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PMID: 35745066 Published · epublish English Journal Article

Molybdenum Disulphide Precipitation in Jet Reactors: Introduction of Kinetics Model for Computational Fluid Dynamics Calculations.

Molecules (Basel, Switzerland) ·Vol. 27 ·No. 12 ·2022-06-20

Wojtalik M, Wojtas K, Gołębiowska W, Jarząbek M, Orciuch W, Makowski Ł

Abstract

In our previous work, we used the population balance method to develop a molybdenum disulphide kinetics model consisting of a set of differential equations and constants formulated to express the kinetics of complex chemical reactions leading to molybdenum disulphide precipitation. The purpose of the study is to improved the model to describe the occurring phenomena more thoroughly and have introduced computational fluid dynamics (CFD) modelling to conduct calculations for various reactor geometries. CFD simulations supplemented with our nucleation and growth kinetics model can predict the impact of mixing conditions on particle size with good accuracy. This introduces another engineering tool for designing efficient chemical reactors.

Keywords
computational fluid dynamics jet reactor kinetics molybdenum disulphide nanoparticle precipitation
作者与单位
共 6 位作者,点击展开单位 / ORCID
Wojtalik Michał
Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland.
Wojtas Krzysztof ORCID
Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland.
Gołębiowska Weronika
Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland.
Jarząbek Maria
Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland.
Orciuch Wojciech ORCID
Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland.
Makowski Łukasz ORCID
Warsaw University of Technology, Faculty of Chemical and Process Engineering, Warynskiego 1, 00-645 Warsaw, Poland.
Article Info
Journal
Molecules (Basel, Switzerland)
Abbr.
Molecules
ISSN
1420-3049
Published
2022-06-20
电子出版
2022-00-20
Language
English
Country/Region
Switzerland
NLM ID
100964009
基金资助
National Science Center · DEC-2017/27/B/ST8/01382
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