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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Experimental studies of gas holdup in a slurry bubble column at high gas temperature of a helium-water-alumina system
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Experimental studies of gas holdup in a slurry bubble column at high gas temperature of a helium-water-alumina system

机译:氦-水-氧化铝系统高气体温度下浆料鼓泡塔中气体滞留的实验研究

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In this paper, overall gas holdup is investigated experimentally for a helium gas at 90 degrees C injected through a slurry of water at 22 degrees C and alumina solid particles in a slurry bubble column reactor. This work examines the effects of superficial gas velocity, static liquid height, solid particles concentration and solid particle diameter, on the overall gas holdup of the SBCR. These effects are formulated in forms of empirical equations. From the experimental work, it is found that the overall gas holdup increases by increasing the superficial gas velocity with a higher rate of increase at lower superficial gas velocity. In addition, the overall gas holdup decreases by increasing the static liquid height and/or the solid concentration at any given superficial gas velocity. Moreover, at a higher solid concentration, the changing rate of the overall gas holdup with the superficial gas velocity and/or the solid concentration is lower. Furthermore, it is observed that the effect of the solid particle diameter on overall gas holdup is negligible. (C) 2016 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在本文中,对通过90°C氦气注入22°C水浆和氧化铝固体颗粒在鼓泡塔反应器中进行了实验研究。这项工作研究了表观气体速度,静态液体高度,固体颗粒浓度和固体颗粒直径对SBCR整体气体滞留量的影响。这些影响以经验公式的形式表示。从实验工作中发现,通过以较低的表观气体速度增加较高的表观气体速度来增加表观气体速度来增加总的气体滞留量。另外,在任何给定的表观气体速度下,通过增加静态液体高度和/或固体浓度,总的气体滞留量会降低。此外,在较高的固体浓度下,总气体滞留率随表观气体速度和/或固体浓度的变化率较低。此外,观察到固体粒径对总气体滞留量的影响可以忽略。 (C)2016化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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