The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts

As one of the most important gases that abundantly contribute to air pollution, methane becomes the most leading gas that challenges researchers to utilize it in more functional products such as methanol. In this study, the conversion process involved iron oxide species supported by sodium Y (NaY-Z)...

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Autores principales: Y.K. Krisnandi, D.A. Nurani, D.V. Alfian, U. Sofyani, M. Faisal, I.R. Saragi, A.Z. Pamungkas, A.P. Pratama
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Publicado: Elsevier 2021
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spelling oai:doaj.org-article:e1b6ef10180a4929ae2c1f3822b9ab0e2021-12-02T05:02:32ZThe new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts2405-844010.1016/j.heliyon.2021.e08305https://doaj.org/article/e1b6ef10180a4929ae2c1f3822b9ab0e2021-11-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2405844021024087https://doaj.org/toc/2405-8440As one of the most important gases that abundantly contribute to air pollution, methane becomes the most leading gas that challenges researchers to utilize it in more functional products such as methanol. In this study, the conversion process involved iron oxide species supported by sodium Y (NaY-Z) zeolite as the catalysts. This work highlighted the preparation of Fe2O3 and Fe3O4 modified NaY zeolite to investigate their catalytic performance on partial oxidation of methane to methanol, with trace amount of oxygen (0.5% in N2), in a batch reactor. The as-prepared catalysts were characterized using FTIR, XRD, SEM, and BET. The structure of NaY zeolite and its modified catalysts were confirmed. The pristine NaY-Z shows the highest activity followed by Fe2O3/NaY-3.52 (3.52 wt% of Fe loading) with high selectivity to formaldehyde (80%). Very high selectivity (∼100%) towards methanol was observed in the reactions on Fe2O3/NaY-1.70 and Fe3O4/NaY-2.55 catalysts, although the total amount of product was decreased. It was noticeable that Fe3O4/NaY-3.22 is an active catalyst and has good selectivity to methanol (70%).Y.K. KrisnandiD.A. NuraniD.V. AlfianU. SofyaniM. FaisalI.R. SaragiA.Z. PamungkasA.P. PratamaElsevierarticleNaY zeolitePartial oxidation of methaneMethanolIron oxideHeterogeneous catalystScience (General)Q1-390Social sciences (General)H1-99ENHeliyon, Vol 7, Iss 11, Pp e08305- (2021)
institution DOAJ
collection DOAJ
language EN
topic NaY zeolite
Partial oxidation of methane
Methanol
Iron oxide
Heterogeneous catalyst
Science (General)
Q1-390
Social sciences (General)
H1-99
spellingShingle NaY zeolite
Partial oxidation of methane
Methanol
Iron oxide
Heterogeneous catalyst
Science (General)
Q1-390
Social sciences (General)
H1-99
Y.K. Krisnandi
D.A. Nurani
D.V. Alfian
U. Sofyani
M. Faisal
I.R. Saragi
A.Z. Pamungkas
A.P. Pratama
The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts
description As one of the most important gases that abundantly contribute to air pollution, methane becomes the most leading gas that challenges researchers to utilize it in more functional products such as methanol. In this study, the conversion process involved iron oxide species supported by sodium Y (NaY-Z) zeolite as the catalysts. This work highlighted the preparation of Fe2O3 and Fe3O4 modified NaY zeolite to investigate their catalytic performance on partial oxidation of methane to methanol, with trace amount of oxygen (0.5% in N2), in a batch reactor. The as-prepared catalysts were characterized using FTIR, XRD, SEM, and BET. The structure of NaY zeolite and its modified catalysts were confirmed. The pristine NaY-Z shows the highest activity followed by Fe2O3/NaY-3.52 (3.52 wt% of Fe loading) with high selectivity to formaldehyde (80%). Very high selectivity (∼100%) towards methanol was observed in the reactions on Fe2O3/NaY-1.70 and Fe3O4/NaY-2.55 catalysts, although the total amount of product was decreased. It was noticeable that Fe3O4/NaY-3.22 is an active catalyst and has good selectivity to methanol (70%).
format article
author Y.K. Krisnandi
D.A. Nurani
D.V. Alfian
U. Sofyani
M. Faisal
I.R. Saragi
A.Z. Pamungkas
A.P. Pratama
author_facet Y.K. Krisnandi
D.A. Nurani
D.V. Alfian
U. Sofyani
M. Faisal
I.R. Saragi
A.Z. Pamungkas
A.P. Pratama
author_sort Y.K. Krisnandi
title The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts
title_short The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts
title_full The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts
title_fullStr The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts
title_full_unstemmed The new challenge of partial oxidation of methane over Fe2O3/NaY and Fe3O4/NaY heterogeneous catalysts
title_sort new challenge of partial oxidation of methane over fe2o3/nay and fe3o4/nay heterogeneous catalysts
publisher Elsevier
publishDate 2021
url https://doaj.org/article/e1b6ef10180a4929ae2c1f3822b9ab0e
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