2010Solvent Extraction and Ion ExchangeRequires access

Mass Transfer Simulation of Caffeine Extraction by Subcritical CO2in a Hollow-Fiber Membrane Contactor

Saeed Shirazian, Seyed Nezameddin Ashrafizadeh

Open publisher page 37 citations

Abstract

A 2-dimentional mass-transfer model was developed to describe the solvent extraction of caffeine by subcritical CO2 through a hollow-fiber membrane contactor. The proposed model was based on the conservation equation for the concentration of caffeine in both aqueous and solvent phases as well as membrane. The model equations were solved by numerical method based on finite element. The model findings were verified through comparison with experimental data from the literature. The effects of contactor configurations, membrane characteristics, and operational conditions on the extraction of caffeine were investigated. The results indicated that the developed model well predicts the general behavior of caffeine extraction versus process variables.

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What this paper is about

A 2-dimentional mass-transfer model was developed to describe the solvent extraction of caffeine by subcritical CO2 through a hollow-fiber membrane contactor. The proposed model was based on the conservation equation for the concentration of caffeine in both aqueous and solvent phases as well as membrane. The model equations were solved by numerical method based on finite element. The model findings were verified through comparison with experimental data from the literature. The effects of contactor configurations, membrane characteristics, and operational conditions on the extraction of caffeine were investigated. The results indicated that the developed model well predicts the general behavior of caffeine extraction versus process variables.

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OpenAlex reports 37 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A 2-dimentional mass-transfer model was developed to describe the solvent extraction of caffeine by subcritical CO2 through a hollow-fiber membrane contactor. The proposed model was based on the conservation equation for the concentration of caffeine in both aqueous and solvent phases as well as membrane. The model equations were solved by numerical method based on finite element. The model findings were verified through comparison with experimental data from the literature. The effects of contactor configurations, membrane characteristics, and operational conditions on the extraction of caffeine were investigated. The results indicated that the developed model well predicts the general behavior of caffeine extraction versus process variables.

Key concepts: Contactor, Caffeine, Hollow fiber membrane, Mass transfer, Chemistry, Extraction (chemistry), Membrane, Aqueous solution

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Mass Transfer Simulation of Caffeine Extraction by Subcritical CO2in a Hollow-Fiber Membrane Contactor — Research Paper | ScholarLens