High-Performance Magnetite Nanoparticles Catalyst For Biodiesel Production: Immobilization Of 12-Tungstophosphoric Acid On Sba-15 Works Effectively

RENEWABLE ENERGY(2021)

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Abstract
Magnetic mesoporous solid acid catalysts, designed as Fe3O4@SBA-15@HPW and Fe3O4@SBA-15-NH2-HPW, were prepared for the production of biodiesel by the transesterification of palm oil with methanol. The magnetic mesoporous carrier was modified by two different methods: post-gifting method and impregnation method. The structure of the catalysts was characterized by SEM, TEM, XRD, FT-IR, VSM, Pyridine-FT-IR, N-2 adsorption-desorption and TGA. The results indicated that they all had ordered mesoporous and excellent paramagnetic. Both Fe3O4@SBA-15@HPW and Fe3O4@SBA-15-NH2-HPW had high content of Bronsted acid sites due to the loading of 12-tungstophosphoric acid, which made the two catalysts very active. Particularly, Fe3O4@SBA-15-NH2-HPWwas very efficient in the transesterification of palm oil with methanol and gave a more than 91% biodiesel yield when the reaction was carried out at 150 degrees C with a 4 wt% catalyst amount at 20:1 methanol/oil molar ratio for 5 h Fe3O4@SBA-15-NH2-HPW prepared by the grafting method exhibited higher reusability, and the yield of biodiesel was more than 80% after 6 times cycles, which made the catalyst have an excellent industrial application prospect. (C) 2021 Elsevier Ltd. All rights reserved.
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Key words
Magnetic, Mesoporous solid acid, Biodiesel, Transesterification
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