TY - JOUR
T1 - Multicomponent extraction of aromatics and heteroaromatics from diesel using acidic eutectic solvents
T2 - Experimental and COSMO-RS predictions
AU - Darwish, Ahmad
AU - Abu Hatab, Farah
AU - Lemaoui, Tarek
AU - A. Z. Ibrahim, Omar
AU - Almustafa, Ghaiath
AU - Zhuman, Botagoz
AU - E. E. Warrag, Samah
AU - Hadj-Kali, Mohamed K.
AU - Benguerba, Yacine
AU - Alnashef, Inas M.
N1 - Funding Information:
“The authors would like to express their gratitude to Khalifa University for financially supporting this work through award numbers CIRA-2018-069 and CIRA-2018-023. The authors also acknowledge the support of the Center for Membrane and Advanced Water Technology (CMAT, RC2-2018-009) at Khalifa University in UAE, and the support of Laboratoire des Matériaux Polymères Multiphasiques (LMPMP) and Energetics and Solid-State Electrochemistry Laboratory (LEES) at Université Ferhat ABBAS in Algeria”. "Dr. Hadj-Kali is grateful to the Research Center of College of Engineering, Deanship of Scientific Research (DSR) at King Saud University, Saudi Arabia."
Funding Information:
?The authors would like to express their gratitude to Khalifa University for financially supporting this work through award numbers CIRA-2018-069 and CIRA-2018-023. The authors also acknowledge the support of the Center for Membrane and Advanced Water Technology (CMAT, RC2-2018-009) at Khalifa University in UAE, and the support of Laboratoire des Mat?riaux Polym?res Multiphasiques (LMPMP) and Energetics and Solid-State Electrochemistry Laboratory (LEES) at Universit? Ferhat ABBAS in Algeria?. ?Dr. Hadj-Kali is grateful to the Research Center of College of Engineering, Deanship of Scientific Research (DSR) at King Saud University, Saudi Arabia.?
Publisher Copyright:
© 2021 Elsevier B.V.
PY - 2021/8/15
Y1 - 2021/8/15
N2 - Eutectic solvents (ESs) have been extensively studied in the literature for the purification of fuels. Nevertheless, most studies investigated the extraction of a single type of aromatic from n-alkanes. In this work, aiming to provide insights about the performance of ESs in a process that mimics the multicomponent dearomatization used industrially, a salt-acid-based ES, comprised of methyltriphenyl-phosphonium bromide and acetic acid, was applied in simultaneously extracting toluene, thiophene, quinoline, and pyrrole from n-decane. First, the DES was characterized for its eutectic composition, physicochemical, and critical properties. Then, an initial screening to determine the molecular-level interactions and extraction mechanism were studied experimentally and using COSMO-RS screening charge density profiles and potentials. A physical mechanism was confirmed for the extraction of pyrrole, thiophene, and toluene while for quinoline, an acid-base reaction was the predominant extraction mechanism. The phase diagrams of each impurity were also experimentally determined, predicted using the COSMO-RS model, and correlated using the NRTL model in Aspen Plus. Lastly, a parametric investigation studying the impact of key parameters including stirring time, initial concentration, mixing effects, solvent-to-feed ratio, multi-stage extraction, and repetitive usage of solvent was conducted. On multi-stage extraction, full recovery of pyrrole and quinoline (≈99.9%) was achieved in only 2-stages, whereas for thiophene and toluene efficiencies of 82.2% and 58.4% were reached after the 5th stage, respectively.
AB - Eutectic solvents (ESs) have been extensively studied in the literature for the purification of fuels. Nevertheless, most studies investigated the extraction of a single type of aromatic from n-alkanes. In this work, aiming to provide insights about the performance of ESs in a process that mimics the multicomponent dearomatization used industrially, a salt-acid-based ES, comprised of methyltriphenyl-phosphonium bromide and acetic acid, was applied in simultaneously extracting toluene, thiophene, quinoline, and pyrrole from n-decane. First, the DES was characterized for its eutectic composition, physicochemical, and critical properties. Then, an initial screening to determine the molecular-level interactions and extraction mechanism were studied experimentally and using COSMO-RS screening charge density profiles and potentials. A physical mechanism was confirmed for the extraction of pyrrole, thiophene, and toluene while for quinoline, an acid-base reaction was the predominant extraction mechanism. The phase diagrams of each impurity were also experimentally determined, predicted using the COSMO-RS model, and correlated using the NRTL model in Aspen Plus. Lastly, a parametric investigation studying the impact of key parameters including stirring time, initial concentration, mixing effects, solvent-to-feed ratio, multi-stage extraction, and repetitive usage of solvent was conducted. On multi-stage extraction, full recovery of pyrrole and quinoline (≈99.9%) was achieved in only 2-stages, whereas for thiophene and toluene efficiencies of 82.2% and 58.4% were reached after the 5th stage, respectively.
KW - Dearomatization
KW - Denitrification
KW - Desulfurization
KW - Diesel fuel
KW - Eutectic solvent
KW - Liquid-liquid extraction
UR - https://www.scopus.com/pages/publications/85107402218
U2 - 10.1016/j.molliq.2021.116575
DO - 10.1016/j.molliq.2021.116575
M3 - Article
AN - SCOPUS:85107402218
SN - 0167-7322
VL - 336
JO - Journal of Molecular Liquids
JF - Journal of Molecular Liquids
M1 - 116575
ER -