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The effect of external mass transfer resistance on the adsorption rate in a liquid phase

Publication date: 22.03.2018

Technical Transactions, 2018, Volume 3 Year 2018 (115), pp. 79-90

https://doi.org/10.4467/2353737XCT.18.038.8300

Authors

,
Sylwia Piątkowska
Chair of Chemical and Process Engineering, Faculty of Chemical Engineering and Technology, Cracow University of Technology
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Monika Gwadera
Instytut Inżynierii Chemicznej i Procesowej, Wydział Inżynierii i Technologii Chemicznej, Politechnika Krakowska
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Titles

The effect of external mass transfer resistance on the adsorption rate in a liquid phase

Abstract

The paper presents the results of studies on the adsorption of a dye from a water solution on activated carbon. An activated carbon with the best adsorption properties for the dye used in the studies was selected experimentally. The equilibrium and kinetic measurements for the selected system were conducted. Constants of linear, Langmuir and Freundlich isotherms were determined. The obtained results have shown that increasing the flow rate of the solution in an adsorber results in increasing the adsorption rate.

References

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Information

Information: Technical Transactions, 2018, Volume 3 Year 2018 (115), pp. 79-90

Article type: Original scientific article

Titles:

Polish:

The effect of external mass transfer resistance on the adsorption rate in a liquid phase

English:

The effect of external mass transfer resistance on the adsorption rate in a liquid phase

Authors

Chair of Chemical and Process Engineering, Faculty of Chemical Engineering and Technology, Cracow University of Technology

Instytut Inżynierii Chemicznej i Procesowej, Wydział Inżynierii i Technologii Chemicznej, Politechnika Krakowska

Published at: 22.03.2018

Article status: Open

Licence: None

Percentage share of authors:

Sylwia Piątkowska (Author) - 50%
Monika Gwadera (Author) - 50%

Article corrections:

-

Publication languages:

English

6. The effect of external mass transfer resistance on the adsorption rate in a liquid phase

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