Adsorption Isotherm and Kinetic Modeling of the Congo Red (CR) and Indigo Carmine (IC) Dyes Removal onto Novel Bentonite Hybrid Material

Author:

Guezzen Brahim12,Ech‐Chergui Abdelkader Nebatti3,Elaziouti Abdelkader4,Demey Hary5,Zoukel Abdelhalim67,Didi Mohamed Amine1,Boudia Rafik Abdelkrim8,Adjdir Mehdi98ORCID

Affiliation:

1. Laboratory of Separation and Purification Technology Department of Chemistry Faculty of Sciences Tlemcen University Box 119 Algeria

2. Department of engineering process Faculty of Technology University of Saïda Dr. Tahar Moulay 20000 Saida Algeria

3. Laboratory of Materials Sciences and Applications (LSMA) Faculty of Sciences and Technology University of AinTemouchent Belhadj Bouchaib AinTemouchent Algeria

4. Laboratoire des Sciences Technologie et Génie des Procédés – LSTGP Université des sciences et de la technologie d'Oran Mohammed Boudiaf – USTO M.B. BP 1505 El M'naouar Oran Algérie

5. CEA LITEN DTCH Laboratoire Réacteurs et Procédés (LRP) University Grenoble Alpes F-38000 Grenoble France

6. LaboratoryPhysico-Chemistryof Materials Laghouat University POBox37 03000 Laghouat Algeria

7. Technical Platformof Physico-Chemical Analysis (PTAPC-Laghouat-CRAPC) POBox37G 03000 Laghouat Algeria

8. Laboratory of Applied Organic Synthesis Faculty of Exact and Applied Sciences University Oran1 Ahmed Ben Bella BP 1524 El M'Naouer 31000 Oran Algeria

9. Department of Electronics Faculty of Technology University of Saïda Dr. Tahar Moulay 20000 Saida Algeria

Abstract

AbstractThe present study focuses on investigating the adsorption characteristics of anionic Congo Red (CR) and Indigo Carmine (IC) dyes using hexadecyltrimethyl ammonium bromide‐modified Bentonite (HDTMA‐Bentonite) with varying loading amounts. The removal effectiveness of anionic dyes was examined as a function of the HDTMA+ loaded amount, contact time, initial concentration, and adsorbent dosage. The XRD data revealed that the interlayer spacing of Bentonite increased from 1.42 to 1.98 nm. The FTIR approach was used to analyze the surface modification of hybrid Bentonite; however, the hydrophobic nature of hybrid Bentonite was confirmed by ATG measurements. A kinetic investigation of sorption was done. The results demonstrated that the pseudo‐second‐order model fitted the adsorption kinetic data better than the pseudo‐first‐order rate equation, and that the amount of HDTMA+ loaded affects the adsorption capacity. According to the Weber‐Morris intra‐particle diffusion equation, the CR and IC dyes diffused faster as the amount of added cationic surfactant rose from 0 % to 100 % of the CEC value. Temkin and Langmuir equation is found to best represent the equilibrium data for two dye‐HDTMA‐B systems. Hybrid Bentonite was regenerated by NaOH, and reused without a significant decrease in its sorption efficiency, supporting the prosperity of its utilization as an effective adsorbent against toxic dyes from wastewater.

Publisher

Wiley

Subject

General Chemistry

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