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Catalysis In Flow: O-2 Effect On The Catalytic Activity Of Ru(Oh)(X)/Gamma-Al2o3 During The Aerobic Oxidation Of An Alcohol

REACTION CHEMISTRY & ENGINEERING(2017)

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Abstract
Changes in the turnover frequency (TOF) of Ru(OH)(x)/gamma-Al2O3 during aerobic oxidation of benzyl alcohol in a plug flow differential reactor were monitored online using an inline FTIR instrument over extended periods of time (up to 72 h). A new equation for catalyst deactivation is derived, to account for the different lengths of time the catalyst is exposed to the reactants (benzyl alcohol and O-2). Catalyst activity and stability are dependent on the amount of O-2 in the system; catalyst deactivation can be attributed to two simultaneous processes: a fast and reversible inhibition by the benzoic acid side product and a slower and irreversible loss of catalytic sites due to reduction of Ru. At steady state, the reaction rate is zero-order in benzyl alcohol and partial positive order in O-2. Finally, the suitability of a packed-bed (integral) reactor for the reaction is discussed.
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