Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption

The possibilities arising from the introduction of a layer of equilibrium adsorption into the model for a theory relating to the adsorption dynamics of vapours on microporous adsorbents have been studied. The initial first-order differential equation of the model combines the features of a material...

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Main Author: A.V. Larin
Format: Article
Language:English
Published: SAGE Publications 1990-06-01
Series:Adsorption Science & Technology
Online Access:https://doi.org/10.1177/026361749000700201
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author A.V. Larin
author_facet A.V. Larin
author_sort A.V. Larin
collection DOAJ
description The possibilities arising from the introduction of a layer of equilibrium adsorption into the model for a theory relating to the adsorption dynamics of vapours on microporous adsorbents have been studied. The initial first-order differential equation of the model combines the features of a material balance equation, the adsorption kinetics and an unsimplified isotherm. The results of computer simulation for the Dubinin-Radushkevich adsorption isotherm agree closely with the experimental data for ethyl chloride and carbon tetrachloride adsorption dynamics on activated carbons over a wide range of breakthrough concentrations.
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spelling doaj.art-23258db7799344af9b29d3a19e41ecd42024-03-03T03:40:34ZengSAGE PublicationsAdsorption Science & Technology0263-61742048-40381990-06-01710.1177/026361749000700201Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium AdsorptionA.V. LarinThe possibilities arising from the introduction of a layer of equilibrium adsorption into the model for a theory relating to the adsorption dynamics of vapours on microporous adsorbents have been studied. The initial first-order differential equation of the model combines the features of a material balance equation, the adsorption kinetics and an unsimplified isotherm. The results of computer simulation for the Dubinin-Radushkevich adsorption isotherm agree closely with the experimental data for ethyl chloride and carbon tetrachloride adsorption dynamics on activated carbons over a wide range of breakthrough concentrations.https://doi.org/10.1177/026361749000700201
spellingShingle A.V. Larin
Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption
Adsorption Science & Technology
title Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption
title_full Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption
title_fullStr Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption
title_full_unstemmed Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption
title_short Theory of the Adsorption Dynamics of Vapours on Microporous Adsorbents. 1. Introduction into the Model of a Layer of Equilibrium Adsorption
title_sort theory of the adsorption dynamics of vapours on microporous adsorbents 1 introduction into the model of a layer of equilibrium adsorption
url https://doi.org/10.1177/026361749000700201
work_keys_str_mv AT avlarin theoryoftheadsorptiondynamicsofvapoursonmicroporousadsorbents1introductionintothemodelofalayerofequilibriumadsorption