Ionic Liquid-Assisted Synthesis of Nanosized ZSM-22 Zeolites with Enhanced Hydroisomerization Performance
Синтез наномасштабных цеолитов ZSM-22 с использованием ионных жидкостей и повышенной гидроизомеризационной активностью
2025-02-07
SCID: 54.1/6ep7gak2
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Si–OH defect siteshydroisomerization performanceionic liquid-assisted synthesisnanosized ZSM-22 zeoliteshape selectivity
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Abstract (AI)
Advancing the conventional hydrothermal and ionic liquid-assisted synthesis methodologies to produce ZSM-22 zeolites with similar characteristics yet notably distinct defect sites holds substantial significance in elucidating their influence on shape selectivity and hydroisomerization performance. This study investigated the impact of the initial gel ratio and synthesis parameters on the ionic liquid-assisted crystallization process and the crystal size of the ZSM-22 zeolite. The NH 4 F feed exhibits a minimal effect on the crystallization process, in contrast to the beneficial effect of improved ionic liquid and decreased water feed on substantially diminishing the crystal size of the resulting zeolites, which exhibit a morphology similar to that of the ZSM-22 zeolite obtained through the conventional synthesis route. Furthermore, the investigation into the crystallization process revealed that both ionic liquids and high temperatures play indispensable roles in accelerating the nucleation and crystal growth of ZSM-22 zeolite. When applied in the n-dodecane hydroisomerization, the nanosized ZSM-22 zeolites prepared by ionic liquid-assisted route exhibit remarkable isomer yield (above 72%), surpassing the conventional and large-size ZSM-22 zeolites. After the product distribution analysis, it is evident that the fewer Si–OH defect sites and the correspondingly strict confinement environment effectively limit the formation of the multibranched intermediates prone to crack, which ultimately improves the hydroisomerization performance, intrinsically reflecting the shape selectivity of the 10-membered ring zeolite by eliminating the interference of the framework defect sites. This work emphasizes the exceptional hydroisomerization performance of the ZSM-22 zeolite, highlighting the significance of its efficient synthesis and wide application.
Key Findings
1
Fewer Si–OH defect sites and tighter confinement in nanosized ZSM-22 limit formation of multibranched cracking-prone intermediates, enhancing hydroisomerization and revealing intrinsic 10-membered-ring shape selectivity.
2
Ionic liquid-assisted synthesis with improved ionic liquid and decreased water feed substantially reduces ZSM-22 crystal size while preserving morphology.
3
NH4F feed has minimal effect on ZSM-22 crystallization, unlike ionic liquid presence and high temperature which accelerate nucleation and crystal growth.
4
Nanosized ZSM-22 zeolites made via ionic liquid-assisted route achieve n-dodecane hydroisomerization isomer yields above 72%, outperforming conventional large-size ZSM-22.
Research Object
Nanosized ZSM-22 zeolites synthesized via ionic liquid-assisted crystallization
Research Subject
Effect of synthesis parameters and defect-site density on crystal size, morphology, nucleation/growth dynamics, and resulting hydroisomerization performance (shape selectivity and isomer yield) of the ZSM-22 zeolites in n-dodecane hydroisomerization
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2025-02-07
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