Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design

This work aimed to synthesize a reusable catalyst of KF/Mg-Al layered double hydroxide (KF/LDH) for a micro-wave-assisted biodiesel conversion from rice bran oil (RBO). The LDH was synthesized by co-precipitation method of Mg and Al precursors with additional surfactant of cetyl trimethyl ammonium f...

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Published in:Bulletin of Chemical Reaction Engineering and Catalysis
Main Author: Suharto T.E.; Kooli F.; Ghazali S.A.I.S.M.; Fatimah I.
Format: Article
Language:English
Published: Diponegoro University 2022
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85139822477&doi=10.9767%2fbcrec.17.3.14485.497-507&partnerID=40&md5=5705d04f2c86834b5daa566370fd969c
id 2-s2.0-85139822477
spelling 2-s2.0-85139822477
Suharto T.E.; Kooli F.; Ghazali S.A.I.S.M.; Fatimah I.
Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
2022
Bulletin of Chemical Reaction Engineering and Catalysis
17
3
10.9767/bcrec.17.3.14485.497-507
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85139822477&doi=10.9767%2fbcrec.17.3.14485.497-507&partnerID=40&md5=5705d04f2c86834b5daa566370fd969c
This work aimed to synthesize a reusable catalyst of KF/Mg-Al layered double hydroxide (KF/LDH) for a micro-wave-assisted biodiesel conversion from rice bran oil (RBO). The LDH was synthesized by co-precipitation method of Mg and Al precursors with additional surfactant of cetyl trimethyl ammonium followed by hydrothermal meth-od, for furthermore, an impregnation procedure was applied to combine KF with LDH by using impregnation method. Instrumental analysis of materials was performed by XRD, gas sorption analysis, SEM-EDX, TEM and XPS method. Effect of KF loading onto LDH on the specific surface area and solid basicity was also studied. From the characterization by XRD, it can be concluded that the impregnation increased specific surface area of LDH without any structural destruction, which was also confirmed by the lattice fringe comparison by HRTEM analysis and surface analysis by XPS. The specific surface area enhancement is in line with the increasing solid basicity which directly enhanced the catalytic conversion of RBO into biodiesel. Statistical optimization of the use of KF/LDH was conducted by response surface methodology of Box-Behnken Design for the range of 2-4 g/100 mL of catalyst dose, 3-8 of the methanol to oil ratio, and 10-30 min of reaction time. It was revealed that all factors are significantly affect the yield. The KF/LDH catalyst is also reusable as it does not loss the activity until 5th cycles. © 2022 by Authors.
Diponegoro University
19782993
English
Article
All Open Access; Gold Open Access; Green Open Access
author Suharto T.E.; Kooli F.; Ghazali S.A.I.S.M.; Fatimah I.
spellingShingle Suharto T.E.; Kooli F.; Ghazali S.A.I.S.M.; Fatimah I.
Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
author_facet Suharto T.E.; Kooli F.; Ghazali S.A.I.S.M.; Fatimah I.
author_sort Suharto T.E.; Kooli F.; Ghazali S.A.I.S.M.; Fatimah I.
title Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
title_short Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
title_full Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
title_fullStr Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
title_full_unstemmed Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
title_sort Reusable Catalyst of KF/Mg-Al Layered Double for Biodiesel Conversion and Optimization using Bohn-Behnken Design
publishDate 2022
container_title Bulletin of Chemical Reaction Engineering and Catalysis
container_volume 17
container_issue 3
doi_str_mv 10.9767/bcrec.17.3.14485.497-507
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85139822477&doi=10.9767%2fbcrec.17.3.14485.497-507&partnerID=40&md5=5705d04f2c86834b5daa566370fd969c
description This work aimed to synthesize a reusable catalyst of KF/Mg-Al layered double hydroxide (KF/LDH) for a micro-wave-assisted biodiesel conversion from rice bran oil (RBO). The LDH was synthesized by co-precipitation method of Mg and Al precursors with additional surfactant of cetyl trimethyl ammonium followed by hydrothermal meth-od, for furthermore, an impregnation procedure was applied to combine KF with LDH by using impregnation method. Instrumental analysis of materials was performed by XRD, gas sorption analysis, SEM-EDX, TEM and XPS method. Effect of KF loading onto LDH on the specific surface area and solid basicity was also studied. From the characterization by XRD, it can be concluded that the impregnation increased specific surface area of LDH without any structural destruction, which was also confirmed by the lattice fringe comparison by HRTEM analysis and surface analysis by XPS. The specific surface area enhancement is in line with the increasing solid basicity which directly enhanced the catalytic conversion of RBO into biodiesel. Statistical optimization of the use of KF/LDH was conducted by response surface methodology of Box-Behnken Design for the range of 2-4 g/100 mL of catalyst dose, 3-8 of the methanol to oil ratio, and 10-30 min of reaction time. It was revealed that all factors are significantly affect the yield. The KF/LDH catalyst is also reusable as it does not loss the activity until 5th cycles. © 2022 by Authors.
publisher Diponegoro University
issn 19782993
language English
format Article
accesstype All Open Access; Gold Open Access; Green Open Access
record_format scopus
collection Scopus
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