REACTIVATION OF A HYDROGENATION CATALYST
The present invention relates to a method for reactivating an anthraquinone hydrogenation catalyst for the preparation of hydrogen peroxide, comprising at least one step of bringing said catalyst into contact with an aqueous solution comprising ammonia. The invention also relates to the use of an aqueous ammonia solution for reactivating an anthraquinone hydrogenation catalyst for the preparation of hydrogen peroxide.
1 - 10 . (canceled)
11 . A process for the reactivation of an anthraquinone hydrogenation catalyst in the preparation of hydrogen peroxide, comprising at least the following successive stages:
a) optional washing of the catalyst to be reactivated,
b) optional drying or draining of the catalyst to be reactivated,
c) reactivation of the catalyst to be reactivated by bringing said catalyst into contact with an aqueous solution comprising from 0.01% to 1%, of ammonia, by weight, limits included,
d) optional washing of the reactivated catalyst, and
e) drying or draining of said reactivated catalyst resulting from stage c) or from stage d).
12 . The process as claimed in claim 11 , in which the reaction temperature of stage c) is between 10° C. and 80° C.
13 . The process as claimed in claim 11 , in which the reactivation stage c) is carried out at atmospheric pressure or under an excess pressure up to 200 kPa to 300 kPa.
14 . The process as claimed in claim 11 , in which the amount of ammonia solution employed in the reactivation stage c), with respect to the catalyst, is in a ratio of between 1 part and 20 parts, by weight of ammonia solution per one catalyst part, limits included.
15 . The process as claimed in claim 11 , in which the optional washing stage of stage a) comprises bringing at least a part or the whole of the catalyst to be reactivated into contact with a solvent.
16 . The process as claimed in claim 11 , in which the optional drying or draining stage b) comprises passing an inert gas over the catalyst to be dried or to be drained.
17 . The process as claimed in claim 11 , coupled with one or more other catalyst regeneration processes, selected from the group consisting of steam regeneration, oxidative regeneration, noble metal reimpregnation, and regeneration by an acid.
18 . The process as claimed in claim 11 , in which the catalyst comprises at least one noble metal, chosen from columns 9, 10, and 11 of the Periodic Table of the Elements, and also mixtures of said metals.
19 . The process as claimed in claim 11 , in which the catalyst comprises a support, said support comprising one or more metal or nonmetal oxides, alone or as mixtures.