IAD Index of Academic Documents
  • Home Page
  • About
    • About Izmir Academy Association
    • About IAD Index
    • IAD Team
    • IAD Logos and Links
    • Policies
    • Contact
  • Submit A Journal
  • Submit A Conference
  • Submit Paper/Book
    • Submit a Preprint
    • Submit a Book
  • Contact
  • Turkish Journal of Chemistry
  • Volume:39 Issue:4
  • Optimization of the adsorption of a textile dye onto nanoclay using a central composite design

Optimization of the adsorption of a textile dye onto nanoclay using a central composite design

Authors : Aydin HASSANI, Murat KIRANŞAN, Reza Darvishi Cheshmeh SOLTANI, Alireza KHATAEE, Semra KARACA
Pages : 734-749
Doi:10.3906/kim-1412-64
View : 17 | Download : 10
Publication Date : 0000-00-00
Article Type : Research Paper
Abstract :The main aim of this study was to evaluate the efficacy of montmorillonite clay for the adsorption of C.I. Basic Yellow 2 insert ignore into journalissuearticles values(BY2); dye from aqueous media. The experimental results were processed by response surface methodology based on a central composite design insert ignore into journalissuearticles values(CCD);. The effect of four main variables, including initial BY2 concentration, adsorbent dosage, reaction time, and temperature on the removal of BY2 was evaluated by the model. The accuracy of the model and regression coefficients was appraised by employing analysis of variance. The results demonstrated a good agreement between the predicted values obtained by the model and the experimental values insert ignore into journalissuearticles values(R$^{2\, }$= 0.972);. Accordingly, the maximum BY2 removal of 97.32% was achieved with an initial BY2 concentration of 60 mg/L, adsorbent dosage of 0.6 g/L, reaction time of 10 min, and initial temperature of 25 $^{\circ}$C. The results demonstrated the high efficiency of montmorillonite clay for the adsorption of BY2 dye from aqueous solution based on the data processed by CCD approach. The adsorbent dosage was found to be the key factor that controlled dye adsorption. The adsorption kinetic and isotherm were also investigated. The rate of adsorption showed the best fit with the pseudo-second order model insert ignore into journalissuearticles values(R$^{2}$ = 1);. The results of the isotherm study fit the Freundlich model insert ignore into journalissuearticles values(R$^{2} >$ 0.9);. The physicochemical properties of the sample were determined by XRF, XRD, FT-IR, and N$_{2}$ adsorption--desorption.
Keywords : Adsorption, central composite design, experimental design, montmorillonite K10, nanoclay

ORIGINAL ARTICLE URL
VIEW PAPER (PDF)

* There may have been changes in the journal, article,conference, book, preprint etc. informations. Therefore, it would be appropriate to follow the information on the official page of the source. The information here is shared for informational purposes. IAD is not responsible for incorrect or missing information.


Index of Academic Documents
İzmir Academy Association
CopyRight © 2023-2025