Glycerol valorization for the generation of acrylic acid via oxidehydration over nanoporous catalyst: Current status and the way forward

Transforming glycerol into valuable compounds is one of the strategies to achieve a sustainable biodiesel manufacturing chain. As the outcome, the present issue is to transform glycerol into a value-added compound intended to enhance the functionality of the biodiesel's by-product while also pr...

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Vydáno v:Bioresource technology reports Ročník 23; s. 101533
Hlavní autoři: Rasrendra, Carolus B., Culsum, Neng T.U., Rafiani, Alissya, Kadja, Grandprix T.M.
Médium: Journal Article
Jazyk:angličtina
Vydáno: Elsevier Ltd 01.09.2023
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ISSN:2589-014X, 2589-014X
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Shrnutí:Transforming glycerol into valuable compounds is one of the strategies to achieve a sustainable biodiesel manufacturing chain. As the outcome, the present issue is to transform glycerol into a value-added compound intended to enhance the functionality of the biodiesel's by-product while also providing a range of critical chemicals to the industry. There are numerous ways of using glycerol conversion to create value-added compounds, with glycerol oxidehydration being one of the most promising for commercial applications. The glycerol oxidehydration using zeolite ZSM-5 as catalyst support exhibits a yield of acrylic acid of around 32 %. In comparison, MCM-22 demonstrates a 16–56 % yield, and mordenite yields approximately 3 %. The selection of the appropriate catalyst dramatically determines the performance of glycerol valorization into acrylic acid. In this review, we comprehensively discussed nanoporous-based catalysts, including zeolites and silica-based materials, for one-step glycerol oxidation. In addition, we present aspects of thermodynamics, kinetics, and the economic evaluation of oxidation processes. [Display omitted] •Nanoporous catalysts for glycerol oxidehydration are comprehensively addressed.•The performance of catalyst is affected by acid-base properties•Aspects of thermodynamics and kinetics are examined.•Techno-economic considerations are provided.
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ISSN:2589-014X
2589-014X
DOI:10.1016/j.biteb.2023.101533