Tetrahedron letters2022,Vol.906.DOI:10.1016/j.tetlet.2021.153613

Continuous flow photooxidation of alkyl benzenes using fine bubbles for mass transfer enhancement

Manyar H. Mase N. Morrison G. Bannon R. Wharry S. Moody T.S. Hattori M. Smyth M.
Tetrahedron letters2022,Vol.906.DOI:10.1016/j.tetlet.2021.153613

Continuous flow photooxidation of alkyl benzenes using fine bubbles for mass transfer enhancement

Manyar H. 1Mase N. 2Morrison G. 3Bannon R. 3Wharry S. 3Moody T.S. 3Hattori M. 3Smyth M.3
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作者信息

  • 1. School of Chemistry and Chemical Engineering Queen's University Belfast David Keir Building
  • 2. Research Institute of Green Science and Technology Shizuoka University
  • 3. Almac Group Department of Technology
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Abstract

? 2021 Elsevier LtdSelective photooxidation of alkyl benzenes was studied in a custom-built continuous flow photochemical reactor equipped with fine bubble generator and a low power UV light source. Fine bubbles of air were used as an oxidizing agent along with water-soluble sodium anthraquinone sulfonate as catalyst. The fine bubble containing slug-flow system using air was 1.4 times more efficient at lower feed-flow rate of 2 mL/min and 1.8 times more efficient at higher feed-flow rate of 5 mL/min. Ethylbenzene was selectively oxidized in continuous flow to acetophenone at room-temperature, with 90% ethylbenzene conversion and 92% selectivity to acetophenone, with a short residence time of 5 min. The enhanced gas/liquid mass transfer afforded by the fine bubble generator significantly increased reactor productivity, giving rise to high conversion and yield. Due to enhanced mass transfer and greater efficiency, compressed air can be used as oxidant instead of pure O2, thus alleviating potential safety concerns and making the process safer and more amenable for scale up.

Key words

Benzylic oxidation/Continuous flow/Fine bubbles/low power UV/Photooxidation

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出版年

2022
Tetrahedron letters

Tetrahedron letters

CCR
ISSN:0040-4039
被引量5
参考文献量25
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