Separation of styrene from ethylbenzene is challenging because of their close boiling points and similar chemical characteristics. In this study, we utilized three ammonium-based deep eutectic solvents (DESs) with glycols as hydrogen bond donors to separate styrene from ethylbenzene via liquid-liquid extraction at room temperature and atmospheric pressure, with styrene concentration in the feed mixture ranging from (10 to 80) wt%. Consistency of the experimental data was ascertained by Othmer-Tobias and Hand correlations, and the NRTL binary interaction parameters were also validated for thermodynamic consistency. Distribution ratios of styrene were found to be comparable to that obtained using ionic liquids, although the selectivity values...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
The distillation of ethylbenzene (EB) from styrene (SM) is very energy intensive. By using extractiv...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
Recently, deep eutectic solvents (DESs) have proven to be excellent extracting agents in the separat...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
(Liquid + liquid) extraction of ethylbenzene from n-octane by using tetrabutylammonium bromide-based...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
The distillation of ethylbenzene (EB) from styrene (SM) is very energy intensive. By using extractiv...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
The distillation of close boiling mixtures may be improved by adding a proper affinity solvent, and ...
Recently, deep eutectic solvents (DESs) have proven to be excellent extracting agents in the separat...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
(Liquid + liquid) extraction of ethylbenzene from n-octane by using tetrabutylammonium bromide-based...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
Ethylbenzene and styrene are currently separated by ordinary fractional distillation, which is chall...
The distillation of ethylbenzene (EB) from styrene (SM) is very energy intensive. By using extractiv...