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Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents

The dyeing industry is one of the most polluting in the world. The adsorption of dyes by polymeric matrixes can be used to minimize the discharge of dyes into the environment. In the present study, chitosan-NaOH and β-cyclodextrin-epichlorohydrin polymers were used to remove the dye Direct Blue 78 f...

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Autores principales: Murcia-Salvador, Ainoa, Pellicer, José A., Fortea, María I., Gómez-López, Vicente M., Rodríguez-López, María I., Núñez-Delicado, Estrella, Gabaldón, José A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6631907/
https://www.ncbi.nlm.nih.gov/pubmed/31195681
http://dx.doi.org/10.3390/polym11061003
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author Murcia-Salvador, Ainoa
Pellicer, José A.
Fortea, María I.
Gómez-López, Vicente M.
Rodríguez-López, María I.
Núñez-Delicado, Estrella
Gabaldón, José A.
author_facet Murcia-Salvador, Ainoa
Pellicer, José A.
Fortea, María I.
Gómez-López, Vicente M.
Rodríguez-López, María I.
Núñez-Delicado, Estrella
Gabaldón, José A.
author_sort Murcia-Salvador, Ainoa
collection PubMed
description The dyeing industry is one of the most polluting in the world. The adsorption of dyes by polymeric matrixes can be used to minimize the discharge of dyes into the environment. In the present study, chitosan-NaOH and β-cyclodextrin-epichlorohydrin polymers were used to remove the dye Direct Blue 78 from a wastewater model. To understand the adsorption behavior of Direct Blue 78 onto the polymers, adsorption rate and maximum adsorption capacity were calculated using kinetic tests and isotherm curves respectively. The kinetic data and mechanism of the adsorption process were analyzed by three models and the equilibrium data by three adsorption isotherms; also the different thermodynamic parameters were calculated. Results showed that the adsorption process follows pseudo-second-order kinetics in both polymers and the Langmuir isotherm best-fitted data for chitosan-NaOH polymer and the Freundlich isotherm for the β-CDs-EPI polymer. The adsorption process is exothermic in both cases and spontaneous for the β-CDs-EPI polymer to a certain temperature and not spontaneous for the chitosan-NaOH polymer and β-CDs-EPI polymer at higher temperatures. The complementary action of an advanced oxidation process eliminated >99% of the dye from water. The coupled process seems to be suitable for reducing the environmental impact of the dyeing industry.
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spelling pubmed-66319072019-08-19 Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents Murcia-Salvador, Ainoa Pellicer, José A. Fortea, María I. Gómez-López, Vicente M. Rodríguez-López, María I. Núñez-Delicado, Estrella Gabaldón, José A. Polymers (Basel) Article The dyeing industry is one of the most polluting in the world. The adsorption of dyes by polymeric matrixes can be used to minimize the discharge of dyes into the environment. In the present study, chitosan-NaOH and β-cyclodextrin-epichlorohydrin polymers were used to remove the dye Direct Blue 78 from a wastewater model. To understand the adsorption behavior of Direct Blue 78 onto the polymers, adsorption rate and maximum adsorption capacity were calculated using kinetic tests and isotherm curves respectively. The kinetic data and mechanism of the adsorption process were analyzed by three models and the equilibrium data by three adsorption isotherms; also the different thermodynamic parameters were calculated. Results showed that the adsorption process follows pseudo-second-order kinetics in both polymers and the Langmuir isotherm best-fitted data for chitosan-NaOH polymer and the Freundlich isotherm for the β-CDs-EPI polymer. The adsorption process is exothermic in both cases and spontaneous for the β-CDs-EPI polymer to a certain temperature and not spontaneous for the chitosan-NaOH polymer and β-CDs-EPI polymer at higher temperatures. The complementary action of an advanced oxidation process eliminated >99% of the dye from water. The coupled process seems to be suitable for reducing the environmental impact of the dyeing industry. MDPI 2019-06-05 /pmc/articles/PMC6631907/ /pubmed/31195681 http://dx.doi.org/10.3390/polym11061003 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Murcia-Salvador, Ainoa
Pellicer, José A.
Fortea, María I.
Gómez-López, Vicente M.
Rodríguez-López, María I.
Núñez-Delicado, Estrella
Gabaldón, José A.
Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents
title Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents
title_full Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents
title_fullStr Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents
title_full_unstemmed Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents
title_short Adsorption of Direct Blue 78 Using Chitosan and Cyclodextrins as Adsorbents
title_sort adsorption of direct blue 78 using chitosan and cyclodextrins as adsorbents
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6631907/
https://www.ncbi.nlm.nih.gov/pubmed/31195681
http://dx.doi.org/10.3390/polym11061003
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