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Isotermes d'adsorció (Langmuir-Freundlich)×Model CSTR×Model PFR×Destil·lació reactiva×
CampFísica aplicadaFísica aplicadaFísica aplicadaFísica aplicada
FamíliaProcess / pipelineProcess / pipelineProcess / pipelineProcess / pipeline
Any d'origen1918196219621995
Autor originalIrving LangmuirOctave LevenspielOctave LevenspielKlaus Sundmacher
TipusEmpirical and theoretical adsorption equilibrium modelMathematical model for continuous flow reactorMathematical model for plug-flow reactorIntegrated reaction-separation process model
Font seminalLangmuir, I. (1918). The adsorption of gases on plane surfaces of glass, mica, and platinum. Journal of the American Chemical Society, 40(9), 1361-1403. DOI ↗Levenspiel, O. (1999). Chemical Reaction Engineering (3rd ed.). John Wiley & Sons. ISBN: 978-0-471-25424-9Levenspiel, O. (1999). Chemical Reaction Engineering (3rd ed.). John Wiley & Sons. ISBN: 978-0-471-25424-9Sundmacher, K., & Kienle, A. (2003). Reactive Distillation: Status and Future Directions. Wiley-VCH. ISBN: 978-3-527-30623-9
ÀliesLangmuir isotherm, Freundlich isotherm, sorption equilibriumideal mixed reactor, back-mix reactor, CSTRideal tubular reactor, plug-flow model, PFRintegrated distillation-reaction, reactive column, reaction with separation
Relacionats3334
ResumAdsorption isotherms describe the equilibrium uptake of a substance on a solid surface as a function of gas or solution phase concentration at constant temperature. The Langmuir isotherm (1918) and Freundlich isotherm (1906) are classical empirical models. The Langmuir model assumes monolayer coverage and is mechanistic; the Freundlich model is empirical and describes multilayer or heterogeneous adsorption. These isotherms are essential for designing separation processes (activated carbon filters, molecular sieves) and understanding pollutant sorption.The CSTR (Continuous Stirred-Tank Reactor) model describes the behavior of an ideal mixed reactor where fresh feed is continuously added, products are withdrawn, and contents are kept uniform by vigorous stirring. This fundamental model, formalized by Octave Levenspiel in the 1960s, is widely used to design and scale batch and continuous processes. Despite its simplicity, it captures essential dynamics of industrial reactors and is the baseline for process control and optimization.The PFR (Plug Flow Reactor) model describes the behavior of a tubular reactor in which fluid elements move through as distinct plugs with no axial mixing. Fluid at the inlet is freshly unreacted; as it travels downstream, reactions progress. This idealized model, formalized by Octave Levenspiel alongside CSTR theory, is the opposite extreme: while CSTRs are fully mixed, PFRs have no axial mixing. In practice, PFRs achieve higher conversion than CSTRs for the same residence time and are widely used in the chemical and petroleum industries.Reactive distillation couples reaction and separation in a single column, where reactants are separated from products continuously while simultaneously undergoing reaction on catalytic trays. Pioneered in the 1990s by Klaus Sundmacher and others, this process intensification technique dramatically reduces capital cost, energy consumption, and environmental impact for suitable reactions. It is now industrially proven for esterification, hydration, and transesterification processes.
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ScholarGateCompara mètodes: Adsorption Isotherm (Langmuir-Freundlich) · CSTR Model · PFR Model · Reactive Distillation. Recuperat el 2026-06-19 de https://scholargate.app/ca/compare