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PMID: 33456973 Published · epublish English Journal Article

Continuous flow synthesis of a pharmaceutical intermediate: a computational fluid dynamics approach.

Reaction chemistry & engineering ·Vol. 4 ·No. 3 ·2019-01-30 ·页码 634-642

Armstrong CT, Pritchard CQ, Cook DW, Ibrahim M, Desai BK, Whitham PJ, Marquardt BJ, Chen Y, Zoueu JT, Bortner MJ, Roper TD

Abstract

Continuous flow chemistry has the potential to greatly improve efficiency in the synthesis of active pharmaceutical ingredients (APIs); however, the optimization of these processes can be complicated by a large number of variables affecting reaction success. In this work, a screening design of experiments was used to compare computational fluid dynamics (CFD) simulations with experimental results. CFD simulations and experimental results both identified the reactor residence time and reactor temperature as the most significant factors affecting product yield for this reaction within the studied design space. A point-to-point comparison of the results showed absolute differences in product yield as low as 2.4% yield at low residence times and up to 19.1% yield at high residence times with strong correlation between predicted and experimental percent yields. CFD was found to underestimate the product yields at low residence times and overestimate at higher residence times. The correlation in predicted product yield and the agreement in identifying significant factors in reaction performance reveals the utility of CFD as a valuable tool in the design of continuous flow tube reactors with significantly reduced experimentation.

作者与单位
共 11 位作者,点击展开单位 / ORCID
Armstrong Cameron T ORCID
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Pritchard Cailean Q ORCID
Department of Chemical Engineering and Macromolecules Innovation Institute, Virginia Polytechnic Institute and State University, Blacksburg, VA, 24061 USA. E-mail: [email protected].
Cook Daniel W ORCID
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Ibrahim Mariam ORCID
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Desai Bimbisar K ORCID
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Whitham Patrick J
MarqMetrix, Inc., Seattle, WA, 98103 USA.
Marquardt Brian J
MarqMetrix, Inc., Seattle, WA, 98103 USA.
Chen Yizheng
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Zoueu Jeremie T
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Bortner Michael J ORCID
Department of Chemical Engineering and Macromolecules Innovation Institute, Virginia Polytechnic Institute and State University, Blacksburg, VA, 24061 USA. E-mail: [email protected].
Roper Thomas D ORCID
Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA, 23219 USA.
Article Info
Journal
Reaction chemistry & engineering
Abbr.
React Chem Eng
ISSN
2058-9883
Corresponding email
Published
2019-01-30
电子出版
2019-00-30
页码
634-642
Language
English
Country/Region
England
NLM ID
101673784
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