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Action
IdP51805
Usertrunschk
Project
Accesspublic
Open Access
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Date Created2022-11-04 10:25:35
Date Modified2023-02-03 09:36:24

Data

TitleGreen synthesis of propylene oxide directly from propane
AuthorPierre Kube, Jinhu Dong, Nuria Sánchez Bastardo, Holger Ruland, Robert Schlögl, Johannes T. Margraf, Karsten Reuter, and Annette Trunschke
Comment

NCOMMS-22-02253A

Abstract

The chemical industry faces the challenge of bringing emissions of climate-damaging CO2 to zero. However, the synthesis of important intermediates, such as olefins or epoxides, is still associated with the release of large amounts of greenhouse gases. This is due to both a high energy input for many process steps and insufficient selectivity of the underlying catalyzed reactions. Surprisingly, we find that in the oxidation of propane at elevated temperature over apparently inert materials such as boron nitride and silicon dioxide not only propylene but also significant amounts of propylene oxide are formed, with unexpectedly small amounts of CO2. Process simulations reveal that the combined synthesis of these two important chemical building blocks is technologically feasible. Our discovery leads the ways towards an environmentally friendly production of propylene oxide and propylene in one step. In this work, we show that a complex catalyst development is not necessary.

Keywordspropane oxidation, propylene oxide, gas phase reaction
Document TypeFULL ARTICLE
Citation
DOI10.26434/chemrxiv-2022-2clnw-v2

Files

(9)
IdFileTimeCommentSizeAction
793665 PO_2022_11_03_SI.pdf 2022-11-04 12:25:07 Supplementary Information PDF 988.4 Kb
793666 PO_2022_11_03_SI.docx 2022-11-04 12:25:07 Supplementary Information 2.7 Mb
793667 Source data file for NCOMMS-22-02253A.xlsx 2022-11-04 12:25:07 Source data 4.6 Mb
793668 microkinetics.zip 2022-11-04 12:25:07 Code 1003.8 Kb
794039 fig3.pdf 2022-11-10 13:37:18 53.7 Kb
794040 Figure 4.pdf 2022-11-10 13:37:24 562.1 Kb
794041 Figure 2.pdf 2022-11-10 13:37:28 974.2 Kb
794042 Figure 1.pdf 2022-11-10 13:37:33 21.0 Kb
794072 PO_2022_11_03.docx 2022-11-10 16:04:59 Manuscript 4.3 Mb