Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design

Water depollution via adsorption is an energy-efficient technique that uses activated carbon produced from walnut shells to remove different pollutants. Our research integrates theoretical and experimental approaches to comprehensively understand the subject. By analyzing organic functional groups i...

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Main Authors: Hicham Yazid, Abdelali Grich, Lahoucine Bahsis, Abdelmajid Regti, Mamoune El Himri, Mohammadine El Haddad
Format: Article
Language:English
Published: Elsevier 2024-02-01
Series:Results in Surfaces and Interfaces
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2666845924000126
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author Hicham Yazid
Abdelali Grich
Lahoucine Bahsis
Abdelmajid Regti
Mamoune El Himri
Mohammadine El Haddad
author_facet Hicham Yazid
Abdelali Grich
Lahoucine Bahsis
Abdelmajid Regti
Mamoune El Himri
Mohammadine El Haddad
author_sort Hicham Yazid
collection DOAJ
description Water depollution via adsorption is an energy-efficient technique that uses activated carbon produced from walnut shells to remove different pollutants. Our research integrates theoretical and experimental approaches to comprehensively understand the subject. By analyzing organic functional groups in the walnut shell-derived activated carbon (AC-Ws), evaluating adsorption performance, employing DFT analysis, and optimizing conditions, we provide valuable insights into the application of AC-Ws for removing pesticide pollutants from wastewater. The properties of this activated carbon (AC-Ws) are identified by techniques such as XRD, FTIR, SEM/EDX, pHzpc, and Boehm titration. A response surface methodology (RSM) has been utilized to develop an adsorption experiment for aqueous solutions of two herbicides, 2,4,5-trichlorophenoxyacetic acid (2.4.5-T), and 2,4-Dichlorophenoxyacetic acid (2,4-D). Abbreviations for technical terms will be explained when first used, and objective language will be used throughout. Grammar and spelling will conform to British standards. The experiment examined the removal of the herbicides based on three independent variables; pH, AC-Ws dosage, and temperature, within specific ranges (pH: 4–10, AC-Ws dosage: 0.1–0.3 g/L, temperature: 20–40 °C). The research conducted 17 experiments using Design-Expert software. Optimal conditions included pH 4 and AC-Ws dosage of 0.3 g/L for 2.4.5-T and pH 5 and AC-Ws dosage of 0.1 g/L for 2,4-D. These conditions demonstrated removal efficiency of 98% and desirability function of 1.000 for 2.4.5-T and 92% and desirability function of 1.000 for 2,4-D. The findings suggest that the adsorption process was thermodynamically favorable and exothermic. The experimental data was described accurately by the pseudo-second order kinetic model, and the Freundlich isotherm model showed good alignment with the equilibrium data. Using the Boehm method, organic functions were identified on the adsorbent's surface, and the density functional theory (DFT) was applied to evaluate the adsorption mechanism on AC-Ws surface sites.
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spelling doaj.art-9a54e4356ddb463d9263f7d40561ad9b2024-03-14T06:16:44ZengElsevierResults in Surfaces and Interfaces2666-84592024-02-0114100192Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite designHicham Yazid0Abdelali Grich1Lahoucine Bahsis2Abdelmajid Regti3Mamoune El Himri4Mohammadine El Haddad5Corresponding author.; Laboratory Analytical and Molecular Chemistry, Faculty Poly Disciplinary of Safi, BP 4162, Safi, 46 000, MoroccoLaboratory Analytical and Molecular Chemistry, Faculty Poly Disciplinary of Safi, BP 4162, Safi, 46 000, MoroccoLaboratory Analytical and Molecular Chemistry, Faculty Poly Disciplinary of Safi, BP 4162, Safi, 46 000, MoroccoLaboratory Analytical and Molecular Chemistry, Faculty Poly Disciplinary of Safi, BP 4162, Safi, 46 000, MoroccoLaboratory Analytical and Molecular Chemistry, Faculty Poly Disciplinary of Safi, BP 4162, Safi, 46 000, MoroccoCorresponding author.; Laboratory Analytical and Molecular Chemistry, Faculty Poly Disciplinary of Safi, BP 4162, Safi, 46 000, MoroccoWater depollution via adsorption is an energy-efficient technique that uses activated carbon produced from walnut shells to remove different pollutants. Our research integrates theoretical and experimental approaches to comprehensively understand the subject. By analyzing organic functional groups in the walnut shell-derived activated carbon (AC-Ws), evaluating adsorption performance, employing DFT analysis, and optimizing conditions, we provide valuable insights into the application of AC-Ws for removing pesticide pollutants from wastewater. The properties of this activated carbon (AC-Ws) are identified by techniques such as XRD, FTIR, SEM/EDX, pHzpc, and Boehm titration. A response surface methodology (RSM) has been utilized to develop an adsorption experiment for aqueous solutions of two herbicides, 2,4,5-trichlorophenoxyacetic acid (2.4.5-T), and 2,4-Dichlorophenoxyacetic acid (2,4-D). Abbreviations for technical terms will be explained when first used, and objective language will be used throughout. Grammar and spelling will conform to British standards. The experiment examined the removal of the herbicides based on three independent variables; pH, AC-Ws dosage, and temperature, within specific ranges (pH: 4–10, AC-Ws dosage: 0.1–0.3 g/L, temperature: 20–40 °C). The research conducted 17 experiments using Design-Expert software. Optimal conditions included pH 4 and AC-Ws dosage of 0.3 g/L for 2.4.5-T and pH 5 and AC-Ws dosage of 0.1 g/L for 2,4-D. These conditions demonstrated removal efficiency of 98% and desirability function of 1.000 for 2.4.5-T and 92% and desirability function of 1.000 for 2,4-D. The findings suggest that the adsorption process was thermodynamically favorable and exothermic. The experimental data was described accurately by the pseudo-second order kinetic model, and the Freundlich isotherm model showed good alignment with the equilibrium data. Using the Boehm method, organic functions were identified on the adsorbent's surface, and the density functional theory (DFT) was applied to evaluate the adsorption mechanism on AC-Ws surface sites.http://www.sciencedirect.com/science/article/pii/S2666845924000126AdsorptionWalnut shellsActivated carbonOptimization2,4-D/2,4,5-TDFT
spellingShingle Hicham Yazid
Abdelali Grich
Lahoucine Bahsis
Abdelmajid Regti
Mamoune El Himri
Mohammadine El Haddad
Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design
Results in Surfaces and Interfaces
Adsorption
Walnut shells
Activated carbon
Optimization
2,4-D/2,4,5-T
DFT
title Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design
title_full Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design
title_fullStr Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design
title_full_unstemmed Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design
title_short Exploring and studying the adsorption mechanisms of the herbicides 2,4,5-T and 2,4-D on activated carbon from walnut shells, using theoretical DFT analyses and a central composite design
title_sort exploring and studying the adsorption mechanisms of the herbicides 2 4 5 t and 2 4 d on activated carbon from walnut shells using theoretical dft analyses and a central composite design
topic Adsorption
Walnut shells
Activated carbon
Optimization
2,4-D/2,4,5-T
DFT
url http://www.sciencedirect.com/science/article/pii/S2666845924000126
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