D. Rohan et al., ORIGIN OF THE DEACTIVATION OF HBEA ZEOLITES DURING THE ACYLATION OF PHENOL WITH PHENYLACETATE, Journal of molecular catalysis. A, Chemical, 129(1), 1998, pp. 69-78
During the transformation of a phenol-phenylacetate mixture over a HBE
A zeolite (Si/Al = 10), carried out in a batch reactor at 160 degrees
C in sulfolane or in dodecane solvents, a rapid initial decrease in th
e formation of hydroxyacetophenones is observed. The compositions of t
he reaction mixture, of the organic material recovered in methylene ch
loride by a direct soxhlet treatment and of the compounds retained in
the zeolite pores ('coke') were compared after 2 h and 24 h reaction.
'Coke' is mainly constituted of phenol and hydroxyacetophenones and of
a small amount of heavy secondary reaction products: bisphenol A and
acylated derivatives, hydroxy or acetoxy phenylbenzoate, hydroxy or ac
etoxydypnone, 2 methyl coumarine and 4 methyl chromone, and of sulfola
ne but not of dodecane. Only a very small quantity of phenylacetate is
found. The rate of hydroxyacetophenone formation depends on the order
of introduction of the reactants. It is shown that the rapid initial
deactivation is not due to the heavy reaction products but to the limi
tations by phenols (reactant and products) of the access of phenylacet
ate to the inner acid sites. (C) 1998 Elsevier Science B.V.