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Kinetics and mechanisms of transalkylation and disproportionation of meta ‐diethylbenzene by triflic acid catalyst
Author(s) -
AlZahrani S. M.,
AlKinany M. C.,
AlHumaizi K. I.,
AlKhowaiter S. H.
Publication year - 2003
Publication title -
international journal of chemical kinetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.341
H-Index - 68
eISSN - 1097-4601
pISSN - 0538-8066
DOI - 10.1002/kin.10152
Subject(s) - transalkylation , disproportionation , chemistry , triflic acid , isomerization , catalysis , product distribution , ethylbenzene , vetting , photochemistry , organic chemistry , alkylation , political science , law
The kinetics of transalkylation and isomerization of meta ‐diethylbenzene in the presence of benzene using triflic acid as a catalyst has been investigated. High catalytic activity of the triflic acid catalyst was observed in homogeneous liquid‐phase reactions. On the basis of the product distribution obtained, transalkylation, disproportionation, and isomerization reactions have been considered and the main product of the reaction was ethylbenzene. These reactions are conducted in a closed liquid batch reactor with continuous stirring under dry nitrogen and atmospheric pressure over the temperature range of 288–308 K. The main transalkylation, disproportionation, and isomerization reactions occurred simultaneously and were considered as elementary reactions. The apparent activation energy of the transalkylation reaction was found to be 35.5 kJ/mol, while that of disproportionation reaction was 42.3 kJ/mol. The reproducibility of the experimental product distribution occurred with an average relative error of ±2%. © 2003 Wiley Periodicals, Inc. Int J Chem Kinet 35: 555–563, 2003