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Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions

Arabica-coffee and Theobroma-cocoa agroindustrial wastes were treated with NaOH and characterized to efficiently remove Pb(II) from the aqueous media. The maximum Pb(II) adsorption capacities, q(max), of Arabica-coffee (WCAM) and Theobroma-cocoa (WCTM) biosorbents (q(max) = 303.0 and 223.1 mg·g(−1),...

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Autores principales: Lavado-Meza, Carmencita, De la Cruz-Cerrón, Leonel, Asencios, Yvan J.O., Marcos, Francielle Candian Firmino, Dávalos-Prado, Juan Z.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862124/
https://www.ncbi.nlm.nih.gov/pubmed/36677741
http://dx.doi.org/10.3390/molecules28020683
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author Lavado-Meza, Carmencita
De la Cruz-Cerrón, Leonel
Asencios, Yvan J.O.
Marcos, Francielle Candian Firmino
Dávalos-Prado, Juan Z.
author_facet Lavado-Meza, Carmencita
De la Cruz-Cerrón, Leonel
Asencios, Yvan J.O.
Marcos, Francielle Candian Firmino
Dávalos-Prado, Juan Z.
author_sort Lavado-Meza, Carmencita
collection PubMed
description Arabica-coffee and Theobroma-cocoa agroindustrial wastes were treated with NaOH and characterized to efficiently remove Pb(II) from the aqueous media. The maximum Pb(II) adsorption capacities, q(max), of Arabica-coffee (WCAM) and Theobroma-cocoa (WCTM) biosorbents (q(max) = 303.0 and 223.1 mg·g(−1), respectively) were almost twice that of the corresponding untreated wastes and were higher than those of other similar agro-industrial biosorbents reported in the literature. Structural, chemical, and morphological characterization were performed by FT-IR, SEM/EDX, and point of zero charge (pH(PZC)) measurements. Both the WCAM and WCTM biosorbents showed typical uneven and rough cracked surfaces including the OH, C=O, COH, and C-O-C functional adsorbing groups. The optimal Pb(II) adsorption, reaching a high removal efficiency %R (>90%), occurred at a pH between 4 and 5 with a biosorbent dose of 2 g·L(−1). The experimental data for Pb(II) adsorption on WACM and WCTM were well fitted with the Langmuir-isotherm and pseudo-second order kinetic models. These indicated that Pb(II) adsorption is a chemisorption process with the presence of a monolayer mechanism. In addition, the deduced thermodynamic parameters showed the endothermic (ΔH(0) > 0), feasible, and spontaneous (ΔG(0) < 0) nature of the adsorption processes studied.
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spelling pubmed-98621242023-01-22 Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions Lavado-Meza, Carmencita De la Cruz-Cerrón, Leonel Asencios, Yvan J.O. Marcos, Francielle Candian Firmino Dávalos-Prado, Juan Z. Molecules Article Arabica-coffee and Theobroma-cocoa agroindustrial wastes were treated with NaOH and characterized to efficiently remove Pb(II) from the aqueous media. The maximum Pb(II) adsorption capacities, q(max), of Arabica-coffee (WCAM) and Theobroma-cocoa (WCTM) biosorbents (q(max) = 303.0 and 223.1 mg·g(−1), respectively) were almost twice that of the corresponding untreated wastes and were higher than those of other similar agro-industrial biosorbents reported in the literature. Structural, chemical, and morphological characterization were performed by FT-IR, SEM/EDX, and point of zero charge (pH(PZC)) measurements. Both the WCAM and WCTM biosorbents showed typical uneven and rough cracked surfaces including the OH, C=O, COH, and C-O-C functional adsorbing groups. The optimal Pb(II) adsorption, reaching a high removal efficiency %R (>90%), occurred at a pH between 4 and 5 with a biosorbent dose of 2 g·L(−1). The experimental data for Pb(II) adsorption on WACM and WCTM were well fitted with the Langmuir-isotherm and pseudo-second order kinetic models. These indicated that Pb(II) adsorption is a chemisorption process with the presence of a monolayer mechanism. In addition, the deduced thermodynamic parameters showed the endothermic (ΔH(0) > 0), feasible, and spontaneous (ΔG(0) < 0) nature of the adsorption processes studied. MDPI 2023-01-10 /pmc/articles/PMC9862124/ /pubmed/36677741 http://dx.doi.org/10.3390/molecules28020683 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lavado-Meza, Carmencita
De la Cruz-Cerrón, Leonel
Asencios, Yvan J.O.
Marcos, Francielle Candian Firmino
Dávalos-Prado, Juan Z.
Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions
title Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions
title_full Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions
title_fullStr Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions
title_full_unstemmed Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions
title_short Alkaline Modification of Arabica-Coffee and Theobroma-Cocoa Agroindustrial Waste for Effective Removal of Pb(II) from Aqueous Solutions
title_sort alkaline modification of arabica-coffee and theobroma-cocoa agroindustrial waste for effective removal of pb(ii) from aqueous solutions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862124/
https://www.ncbi.nlm.nih.gov/pubmed/36677741
http://dx.doi.org/10.3390/molecules28020683
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