用扩散池法测量多孔介质的有效扩散系数

IF 9.3 2区 化学 Q1 CHEMISTRY, PHYSICAL Catalysis Reviews-Science and Engineering Pub Date : 1996-05-01 DOI:10.1080/01614949608006458
In-Soo Park∗, D. Do, A. Rodrigues
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引用次数: 33

摘要

半个多世纪以来,多孔介质的有效扩散率在实验和理论处理方面进行了大量的研究[1-4]。需要有效扩散率有几个原因[5];例如,在催化剂配方过程中,活性物质可以精确地或以指定的浓度分布在多孔基质或载体上。在非均相反应的实验工作中,需要有效的扩散系数来获得Thiele模量的值,从而确定本征反应动力学。在反应器设计中,需要利用扩散系数来评估Thiele模量,从而帮助预测非均相体系的反应速率。此外,一种简单快速的测试方法可作为催化剂生产过程中的筛选或质量控制程序。*庆南大学化学工程系休假,韩国马山631-701。
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Measurement of the Effective Diffusivity in Porous Media by the Diffusion Cell Method
Introduction There has been a vast amount of investigation in the field of experimental and theoretical treatments of the effective diffusivity in porous media for more than half of a century [1-4]. The effective diffusivity is required for several reasons [5]; for example, during catalyst formulation, active species can be laid down precisely or with specified concentration profiles on a porous matrix or support. In experimental work on heterogeneous reactions an effective diffusivity is needed to obtain the value of the Thiele modulus and hence to determine the intrinsic reaction kinetics. In reactor design the diffusivity is needed to evaluate the Thiele modulus, which can then be an aid in predicting reaction rates for heterogeneous systems. In addition, a simple and quick testing method could be used as a screening or quality control procedure during catalyst manufacture. ∗ On leave from the Department of Chemical Engineering, Kyungnam University, Masan 631-701, Korea.
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来源期刊
CiteScore
22.30
自引率
2.80%
发文量
29
期刊介绍: Catalysis Reviews is dedicated to fostering interdisciplinary perspectives in catalytic science and engineering, catering to a global audience of industrial and academic researchers. This journal serves as a bridge between the realms of heterogeneous, homogeneous, and bio-catalysis, providing a crucial and critical evaluation of the current state of catalytic science and engineering. Published topics encompass advances in technology and theory, engineering and chemical aspects of catalytic reactions, reactor design, computer models, analytical tools, and statistical evaluations.
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