Thermodynamic analysis, synthesis, characterization, and evaluation of 1-ethyl-3-methylimidazolium chloride: Study of its effect on pretreated rice husk
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Thermodynamic analysis, synthesis, characterization, and evaluation of 1-ethyl-3-methylimidazolium chloride: Study of its effect on pretreated rice husk
Chinese Journal of Chemical EngineeringVol. 60, Issue 8, Pages: 143-154(2023)
Affiliations:
1. Universidad de Bogotá Jorge Tadeo Lozano, Facultad de Ciencias Naturales e Ingeniería, Cra. 4 22-61, Cundinamarca, Bogotá,Colombia
2. Instituto Politecnico Nacional, CICATA Queretaro, Cerro Blanco 141, Colinas del Cimatario,Queretaro,Mexico,76090
3. School of Engineering, University of Edinburgh, Edinburgh EH9 3FB, United Kingdom
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Published:2023
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Eileen Katherine Coronado-Aldana, Cindy Lizeth Ferreira-Salazar, Nubia Yineth Piñeros-Castro, Rubén Vázquez-Medina, Felipe A. Perdomo. Thermodynamic analysis, synthesis, characterization, and evaluation of 1-ethyl-3-methylimidazolium chloride: Study of its effect on pretreated rice husk[J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 143-154.
DOI:
Eileen Katherine Coronado-Aldana, Cindy Lizeth Ferreira-Salazar, Nubia Yineth Piñeros-Castro, Rubén Vázquez-Medina, Felipe A. Perdomo. Thermodynamic analysis, synthesis, characterization, and evaluation of 1-ethyl-3-methylimidazolium chloride: Study of its effect on pretreated rice husk[J]. Chinese Journal of Chemical Engineering, 2023, 60(8): 143-154.DOI:
Thermodynamic analysis, synthesis, characterization, and evaluation of 1-ethyl-3-methylimidazolium chloride: Study of its effect on pretreated rice husk
摘要
Abstract
This work is focused on the determination of the optimal reaction conditions to synthesize the ionic liquid 1-ethyl-3-methylimidazolium chloride ([EMIM
]
[Cl
]
) and assess its suitability for the pretreatment of rice husk. The modified UNIFAC (UNIversal quasi-chemical Functional-group Activity Coefficients) approach for ionic liquids is used to develop a thermodynamic model that describes the reactive system methylimidazole (MIM)
chloroethane (C
2
H
5
Cl) and [EMIM
]
[Cl
]
. The model allows to study the phase equilibria coexistence (vapor-liquid equilibria and solid-liquid equilibria) and yields the theoretically optimal conditions to synthesize the ionic liquid. The model predictions are validated with the available experimental and reported data. By implementing the developed model
a simple way to synthesize ionic liquid [EMIM
]
[Cl
]
was found allowing to study its influence on the structure and morphology of pretreated rice husk. The lignocellulosic materials involved in this study are characterized by their composition
enzymatic digestibility
scanning electron microscopy
and crystallinity. Compared to untreated material
[EMIM
]
[Cl
]
-pretreated rice
husk produces cellulose that can be efficiently enzymatic hydrolyzed with high sugar yields. This work offers a suitable methodology to include the synthesis and thermodynamics of the solvent media within the design of low-cost ionic liquids for lignocellulosic biomass pretreatment.
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