Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents

Removal of nitrogen and sulfur compounds from diesel fuel is essential to comply with the increasing stringent regulations. The extraction capability of two deep eutectic solvents, namely, tetrabutylphosphoniumbromide/ethylene glycol, TBPBr/ EG, with molar ratio 1:2, and tetrabutylammoniumbromide/et...

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Main Authors: Suhaimi, Hurun E., Hizaddin, Hanee Farzana, Wazeer, Irfan, El Blidi, Lahssen, Hashim, Mohd A., Hadj-Kali, Mohamed K.
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Published: American Chemical Society 2021
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Online Access:http://eprints.um.edu.my/28483/
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spelling my.um.eprints.284832022-08-12T07:05:27Z http://eprints.um.edu.my/28483/ Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents Suhaimi, Hurun E. Hizaddin, Hanee Farzana Wazeer, Irfan El Blidi, Lahssen Hashim, Mohd A. Hadj-Kali, Mohamed K. QD Chemistry TP Chemical technology Removal of nitrogen and sulfur compounds from diesel fuel is essential to comply with the increasing stringent regulations. The extraction capability of two deep eutectic solvents, namely, tetrabutylphosphoniumbromide/ethylene glycol, TBPBr/ EG, with molar ratio 1:2, and tetrabutylammoniumbromide/ethylene glycol, TBABr/EG, with molar ratio 1:2, in simultaneously extracting basic nitrogen, nonbasic nitrogen, and sulfur compounds represented by pyridine, indoline, and dibenzothiophene (DBT) from n-hexadecane, was investigated. Two pseudoternary phase diagrams of (TBPBr/EG + (pyridine + indoline + DBT) + n-hexadecane) and (TBABr/EG + (pyridine + indoline + DBT) + n-hexadecane) were predicted via a conductor-like screening model for real solvents (COSMO-RS) and experimentally validated at 298.15 K and 1 atm. Both solvents showed zero cross-contamination, indicating the suitability of all solvents as extraction solvents. The tie lines obtained for both COSMO-RS and experiments were in agreement and had root-mean-square deviation (RMSD) values of less than 5% for both systems. Selectivity and distribution ratio calculated indicates the suitability of both solvents in extracting sulfur and nitrogen compounds from hexadecane. Two new parameters, namely, extraction efficiency, alpha, and extraction affinity, beta, were introduced to ease the performance comparison of both solvents. TBPBr/EG shows a slightly better performance than TBABr/EG. Other than that, the presence of multiple solutes shows low effects on the performance of these solvents. American Chemical Society 2021-08-31 Article PeerReviewed Suhaimi, Hurun E. and Hizaddin, Hanee Farzana and Wazeer, Irfan and El Blidi, Lahssen and Hashim, Mohd A. and Hadj-Kali, Mohamed K. (2021) Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents. ACS Omega, 6 (34). pp. 22317-22332. ISSN 2470-1343, DOI https://doi.org/10.1021/acsomega.1c03034 <https://doi.org/10.1021/acsomega.1c03034>. 10.1021/acsomega.1c03034
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QD Chemistry
TP Chemical technology
spellingShingle QD Chemistry
TP Chemical technology
Suhaimi, Hurun E.
Hizaddin, Hanee Farzana
Wazeer, Irfan
El Blidi, Lahssen
Hashim, Mohd A.
Hadj-Kali, Mohamed K.
Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
description Removal of nitrogen and sulfur compounds from diesel fuel is essential to comply with the increasing stringent regulations. The extraction capability of two deep eutectic solvents, namely, tetrabutylphosphoniumbromide/ethylene glycol, TBPBr/ EG, with molar ratio 1:2, and tetrabutylammoniumbromide/ethylene glycol, TBABr/EG, with molar ratio 1:2, in simultaneously extracting basic nitrogen, nonbasic nitrogen, and sulfur compounds represented by pyridine, indoline, and dibenzothiophene (DBT) from n-hexadecane, was investigated. Two pseudoternary phase diagrams of (TBPBr/EG + (pyridine + indoline + DBT) + n-hexadecane) and (TBABr/EG + (pyridine + indoline + DBT) + n-hexadecane) were predicted via a conductor-like screening model for real solvents (COSMO-RS) and experimentally validated at 298.15 K and 1 atm. Both solvents showed zero cross-contamination, indicating the suitability of all solvents as extraction solvents. The tie lines obtained for both COSMO-RS and experiments were in agreement and had root-mean-square deviation (RMSD) values of less than 5% for both systems. Selectivity and distribution ratio calculated indicates the suitability of both solvents in extracting sulfur and nitrogen compounds from hexadecane. Two new parameters, namely, extraction efficiency, alpha, and extraction affinity, beta, were introduced to ease the performance comparison of both solvents. TBPBr/EG shows a slightly better performance than TBABr/EG. Other than that, the presence of multiple solutes shows low effects on the performance of these solvents.
format Article
author Suhaimi, Hurun E.
Hizaddin, Hanee Farzana
Wazeer, Irfan
El Blidi, Lahssen
Hashim, Mohd A.
Hadj-Kali, Mohamed K.
author_facet Suhaimi, Hurun E.
Hizaddin, Hanee Farzana
Wazeer, Irfan
El Blidi, Lahssen
Hashim, Mohd A.
Hadj-Kali, Mohamed K.
author_sort Suhaimi, Hurun E.
title Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
title_short Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
title_full Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
title_fullStr Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
title_full_unstemmed Simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
title_sort simultaneous extraction of sulfur and nitrogen compounds from model diesel fuel using neoteric green solvents
publisher American Chemical Society
publishDate 2021
url http://eprints.um.edu.my/28483/
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score 13.214268