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The influence of surface hydrophobicity in fluidization of ultrafine Al2O3 particles

机译:表面疏水性对超细Al2O3颗粒流态化的影响

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A new approach is hereby presented to study the influence of surface properties on ultrafine alumina (Al2O3) particles towards a fluidized performance by changing the ultrafine particles (Al2O3) surface hydrophobic degree. A number of variables that affects fluidization performance of ultrafine particles (Al2O3), including hydrophobicity has been studied. The minimum full fluidization velocities (U-mff), average bed pressure drop (Delta P-a), standard deviation in pressure drop (sigma(p)) and so on, has been found to depend on the hydrophobic degree, which is a function of the ultrafine particles (Al2O3) surface properties. After treatment of the ultrafine particles (Al2O3) with a surfactant, the liquid-solid contact angle on the ultrafine particles (Al2O3) raises, thus changing the interaction between the ultrafine particles (Al2O3) and also between the ultrafine particles (Al2O3) with the micro-fluidized bed wall surface. Furthermore, some changes in important parameters such as particle size (simple agglomerate size), bulk density, flow function plots, maximum wall friction angle, BET parameters and so on were also evaluated. The fluidization of ultrafine particles is attractive, if the interaction forces between the ultrafine particles (Al2O3) and also between the ultrafine particles (Al2O3) with the micro-fluidized bed wall surface can be artificially controlled. Moreover, it is possible to achieve a better fluidization performance on the ultrafine particles (Al2O3). However, more investigation is required to improve the fluidization performance of the ultrafine particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:因此,提出了一种新方法,通过改变超细颗粒(Al2O3)的表面疏水度来研究表面性能对超细氧化铝(Al2O3)颗粒对流态化性能的影响。已经研究了许多影响超细颗粒(Al2O3)流化性能的变量,包括疏水性。已发现最小全流化速度(U-mff),平均床压降(Delta Pa),压降标准偏差(sigma(p))等取决于疏水度,这是疏水性的函数。超细颗粒(Al2O3)的表面性能。用表面活性剂处理超细颗粒(Al2O3)后,在超细颗粒(Al2O3)上的液固接触角增大,从而改变了超细颗粒(Al2O3)之间以及超细颗粒(Al2O3)与表面活性剂之间的相互作用。微流化床壁表面。此外,还评估了重要参数的一些变化,例如粒径(简单的团聚物尺寸),堆积密度,流动函数图,最大壁摩擦角,BET参数等。如果可以人工控制超细颗粒(Al2O3)之间以及超细颗粒(Al2O3)与微流化床壁表面之间的相互作用力,则超细颗粒的流化是有吸引力的。而且,可以在超细颗粒(Al 2 O 3)上实现更好的流化性能。然而,需要更多的研究来改善超细颗粒的流化性能。 (C)2016 Elsevier B.V.保留所有权利。

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