Transesterification of leather tanning waste to biodiesel at supercritical condition: Kinetics and thermodynamics studies
[Display omitted] ► Catalyst-free transesterification of leather tanning waste to biodiesel. ► Kinetic modeling of FAME incorporating esterification and transesterification. ► Analysis of thermodynamic activation parameters of the reactions based on ACT. Catalyst-free transesterification of leather...
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Veröffentlicht in: | The Journal of supercritical fluids 2013-03, Vol.75, p.11-20 |
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Format: | Artikel |
Sprache: | eng |
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► Catalyst-free transesterification of leather tanning waste to biodiesel. ► Kinetic modeling of FAME incorporating esterification and transesterification. ► Analysis of thermodynamic activation parameters of the reactions based on ACT.
Catalyst-free transesterification of leather tanning waste with high free fatty acid (FFA) content at supercritical condition was reported in this work. The experiments were performed in batch system at various temperatures (250–325°C) under constant pressure of 12MPa and methanol/fatty oil molar ratio of 40:1 for reaction time of 2–10min. Kinetic modeling of formation of fatty acid methyl esters (FAMEs) that incorporate reversible esterification and non-reversible transesterification simultaneously was verified. The proposed semi-empirical model was fitted against kinetic experimental data over temperature range studied. The kinetic parameters (i.e. k′TE, k′E, and kE′) were determined by nonlinear regression fitting. Thermodynamic activation parameters of the reactions were evaluated based on activation complex theory (ACT) and the following results are obtained: ΔG‡>0, ΔH‡>0, and ΔS‡ |
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ISSN: | 0896-8446 1872-8162 |
DOI: | 10.1016/j.supflu.2012.12.018 |