Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment

The desulfurization process of high-sulfur coal from Jambi Province, Indonesia was investigated using peroxyacetic acid (PAA) as mild oxidising agent by ultrasonic wave. This study reports the utilization of a mixture of acetic acid and 6% hydrogen peroxide (CH3COOH: H2COOH) under sonication to extr...

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Published in:Journal of Advanced Research in Applied Sciences and Engineering Technology
Main Author: Nazua N.F.; Ismail S.N.A.S.; Abdullah M.F.; Ishak M.A.M.; Ismail W.I.N.W.; Ismail K.; Ahmad R.; Abdulrrahman M.D.
Format: Article
Language:English
Published: Semarak Ilmu Publishing 2025
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85200678336&doi=10.37934%2faraset.48.2.105120&partnerID=40&md5=9f71c475f19b3ed23462e443dfda3688
id 2-s2.0-85200678336
spelling 2-s2.0-85200678336
Nazua N.F.; Ismail S.N.A.S.; Abdullah M.F.; Ishak M.A.M.; Ismail W.I.N.W.; Ismail K.; Ahmad R.; Abdulrrahman M.D.
Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
2025
Journal of Advanced Research in Applied Sciences and Engineering Technology
48
2
10.37934/araset.48.2.105120
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85200678336&doi=10.37934%2faraset.48.2.105120&partnerID=40&md5=9f71c475f19b3ed23462e443dfda3688
The desulfurization process of high-sulfur coal from Jambi Province, Indonesia was investigated using peroxyacetic acid (PAA) as mild oxidising agent by ultrasonic wave. This study reports the utilization of a mixture of acetic acid and 6% hydrogen peroxide (CH3COOH: H2COOH) under sonication to extract organic sulfur from coal. The ultrasonic shockwave separates sulfur from the coal's macromolecular structure by breaking the chemical connections that hold sulfur to coal. The optimum concentration, temperature, and processing time for the coal desulfurization process were determined using the Central Composite Design-Response Surface Methodology (CCD-RSM) to overcome the traditional methods that make finding the optimal standard difficult and time-consuming. Sonicating coal at 30 ˚C for 30 minutes with 70:30 (CH3COOH: H2COOH) was found to be the ideal parameter. Results shows that all inorganic and some of the organic sulfur could be removed from the coal using mild conditions without severely affecting the coal microstructure as observed in the FESEM-EDX. Through the FTIR analysis, the organic sulfur structural parameters show the relative abundance of aliphatic sulfur (thiol, thiophene and sulfone) and organic matters in these coals decreased after the coal treated by PAA.To clarify its chemical effect, the production regularities of hydroxyl radical under ultrasonic field was determined using the iodine release method. Experimental results also showed that the production rule of hydroxyl radical was consistent with the desulfurization degree. These findings confirmed that the synergistic action of physical and chemical effects of the ultrasonic played an important role in this desulfurization process, which could serve as a reference for further optimizing the coal desulfurization process. © 2025, Semarak Ilmu Publishing. All rights reserved.
Semarak Ilmu Publishing
24621943
English
Article

author Nazua N.F.; Ismail S.N.A.S.; Abdullah M.F.; Ishak M.A.M.; Ismail W.I.N.W.; Ismail K.; Ahmad R.; Abdulrrahman M.D.
spellingShingle Nazua N.F.; Ismail S.N.A.S.; Abdullah M.F.; Ishak M.A.M.; Ismail W.I.N.W.; Ismail K.; Ahmad R.; Abdulrrahman M.D.
Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
author_facet Nazua N.F.; Ismail S.N.A.S.; Abdullah M.F.; Ishak M.A.M.; Ismail W.I.N.W.; Ismail K.; Ahmad R.; Abdulrrahman M.D.
author_sort Nazua N.F.; Ismail S.N.A.S.; Abdullah M.F.; Ishak M.A.M.; Ismail W.I.N.W.; Ismail K.; Ahmad R.; Abdulrrahman M.D.
title Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
title_short Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
title_full Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
title_fullStr Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
title_full_unstemmed Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
title_sort Desulfurization and Optimization of High Sulfur Jambi Province Coal by Ultrasonic-Assisted Process using Peroxyacetic Acid (PAA) Treatment
publishDate 2025
container_title Journal of Advanced Research in Applied Sciences and Engineering Technology
container_volume 48
container_issue 2
doi_str_mv 10.37934/araset.48.2.105120
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85200678336&doi=10.37934%2faraset.48.2.105120&partnerID=40&md5=9f71c475f19b3ed23462e443dfda3688
description The desulfurization process of high-sulfur coal from Jambi Province, Indonesia was investigated using peroxyacetic acid (PAA) as mild oxidising agent by ultrasonic wave. This study reports the utilization of a mixture of acetic acid and 6% hydrogen peroxide (CH3COOH: H2COOH) under sonication to extract organic sulfur from coal. The ultrasonic shockwave separates sulfur from the coal's macromolecular structure by breaking the chemical connections that hold sulfur to coal. The optimum concentration, temperature, and processing time for the coal desulfurization process were determined using the Central Composite Design-Response Surface Methodology (CCD-RSM) to overcome the traditional methods that make finding the optimal standard difficult and time-consuming. Sonicating coal at 30 ˚C for 30 minutes with 70:30 (CH3COOH: H2COOH) was found to be the ideal parameter. Results shows that all inorganic and some of the organic sulfur could be removed from the coal using mild conditions without severely affecting the coal microstructure as observed in the FESEM-EDX. Through the FTIR analysis, the organic sulfur structural parameters show the relative abundance of aliphatic sulfur (thiol, thiophene and sulfone) and organic matters in these coals decreased after the coal treated by PAA.To clarify its chemical effect, the production regularities of hydroxyl radical under ultrasonic field was determined using the iodine release method. Experimental results also showed that the production rule of hydroxyl radical was consistent with the desulfurization degree. These findings confirmed that the synergistic action of physical and chemical effects of the ultrasonic played an important role in this desulfurization process, which could serve as a reference for further optimizing the coal desulfurization process. © 2025, Semarak Ilmu Publishing. All rights reserved.
publisher Semarak Ilmu Publishing
issn 24621943
language English
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