly on the size of the particles being fluidized. Fluidization characteristics of macro-sized particles, from several tens of microns to several millimetres, are well described by the Geldart [1973. Types of gas fluidization, Powder Technology 7, 2851 classification. There is evidence that fluidization characteristics of nano-sized particles may be analysed by analogies to those of macro-sized particles. The aim of this paper is to look at whether the mechanism resulting in cohesive behaviour for macro-sized particles may be extended to nano-sized particles. Degussa Aerosil R974 powder, with a primary particle size of 12 nm, was fluidized using nitrogen in a cylindrical vessel, 50-mm-id and 900 mm in height. Characteristics of incipient fluidization are analysed in relation to variations in the initial packed bed conditions. Bed collapse experiments were performed and the results are used for assessing fluidization characteristics of the particles. It was found that nano-sized particles possess characteristics of both Group A and Group C of Geldart classification. Analysis shows that fluidization characteristics of nano-sized particles may be bridged to those of macro-sized particles through particle aggregation. (c) 2007 Elsevier Ltd. All rights reserved.
机译:流化床中气体-颗粒相互作用的行为在很大程度上取决于被流化的颗粒的尺寸。 Geldart [1973年。气体流化的类型,粉末技术7,2851分类。有证据表明,纳米颗粒的流化特性可以通过类似于宏观颗粒的分析来分析。本文的目的是研究导致宏观粒子内聚行为的机理是否可以扩展到纳米粒子。使用氮气在直径为50毫米,高度为900毫米的圆柱形容器中流化一次粒径为12 nm的Degussa Aerosil R974粉末。根据初始填充床条件的变化分析了初始流化的特征。进行床塌陷实验,并将结果用于评估颗粒的流化特性。发现纳米尺寸的颗粒具有Geldart分类的A组和C组的特征。分析表明,纳米粒子的流化特性可以通过粒子聚集与宏观粒子的流化特性相联系。 (c)2007 Elsevier Ltd.保留所有权利。

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