Recycle Performance of Heterogeneous Catalyst Metal Oxides-Based Layered Double Hydroxide for Oxidative Desulfurization Process of 4-methyldibenzothiophene

Ahmad, Nur and Rohmatullaili, Rohmatullaili and Hanifah, Yulizah and Wibiyan, Sahrul and Amri, Amri and Wijaya, Alfan and Mardiyanto, Mardiyanto and Mohadi, Risfidian and Royani, Idha and Lesbani, Aldes (2023) Recycle Performance of Heterogeneous Catalyst Metal Oxides-Based Layered Double Hydroxide for Oxidative Desulfurization Process of 4-methyldibenzothiophene. Bulletin of Chemical Reaction Engineering & Catalysis, 18 (4). pp. 548-558. ISSN 1978-2993

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Abstract

The desulfurization of oil must be resolved as soon as possible due to a variety of issues, including environmental contamination and protection regulations. It was believed that oxidative desulfurization (ODS) was the most promising method. In this research, metal oxide-based layered double hydroxides (TiO2@Ni-Al and ZnO@Ni-Al) were effectively synthesized for the ODS of 4-methyldibenzothiophene (4-MDBT). TiO2@Ni-Al and ZnO@Ni-Al exhibited superior catalytic performance and high recycling capacity, achieving a 99% removal rate after five reactions in 30 min. The heterogeneous catalyst TiO2@Ni-Al/ZnO@Ni-Al is easy to separate and recover from a reaction system. Increased temperature facilitates the transformation of 4-MDBT into 4-MDBTO2. The influence of H2O2's rapid decomposition rate, which can inhibit oxidation reactions, reduces the catalytic activity as the temperature increases. 4-MDBT Sulphur removal on TiO2@Ni-Al and ZnO@Ni-Al is 99.48 and 99.51%, respectively. TiO2@Ni-Al and ZnO@Ni-Al have great potential for use in the industry based on these results.

Item Type: Article
Uncontrolled Keywords: Recycle catalyst; oxidative desulfurization; heterogeneous; metal oxide; 4-methyldibenzothiophene.
Subjects: Materials Sciences
Energy
Chemistry
Depositing User: Rizzal Rosiyan
Date Deposited: 08 Sep 2025 05:26
Last Modified: 08 Sep 2025 05:26
URI: https://karya.brin.go.id/id/eprint/54326

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