Publication | Closed Access
Mechanochemical Approach for Selective Deactivation of External Surface Acidity of ZSM-5 Zeolite Catalyst
55
Citations
23
References
2015
Year
EngineeringZsm-5 Zeolite CatalystZeolite CatalystChemistryCatalyst ActivationMineral ProcessingChemical EngineeringZeolite ScienceZeoliteMaterials ScienceMolecular SieveZeolite ParticlesCatalysisCatalytic ProcessExternal Surface AcidityMechanochemical ApproachSurface ScienceCatalyst PreparationChemical Kinetics
The acid sites associated with the external surface of zeolite particles are responsible for undesirable consecutive reactions, such as isomerization, alkylation, and oligomerization, resulting in a lower selectivity to a target product; therefore, the selective modification (deactivation) of the external surface of zeolite particles has been an important issue in zeolite science. Here, a new method for surface deactivation of zeolite catalyst was tested via a mechanochemical approach using powder composer. Postsynthetic mechanochemical treatment of ZSM-5 zeolite causes a selective deactivation of catalytically active sites existing only on the external surface, as a potentially useful catalyst for highly selective production of p-xylene.
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