Epoxidation of propene in a confined Taylor flow (CTF) reactor at atmospheric pressure

Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Heterogeneous catalytic epoxidation of propene to propene oxide with hydrogen peroxide as oxidant was investigated in a confined Taylor flow (CTF) reactor, a continuous monolith reactor, containing a long alumina rod coated with titanium silicalite (TS-1) catalyst in the centre of the reactor column. The effect of gas and liquid superficial velocity on the hydrodynamics of CTF reactor was also investigated under Taylor flow regime at atmospheric pressure. The variation of hydrodynamics had a profound impact on the production of propene oxide. When liquid superficial velocity was constant, the concentration of propene oxide produced decreased with increasing gas superficial velocity as Taylor bubble length and bubble rise velocity increase. However, when gas superficial velocity was constant, the concentration of propene oxide produced had no linear dependency on liquid superficial velocity as Taylor bubble length decreases but bubble rise velocity increases. (C) 2017 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.

키워드

Propene oxideHydrogen peroxideTitanium silicaliteEpoxidationConfined Taylor flow (CTF) reactorTITANIUM SILICALITE CATALYSTPEROXIDE HPPO PROCESSHYDROGEN-PEROXIDEPROPYLENE EPOXIDATIONTS-1 ZEOLITEEFFICIENT EPOXIDATIONECCENTRIC ANNULIOXIDE PRODUCTIONMASS-TRANSFERSLUG FLOW
제목
Epoxidation of propene in a confined Taylor flow (CTF) reactor at atmospheric pressure
저자
Shin, Sang BaekLee, Dae-WonChadwick, David
DOI
10.1016/j.cherd.2017.03.028
발행일
2017-05
유형
Article
저널명
Chemical Engineering Research and Design
121
페이지
305 ~ 314