Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel

In this study, the modelling and optimization studies of the carcinogenic acid dye sorption from aqueous solutions were carried out using the Factor Design Methodology. This methodology provides a predictive model of the response in the range of variables studied and determines the optimum condition...

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Main Authors: Aziam Rachid, Boukarma Latifa, Zaghloul Ahmed, Benhiti Ridouan, Eddaoudi Elhassane, Zerbet Mohamed, Chiban Mohamed
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/16/e3sconf_joe2021_02005.pdf
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spelling doaj-c31135708eb54bb68be58d5404a481942021-04-06T13:46:57ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012400200510.1051/e3sconf/202124002005e3sconf_joe2021_02005Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peelAziam Rachid0Boukarma Latifa1Zaghloul Ahmed2Benhiti Ridouan3Eddaoudi Elhassane4Zerbet Mohamed5Chiban Mohamed6LACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityLACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityLACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityLACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityLACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityLACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityLACAPE, Department of Chemistry, Faculty of Science, Ibn Zohr UniversityIn this study, the modelling and optimization studies of the carcinogenic acid dye sorption from aqueous solutions were carried out using the Factor Design Methodology. This methodology provides a predictive model of the response in the range of variables studied and determines the optimum conditions for the best performance. The sorption of acid dye AB113 on Moroccan prickly pear cactus peel (MPPCP) was chosen as a case study of a typical removal process. Minitab17 software was used to study the effects of adsorption parameters, including initial dye concentration, solution pH, adsorbent dose, contact time, and temperature. Analysis of variance (ANOVA) was used to evaluate the experimental results obtained. The studied parameters at two levels (-1 and +1) were coded as X1, X2, X3, X4 and X5, consecutively. The optimum conditions obtained for the adsorption of AB113 dye were: 1 g for the mass of MPPCP, 6 for the initial solution pH, 180 min for the contact time and 20 mg/L for the initial dye concentration. The results show that the model is well adapted to the experimental data, indicating the suitability of the model and the success of the factorial design methodology in optimizing the adsorption conditions.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/16/e3sconf_joe2021_02005.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Aziam Rachid
Boukarma Latifa
Zaghloul Ahmed
Benhiti Ridouan
Eddaoudi Elhassane
Zerbet Mohamed
Chiban Mohamed
spellingShingle Aziam Rachid
Boukarma Latifa
Zaghloul Ahmed
Benhiti Ridouan
Eddaoudi Elhassane
Zerbet Mohamed
Chiban Mohamed
Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel
E3S Web of Conferences
author_facet Aziam Rachid
Boukarma Latifa
Zaghloul Ahmed
Benhiti Ridouan
Eddaoudi Elhassane
Zerbet Mohamed
Chiban Mohamed
author_sort Aziam Rachid
title Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel
title_short Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel
title_full Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel
title_fullStr Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel
title_full_unstemmed Factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto Moroccan prickly pear cactus peel
title_sort factor design methodology for modelling and optimization of carcinogenic acid dye adsorption onto moroccan prickly pear cactus peel
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description In this study, the modelling and optimization studies of the carcinogenic acid dye sorption from aqueous solutions were carried out using the Factor Design Methodology. This methodology provides a predictive model of the response in the range of variables studied and determines the optimum conditions for the best performance. The sorption of acid dye AB113 on Moroccan prickly pear cactus peel (MPPCP) was chosen as a case study of a typical removal process. Minitab17 software was used to study the effects of adsorption parameters, including initial dye concentration, solution pH, adsorbent dose, contact time, and temperature. Analysis of variance (ANOVA) was used to evaluate the experimental results obtained. The studied parameters at two levels (-1 and +1) were coded as X1, X2, X3, X4 and X5, consecutively. The optimum conditions obtained for the adsorption of AB113 dye were: 1 g for the mass of MPPCP, 6 for the initial solution pH, 180 min for the contact time and 20 mg/L for the initial dye concentration. The results show that the model is well adapted to the experimental data, indicating the suitability of the model and the success of the factorial design methodology in optimizing the adsorption conditions.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/16/e3sconf_joe2021_02005.pdf
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