Article ID Journal Published Year Pages File Type
68949 Journal of Molecular Catalysis A: Chemical 2006 6 Pages PDF
Abstract

The liquid-phase alkylation of benzene with long-chain olefins such as 1-decene, 1-octene and 1-dodecene was carried out over AlMCM-41/Beta zeolite composite material as catalyst. The catalyst was prepared by seeding method and characterized by XRD, N2 sorption, FTIR pyridine adsorption, NH3-TPD and SEM. Powder XRD of AlMCM-41/Beta zeolite composite material showed the co-existence of well-structured microporous and mesophase of AlMCM-41. The typical textural characteristics of micro- and meso-structured phases were observed in the composite material. The effect of temperature, reactant molar ratios and catalyst weight on 1-dodecene conversion and products selectivity was studied. The composite catalyst was found to be the highly selective towards the formation 2-dodecylbenzene. Under the reaction conditions of 120 °C, benzene/1-dodecene molar ratio 10 and time 2 h, the catalyst gave 48% dodecene conversion with 76%, 2-dodecylbenzene selectivity. Significant improvement in catalytic activity has been achieved by composite material as compared to Al-MCM-41. Although zeolite beta and composite material gave similar conversion of dodecene, the composite material showed higher selectivity towards 2-dodecylbenzene, which could be due to higher diffusibility of 2-dodecylbenzene isomer in the composite material.

Graphical abstractAlMCM-41/Beta zeolite composite catalyst was prepared by seeding method using Beta zeolite as a seed and tested in the liquid-phase synthesis of long-chain linear alkyl benzenes. Under the reaction conditions of 120 °C, benzene/1-dodecene molar ratio 10 and time 2 h, conversion of dodecene was 48% with 2-dodecylbenzene selectivity 76%. Figure optionsDownload full-size imageDownload as PowerPoint slide

Related Topics
Physical Sciences and Engineering Chemical Engineering Catalysis
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