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The Studies on α-Pinene Oxidation over the TS-1. The Influence of the Temperature,Reaction Time,Titanium and Catalyst Content
Authors:Agnieszka Wró  blewska,Jadwiga Grzeszczak,Piotr Mią  dlicki,Karolina Kieł  basa,Marcin Kujbida,Adrianna Kamiń  ska,Beata Michalkiewicz
Affiliation:Department of Catalytic and Sorbent Materials Engineering, Faculty of Chemical Technology and Engineering, West Pomeranian University of Technology in Szczecin, Piastów Ave, 42, 71-065 Szczecin, Poland; (J.G.); (P.M.); (K.K.); (M.K.); (A.K.); (B.M.)
Abstract:
The work presents the results of studies on α-pinene oxidation over the TS-1 catalysts with different Ti content (in wt%): TS-1_1 (9.92), TS-1_2 (5.42), TS-1_3 (3.39) and TS-1_4 (3.08). No solvent was used in the oxidation studies, and molecular oxygen was used as the oxidizing agent. The effect of titanium content in the TS-1 catalyst, temperature, reaction time and amount of the catalyst in the reaction mixture on the conversion of α-pinene and the selectivities of appropriate products was investigated. It was found that it is most advantageous to carry out the process of α-pinene oxidation in the presence of the TS-1 catalyst with the titanium content of 5.42 wt% (TS-1_2), at the temperature of 85 °C, for 6 h and with the catalyst TS-1 content in the reaction mixture of 1 wt%. Under these conditions the conversion of α-pinene amounted to 34 mol%, and the selectivities of main products of α-pinene oxidation process were: α-pinene oxide (29 mol%), verbenol (15 mol%) and verbenone (12 mol%). In smaller quantities also campholenic aldehyde, trans-pinocarveol, myrtenal, myrtenol, L-carveol, carvone and 1,2-pinanediol were also formed. These products are of great practical importance in food, cosmetics, perfumery and medicine industries. Kinetic studies were also performed for the studied process.
Keywords:TS-1 catalyst, oxidation, α  -pinene, α  -pinene oxide, verbenol, verbenone
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