Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
Simulation of ionic-liquid extractive purification process of thiophene and m-xylene from their mixture with n-hexane by the molecular dynamics method. / Mammadhasanov, K. K.; Seyidova, S. A.; Ibrahimova, M. D.; Abbasov, V. M.; Huseynov, H. J.; Komolkin, A. V.
в: Modern Physics Letters B, Том 37, № 30, 2350139, 30.10.2023.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
}
TY - JOUR
T1 - Simulation of ionic-liquid extractive purification process of thiophene and m-xylene from their mixture with n-hexane by the molecular dynamics method
AU - Mammadhasanov, K. K.
AU - Seyidova, S. A.
AU - Ibrahimova, M. D.
AU - Abbasov, V. M.
AU - Huseynov, H. J.
AU - Komolkin, A. V.
PY - 2023/10/30
Y1 - 2023/10/30
N2 - This paper deals with the results of simulation of extractive purification process of model diesel fuel (the mixture of n-hexane with thiophene and m-xylene) by molecular dynamics simulation using N-methylpyrrolidinium acetate ionic liquid as an extractant. The extractive purification process was simulated for several model fuel systems with different concentrations of sulfur and aromatic containing components. The ionic liquid exhibits high extractive ability, the degrees of desulfurization and dearomatization reach 85-90 and 60 wt.%, respectively. The results were proved by experimental studies of a mixture by the ionic liquid. After 1 h of contact of the ionic liquid and the model mixture, the degree of purification against thiophene was 94.2 wt.%.
AB - This paper deals with the results of simulation of extractive purification process of model diesel fuel (the mixture of n-hexane with thiophene and m-xylene) by molecular dynamics simulation using N-methylpyrrolidinium acetate ionic liquid as an extractant. The extractive purification process was simulated for several model fuel systems with different concentrations of sulfur and aromatic containing components. The ionic liquid exhibits high extractive ability, the degrees of desulfurization and dearomatization reach 85-90 and 60 wt.%, respectively. The results were proved by experimental studies of a mixture by the ionic liquid. After 1 h of contact of the ionic liquid and the model mixture, the degree of purification against thiophene was 94.2 wt.%.
KW - Model diesel fuel
KW - diffusion coefficient
KW - extraction
KW - ionic liquid
KW - molecular dynamics
KW - simulation
KW - thiophene
UR - https://www.mendeley.com/catalogue/d1ae0717-11a8-3caa-a18b-c4af4db902de/
U2 - 10.1142/s0217984923501397
DO - 10.1142/s0217984923501397
M3 - Article
VL - 37
JO - Modern Physics Letters B
JF - Modern Physics Letters B
SN - 0217-9849
IS - 30
M1 - 2350139
ER -
ID: 111099657