Cargando…

Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil

Conversion of red mud (RM) that contains a high level of silica, alumina and iron minerals into heterogenous catalysts, offers a route for the utilization of abundant toxic by-products of bauxite refining. In this study, the conversion of red mud into mesoporous Fe-aluminosilicate produced selective...

Descripción completa

Detalles Bibliográficos
Autores principales: Ramdhani, Eka Putra, Santoso, Eko, Holilah, Holilah, Nugraha, Reva Edra, Bahruji, Hasliza, Suprapto, Suprapto, Jalil, Aishah Abdul, Asikin-Mijan, Nurul, Akhlus, Syafsir, Prasetyoko, Didik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10617586/
https://www.ncbi.nlm.nih.gov/pubmed/37915446
http://dx.doi.org/10.1039/d3ra05910c
_version_ 1785129615598026752
author Ramdhani, Eka Putra
Santoso, Eko
Holilah, Holilah
Nugraha, Reva Edra
Bahruji, Hasliza
Suprapto, Suprapto
Jalil, Aishah Abdul
Asikin-Mijan, Nurul
Akhlus, Syafsir
Prasetyoko, Didik
author_facet Ramdhani, Eka Putra
Santoso, Eko
Holilah, Holilah
Nugraha, Reva Edra
Bahruji, Hasliza
Suprapto, Suprapto
Jalil, Aishah Abdul
Asikin-Mijan, Nurul
Akhlus, Syafsir
Prasetyoko, Didik
author_sort Ramdhani, Eka Putra
collection PubMed
description Conversion of red mud (RM) that contains a high level of silica, alumina and iron minerals into heterogenous catalysts, offers a route for the utilization of abundant toxic by-products of bauxite refining. In this study, the conversion of red mud into mesoporous Fe-aluminosilicate produced selective catalysts for the deoxygenation of waste cooking oil to green diesel hydrocarbons. Direct conversion of red mud in the presence cetyltrimethylammonium bromide into Fe-aluminosilicate (RM-CTA) produced a highly mesoporous structure with oligomeric Fe(2)O(3) clusters within the pores. When red mud was treated with citric acid (RM-CA-CTA), a wide distribution of Fe(2)O(3) particles was obtained on the aluminosilicate external surface. TEM analysis showed a well-defined hexagonal mesoporosity of Fe-aluminosilicate obtained from untreated red mud, while the treated red mud produced lower regularity mesopores. RM-CTA exhibits 60% WCO conversion and 83.72% selectivity towards liquid products with 80.44% diesel hydrocarbon (C(11)–C(18)) yield. The high selectivity was due to the high acidity of Fe-aluminosilicate to dissociate the C–O bond and the regularity of mesostructure for efficient hydrocarbon diffusion, preventing a cracking reaction.
format Online
Article
Text
id pubmed-10617586
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-106175862023-11-01 Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil Ramdhani, Eka Putra Santoso, Eko Holilah, Holilah Nugraha, Reva Edra Bahruji, Hasliza Suprapto, Suprapto Jalil, Aishah Abdul Asikin-Mijan, Nurul Akhlus, Syafsir Prasetyoko, Didik RSC Adv Chemistry Conversion of red mud (RM) that contains a high level of silica, alumina and iron minerals into heterogenous catalysts, offers a route for the utilization of abundant toxic by-products of bauxite refining. In this study, the conversion of red mud into mesoporous Fe-aluminosilicate produced selective catalysts for the deoxygenation of waste cooking oil to green diesel hydrocarbons. Direct conversion of red mud in the presence cetyltrimethylammonium bromide into Fe-aluminosilicate (RM-CTA) produced a highly mesoporous structure with oligomeric Fe(2)O(3) clusters within the pores. When red mud was treated with citric acid (RM-CA-CTA), a wide distribution of Fe(2)O(3) particles was obtained on the aluminosilicate external surface. TEM analysis showed a well-defined hexagonal mesoporosity of Fe-aluminosilicate obtained from untreated red mud, while the treated red mud produced lower regularity mesopores. RM-CTA exhibits 60% WCO conversion and 83.72% selectivity towards liquid products with 80.44% diesel hydrocarbon (C(11)–C(18)) yield. The high selectivity was due to the high acidity of Fe-aluminosilicate to dissociate the C–O bond and the regularity of mesostructure for efficient hydrocarbon diffusion, preventing a cracking reaction. The Royal Society of Chemistry 2023-10-31 /pmc/articles/PMC10617586/ /pubmed/37915446 http://dx.doi.org/10.1039/d3ra05910c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ramdhani, Eka Putra
Santoso, Eko
Holilah, Holilah
Nugraha, Reva Edra
Bahruji, Hasliza
Suprapto, Suprapto
Jalil, Aishah Abdul
Asikin-Mijan, Nurul
Akhlus, Syafsir
Prasetyoko, Didik
Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
title Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
title_full Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
title_fullStr Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
title_full_unstemmed Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
title_short Direct synthesis of Fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
title_sort direct synthesis of fe-aluminosilicates from red mud for catalytic deoxygenation of waste cooking oil
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10617586/
https://www.ncbi.nlm.nih.gov/pubmed/37915446
http://dx.doi.org/10.1039/d3ra05910c
work_keys_str_mv AT ramdhaniekaputra directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT santosoeko directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT holilahholilah directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT nugraharevaedra directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT bahrujihasliza directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT supraptosuprapto directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT jalilaishahabdul directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT asikinmijannurul directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT akhlussyafsir directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil
AT prasetyokodidik directsynthesisoffealuminosilicatesfromredmudforcatalyticdeoxygenationofwastecookingoil