From Bodenstein to Péclet – Dimensionless Numbers for Axial Dispersion in Chemical Reactors

IF 1.6 4区 工程技术 Q3 ENGINEERING, CHEMICAL Chemie Ingenieur Technik Pub Date : 2024-10-16 DOI:10.1002/cite.202400102
Prof. Dr.-Ing. Jens Bremer, Prof. Dr.-Ing. Thomas Turek
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Abstract

In the present contribution, the historical development of dimensionless numbers describing axial mixing effects in chemical reactors is analyzed. While the Bodenstein number has become established in Europe, the American literature often uses the Péclet number for this purpose. A journey through the historical reaction engineering literature shows that the development was complex and that Langmuir's decisive role in particular has hardly been acknowledged to date. Unfortunately, despite decades of using dimensionless numbers for mass and heat transport in chemical reactors, no consensus has yet been reached on a uniformly accepted nomenclature. To remedy this shortcoming, a proposal for consistently defined numbers at the molecular and the reactor level is made.

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从博登斯坦到贝克莱--化学反应器中轴向分散的无量纲数
本文分析了描述化学反应器中轴向混合效应的无量纲数的历史发展。虽然博登斯坦数在欧洲已经确立,但美国文献通常使用佩克莱特数。回顾历史上的反应工程文献,可以发现其发展过程十分复杂,尤其是朗缪尔的决定性作用至今几乎未得到承认。遗憾的是,尽管化学反应器中的质量和热量传输已经使用了几十年的无量纲数,但至今仍未就统一公认的命名法达成共识。为了弥补这一缺陷,我们提出了在分子和反应器层面统一定义数字的建议。
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来源期刊
Chemie Ingenieur Technik
Chemie Ingenieur Technik 工程技术-工程:化工
CiteScore
3.40
自引率
15.80%
发文量
601
审稿时长
3-6 weeks
期刊介绍: Die Chemie Ingenieur Technik ist die wohl angesehenste deutschsprachige Zeitschrift für Verfahrensingenieure, technische Chemiker, Apparatebauer und Biotechnologen. Als Fachorgan von DECHEMA, GDCh und VDI-GVC gilt sie als das unverzichtbare Forum für den Erfahrungsaustausch zwischen Forschern und Anwendern aus Industrie, Forschung und Entwicklung. Wissenschaftlicher Fortschritt und Praxisnähe: Eine Kombination, die es nur in der CIT gibt!
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