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Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel

The by-product of the previous transesterification, glycerol was utilised as an acid catalyst precursor for biodiesel production. The crude glycerol was treated through the sulfonation method with sulfuric acid and chlorosulfonic acid in a reflux batch reactor giving solid glycerol-SO(3)H and glycer...

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Autores principales: Hazmi, Balkis, Beygisangchin, Mahnoush, Rashid, Umer, Mokhtar, Wan Nur Aini Wan, Tsubota, Toshiki, Alsalme, Ali, Ngamcharussrivichai, Chawalit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9612134/
https://www.ncbi.nlm.nih.gov/pubmed/36296735
http://dx.doi.org/10.3390/molecules27207142
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author Hazmi, Balkis
Beygisangchin, Mahnoush
Rashid, Umer
Mokhtar, Wan Nur Aini Wan
Tsubota, Toshiki
Alsalme, Ali
Ngamcharussrivichai, Chawalit
author_facet Hazmi, Balkis
Beygisangchin, Mahnoush
Rashid, Umer
Mokhtar, Wan Nur Aini Wan
Tsubota, Toshiki
Alsalme, Ali
Ngamcharussrivichai, Chawalit
author_sort Hazmi, Balkis
collection PubMed
description The by-product of the previous transesterification, glycerol was utilised as an acid catalyst precursor for biodiesel production. The crude glycerol was treated through the sulfonation method with sulfuric acid and chlorosulfonic acid in a reflux batch reactor giving solid glycerol-SO(3)H and glycerol-ClSO(3)H, respectively. The synthesised acidic glycerol catalysts were characterised by various analytical techniques such as thermalgravimetric analyser (TGA), infrared spectroscopy, surface properties adsorption-desorption by nitrogen gas, ammonia-temperature programmed desorption (NH(3)-TPD), X-ray diffraction spectroscopy (XRD), elemental composition analysis by energy dispersive spectrometer (EDX) and surface micrographic morphologies by field emission electron microscope (FESEM). Both glycerol-SO(3)H and glycerol-ClSO(3)H samples exhibited mesoporous structures with a low surface area of 8.85 mm(2)/g and 4.71 mm(2)/g, respectively, supported by the microscopic image of blockage pores. However, the acidity strength for both catalysts was recorded at 3.43 mmol/g and 3.96 mmol/g, which is sufficient for catalysing PFAD biodiesel at the highest yield. The catalytic esterification was optimised at 96.7% and 98.2% with 3 wt.% of catalyst loading, 18:1 of methanol-PFAD molar ratio, 120 °C, and 4 h of reaction. Catalyst reusability was sustained up to 3 reaction cycles due to catalyst deactivation, and the insight investigation of spent catalysts was also performed.
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spelling pubmed-96121342022-10-28 Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel Hazmi, Balkis Beygisangchin, Mahnoush Rashid, Umer Mokhtar, Wan Nur Aini Wan Tsubota, Toshiki Alsalme, Ali Ngamcharussrivichai, Chawalit Molecules Article The by-product of the previous transesterification, glycerol was utilised as an acid catalyst precursor for biodiesel production. The crude glycerol was treated through the sulfonation method with sulfuric acid and chlorosulfonic acid in a reflux batch reactor giving solid glycerol-SO(3)H and glycerol-ClSO(3)H, respectively. The synthesised acidic glycerol catalysts were characterised by various analytical techniques such as thermalgravimetric analyser (TGA), infrared spectroscopy, surface properties adsorption-desorption by nitrogen gas, ammonia-temperature programmed desorption (NH(3)-TPD), X-ray diffraction spectroscopy (XRD), elemental composition analysis by energy dispersive spectrometer (EDX) and surface micrographic morphologies by field emission electron microscope (FESEM). Both glycerol-SO(3)H and glycerol-ClSO(3)H samples exhibited mesoporous structures with a low surface area of 8.85 mm(2)/g and 4.71 mm(2)/g, respectively, supported by the microscopic image of blockage pores. However, the acidity strength for both catalysts was recorded at 3.43 mmol/g and 3.96 mmol/g, which is sufficient for catalysing PFAD biodiesel at the highest yield. The catalytic esterification was optimised at 96.7% and 98.2% with 3 wt.% of catalyst loading, 18:1 of methanol-PFAD molar ratio, 120 °C, and 4 h of reaction. Catalyst reusability was sustained up to 3 reaction cycles due to catalyst deactivation, and the insight investigation of spent catalysts was also performed. MDPI 2022-10-21 /pmc/articles/PMC9612134/ /pubmed/36296735 http://dx.doi.org/10.3390/molecules27207142 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hazmi, Balkis
Beygisangchin, Mahnoush
Rashid, Umer
Mokhtar, Wan Nur Aini Wan
Tsubota, Toshiki
Alsalme, Ali
Ngamcharussrivichai, Chawalit
Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel
title Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel
title_full Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel
title_fullStr Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel
title_full_unstemmed Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel
title_short Glycerol-Based Retrievable Heterogeneous Catalysts for Single-Pot Esterification of Palm Fatty Acid Distillate to Biodiesel
title_sort glycerol-based retrievable heterogeneous catalysts for single-pot esterification of palm fatty acid distillate to biodiesel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9612134/
https://www.ncbi.nlm.nih.gov/pubmed/36296735
http://dx.doi.org/10.3390/molecules27207142
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