INV SUPERIOR JUBILADO
APESTEGUIA Carlos Rodolfo
artículos
Título:
Study of the Catalyst Deactivation in the Base-Catalyzed Oligomerization of Acetone
Autor/es:
DI COSIMO, JI; APESTEGUIA C.R.
Revista:
JOURNAL OF MOLECULAR CATALYSIS A-CHEMICAL
Editorial:
Elsevier
Referencias:
Año: 1998 vol. 130 p. 177 - 185
ISSN:
1381-1169
Resumen:
The deactivation of unpromoted MgO and alkali-promoted MgO catalysts in the vapor-phase self-condensation of acetone was studied. The reaction was catalyzed by basic sites and major products were mesytil oxide, isomesityl oxide and isophorone. Catalysts deactivated because of coke formation. Both, the initial catalyst deactivation (d0, h-1) and the product distribution depended on contact time (W/F0): d0, and the selectivity to mesityl oxide increased when W/F0  was increased.  It is proposed that non-cyclic trimers, such as phorone, which are produced by aldol condensation of mesityl oxide with acetone, are the key intermediate species for coke formation. These non-cyclic trimers are highly unsaturated compounds that remain strongly bound to the catalyst surface yielding higher non-volatile oligomeric compounds which block basic active sites. Promotion of MgO with alkaline metal ions increased the d0 value measured on unpromoted MgO following the sequence Li < Na < K < Cs: the stronger the promoter oxide basicity, the higher the catalyst deactivation. Enhancement of the MgO basicity by alkali addition strengthens the interaction between the solid surface and non-cyclic trimers, and improves the catalyst ability for abstracting the a-proton from the acetone molecule. As a consequence, the aldol condensation synthesis of tetramers and heavier polymers is favored which results in an increasing coke formation.