Design of Nickel Supported Hierarchical ZSM-5/USY Zeolite Bifunctional Catalysts for One-Pot Menthol Synthesis via Liquid-Phase Citral Hydrogenationopen access
- Authors
- Shah, Abdul Karim; Shah, Ghulam Taswar; Shah, Aqeel Ahmed; Park, Yeung Ho; Shah, Ayaz Ali; Choi, Mooseok; Ahmed, Shoaib; Shah Bukhari, Syed Nizamuddin; Chandio, Ali Dad; Mahar, Muhammad Atta; Shar, Muhammad Ali; Alhazaa, Abdulaziz
- Issue Date
- Jan-2023
- Publisher
- Multidisciplinary Digital Publishing Institute (MDPI)
- Keywords
- citral to menthol; Ni-H-ZSM-5; mesopores; acidity; catalytic activity
- Citation
- Molecules, v.28, no.2, pp 1 - 25
- Pages
- 25
- Indexed
- SCIE
SCOPUS
- Journal Title
- Molecules
- Volume
- 28
- Number
- 2
- Start Page
- 1
- End Page
- 25
- URI
- https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/111594
- DOI
- 10.3390/molecules28020743
- ISSN
- 1420-3049
- Abstract
- Nickel-supported hierarchical zeolite catalysts were prepared through a desilication reassembly process under optimized conditions and applied in one-pot menthol synthesis. In this work, the hierarchical zeolite-supported metal bifunctional catalysts were prepared with the help of desilication re-assembly and wetness impregnation techniques and applied in menthol synthesis via citral hydrogenation. The prepared catalysts were characterized using PXRD, BET, FE-TEM, NH3-TPD, H-2-TPR, pyridine adsorption, and ICP-OES techniques. As a result, the physicochemical and acidic properties, such as mesopore surface area, metal dispersion, acidity, catalytic activity, and strong Lewis acid sites of pure microporous ZSM-5/USY zeolites, were significantly improved. Consequently, with the occurrence of superior physicochemical and acidic properties, the Ni/HZ-0.5 M catalyst exhibited outstanding catalytic activity (100% conversion, TOF 7.12 h(-1)) and menthol selectivity (83%, 4 h) with uniform stability at 100 degrees C, 1.0 MPa hydrogen. Similarly, the cracking rate decreased with the decrease in Bronsted acid sites.
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