Catalytic properties of vanadium bronzes, I. Decomposition of isopropanol |
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Authors: | D. K. Chakrabarty and D. Guha |
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Affiliation: | (1) Chemistry Department, Indian Institute of Technology, 400 076 Bombay, India |
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Abstract: | ![]() Decomposition of isopropanol on V2O5 and the bonzes Li0.02V2O5, Na0.02V2O5, Na0.06V2O5, Li0.33V2O5, and Na0.33V2O5 has been studied in the temperature range 168–300°C. The main reaction was found to be dehydration to propene with negligible dehydrogenation to acetone on the first four catalysts. Dehydration on these catalysts increased with the alkali metal content, but the energy of activation remained unchanged. On the last two catalysts, dehydration and dehydrogenation proceeded at comparable rates. A tentative mechanism for the dehydration of isopropanol is proposed, based on the effect of the product on the initial rate, the electric conductivity of the catalysts and their ESR spectra.
                     V2O5       : Li0,02V2O5, Na0,02V2O5, Na0,06V2O5, Li0,33V2O5 Na0,33V2O5                             186–300°C.                                                                                                      .                                                                ,                               .                                                                             .                                     ,                                              ,                                         .
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