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Construction of hierarchical pore structure in supported titanium silicalites was an effective strategy to enhance catalytic performance and avoid the separation process in industrial applications. Herein, the hierarchical TS-2 zeolites were successfully prepared on the TiO-modified α-AlO pellets by "bottom-up" method, which had good and stable catalytic performance for the allyl chloride epoxidation. TritonX-100 could construct a mesopore structure, restrain nucleation, and affect titanium coordination of the zeolites, which was beneficial for preparing large size, much hexa-coordination titanium content, and hierarchically supported TS-2 zeolites in this work. Besides, the TiO-modified layer greatly increased the density and surface reactivity of hydroxyl groups on the α-AlO pellet, which were well-situated to prepare homogeneous and anatase-free hierarchical TS-2 zeolite layers. The hierarchically supported TS-2 zeolites were applied to the epoxidation of allyl chloride with hydrogen peroxide, and allyl chloride conversion and epichlorohydrin selectivity were up to 99.13% and 96.53%, respectively.
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http://dx.doi.org/10.1021/acs.langmuir.5c00035 | DOI Listing |
Langmuir
March 2025
Graduate School of Science and Technology for Innovation, Graduate School Science and Engineering, Yamaguchi University, Ube 755-8611, Japan.
Construction of hierarchical pore structure in supported titanium silicalites was an effective strategy to enhance catalytic performance and avoid the separation process in industrial applications. Herein, the hierarchical TS-2 zeolites were successfully prepared on the TiO-modified α-AlO pellets by "bottom-up" method, which had good and stable catalytic performance for the allyl chloride epoxidation. TritonX-100 could construct a mesopore structure, restrain nucleation, and affect titanium coordination of the zeolites, which was beneficial for preparing large size, much hexa-coordination titanium content, and hierarchically supported TS-2 zeolites in this work.
View Article and Find Full Text PDFSmall
December 2024
Key Laboratory of Advanced Rubber Material, Ministry of Education, Qingdao University of Science and Technology, Qingdao, 266042, China.
MEL type c is crucial for addressing energy and environmental crises, yet efficient synthesis remains a challenge due to thermodynamic and kinetic limitations. In this work, TS-2 as typical zeolite is successfully synthesized with high efficiency (12 h with 92% yield) by introducing titanate acid (TA) 2D nanosheet into a hydrothermal synthesis system. A newly defined TA/TS-2 heterostructure is precisely identified as being incorporated into the zeolite framework via a heterogeneous nucleation mechanism.
View Article and Find Full Text PDFFront Chem
October 2020
Shanghai Key Laboratory of Green Chemistry and Chemical Processes, School of Chemistry and Molecular Engineering, East China Normal University, Shanghai, China.
The liquid-phase epoxidation of cyclopentene (CPE) was performed in the Ti-zeolite/HO catalytic system for the clean synthesis of cyclopentene oxide. Among all the Ti-zeolites (Ti-Beta, Ti-MOR, Ti-MCM-68, TS-1, TS-2, and Ti-MWW) investigated in the present study, Ti-MWW provided relatively lower CPE conversion of 13% due to the diffusion constrains but a higher CPO selectivity of 99.5%.
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