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Reaction of 1-propanol with Ozone in Aqueous Media

The main aim of this work is to substantiate the mechanism of 1-propanol oxidation by ozone in aqueous solution when the substrate is present in large excess. Further goals are assessment of the products, their formation yields as well as the kinetic parameters of the considered reaction. The reacti...

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Autores principales: Reisz, Erika, Tekle-Röttering, Agnes, Naumov, Sergej, Schmidt, Winfried, Schmidt, Torsten C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6747496/
https://www.ncbi.nlm.nih.gov/pubmed/31454911
http://dx.doi.org/10.3390/ijms20174165
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author Reisz, Erika
Tekle-Röttering, Agnes
Naumov, Sergej
Schmidt, Winfried
Schmidt, Torsten C.
author_facet Reisz, Erika
Tekle-Röttering, Agnes
Naumov, Sergej
Schmidt, Winfried
Schmidt, Torsten C.
author_sort Reisz, Erika
collection PubMed
description The main aim of this work is to substantiate the mechanism of 1-propanol oxidation by ozone in aqueous solution when the substrate is present in large excess. Further goals are assessment of the products, their formation yields as well as the kinetic parameters of the considered reaction. The reaction of ozone with 1-propanol in aqueous solution occurs via hydride transfer, H-abstraction and insertion. Of these three mechanisms, the largest share is for hydride transfer. This implies the extraction of an hydride ion from the activated C−H group by O(3) according to reaction: (C(2)H(5))(H)(HO)C−H + O(3) → [(C(2)H(5))(H)(HO)C(+) + HO(3)(−)](cage) → (C(2)H(5))(H)(HO)C(+) + HO(3)(−). The experimentally determined products and their overall formation yields with respect to ozone are: propionaldehyde—(60 ± 3)%, propionic acid—(27.4 ± 1.0)%, acetaldehyde—(4.9 ± 0.3)%, acetic acid—(0.3 ± 0.1)%, formaldehyde—(1.0 ± 0.1)%, formic acid—(4.6 ± 0.3)%, hydrogen peroxide—(11.1 ± 0.3)% and hydroxyl radical—(9.8 ± 0.3)%. The reaction of ozone with 1-propanol in aqueous media follows a second order kinetics with a reaction rate constant of (0.64 ± 0.02) M(−1)·s(−1) at pH = 7 and 23 °C. The dependence of the second order rate constant on temperature is described by the equation: [Formula: see text] , which gives the activation energy, Ea = (68 ± 1) kJ mol(−1) and pre-exponential factor, A = (6.3 ± 2.4) × 10(11) M(−1) s(−1). The nature of products, their yields and the kinetic data can be used in water treatment. The fact that the hydride transfer is the main pathway in the 1-propanol/ozone system can probably be transferred on other systems in which the substrate is characterized by C−H active sites only.
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spelling pubmed-67474962019-09-27 Reaction of 1-propanol with Ozone in Aqueous Media Reisz, Erika Tekle-Röttering, Agnes Naumov, Sergej Schmidt, Winfried Schmidt, Torsten C. Int J Mol Sci Article The main aim of this work is to substantiate the mechanism of 1-propanol oxidation by ozone in aqueous solution when the substrate is present in large excess. Further goals are assessment of the products, their formation yields as well as the kinetic parameters of the considered reaction. The reaction of ozone with 1-propanol in aqueous solution occurs via hydride transfer, H-abstraction and insertion. Of these three mechanisms, the largest share is for hydride transfer. This implies the extraction of an hydride ion from the activated C−H group by O(3) according to reaction: (C(2)H(5))(H)(HO)C−H + O(3) → [(C(2)H(5))(H)(HO)C(+) + HO(3)(−)](cage) → (C(2)H(5))(H)(HO)C(+) + HO(3)(−). The experimentally determined products and their overall formation yields with respect to ozone are: propionaldehyde—(60 ± 3)%, propionic acid—(27.4 ± 1.0)%, acetaldehyde—(4.9 ± 0.3)%, acetic acid—(0.3 ± 0.1)%, formaldehyde—(1.0 ± 0.1)%, formic acid—(4.6 ± 0.3)%, hydrogen peroxide—(11.1 ± 0.3)% and hydroxyl radical—(9.8 ± 0.3)%. The reaction of ozone with 1-propanol in aqueous media follows a second order kinetics with a reaction rate constant of (0.64 ± 0.02) M(−1)·s(−1) at pH = 7 and 23 °C. The dependence of the second order rate constant on temperature is described by the equation: [Formula: see text] , which gives the activation energy, Ea = (68 ± 1) kJ mol(−1) and pre-exponential factor, A = (6.3 ± 2.4) × 10(11) M(−1) s(−1). The nature of products, their yields and the kinetic data can be used in water treatment. The fact that the hydride transfer is the main pathway in the 1-propanol/ozone system can probably be transferred on other systems in which the substrate is characterized by C−H active sites only. MDPI 2019-08-26 /pmc/articles/PMC6747496/ /pubmed/31454911 http://dx.doi.org/10.3390/ijms20174165 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Reisz, Erika
Tekle-Röttering, Agnes
Naumov, Sergej
Schmidt, Winfried
Schmidt, Torsten C.
Reaction of 1-propanol with Ozone in Aqueous Media
title Reaction of 1-propanol with Ozone in Aqueous Media
title_full Reaction of 1-propanol with Ozone in Aqueous Media
title_fullStr Reaction of 1-propanol with Ozone in Aqueous Media
title_full_unstemmed Reaction of 1-propanol with Ozone in Aqueous Media
title_short Reaction of 1-propanol with Ozone in Aqueous Media
title_sort reaction of 1-propanol with ozone in aqueous media
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6747496/
https://www.ncbi.nlm.nih.gov/pubmed/31454911
http://dx.doi.org/10.3390/ijms20174165
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