Trinary Component Adsorption of Methylene Blue, Methyl Orange, and Methyl Red from Aqueous Solution Using TiO2/Activated Carbon

Author:

Tu Nguyen Thi Thanh1ORCID,Thanh Tran Si23,Quy Phan Tu4ORCID,Ha Tran Thi Minh4,Thu Phan Thi Kim4,Bich Nguyen Hong2,Sơn Le Van Thanh5,Nguyen Vo Thang5,Nhiem Dao Ngoc6ORCID,Lieu Pham Khac7ORCID,Khieu Dinh Quang2ORCID

Affiliation:

1. Faculty of Applied Technology, School of Engineering and Technology, Van Lang University, 700000, Vietnam

2. University of Sciences, Hue University, 530000, Vietnam

3. Dak Nong Department of Education and Training, 640000, Vietnam

4. Tay Nguyen University, 630000, Vietnam

5. University of Education and Science, The University of Danang, 500000, Vietnam

6. Institute of Materials Sciences, VAST, 100000, Vietnam

7. Hue University, 530000, Vietnam

Abstract

Porous TiO2/activated carbon (AC) material was synthesized by grafting peroxo-hydro titanium complexes to rice husk-derived activated carbon. It was found that the morphology of TiO2/AC consists of TiO2 fine particles highly dispersed on the AC matrix. The obtained TiO2/AC composites with high surface area and a red shift exhibit an excellent adsorption performance in both single and trinary system toward methylene blue (MB), methyl orange (MO), and methyl red (MR). The isotherm models including extended Langmuir, P-factor, ideal adsorbed solution theory (IAST) for Langmuir, Freundlich, and Sips models were applied to study the adsorption equilibrium data of trinary solutions. It was found that IAST for Freundlich and Langmuir models were the most suitable one to describe the adsorption of the three dyes on TiO2/AC material. The high maximum adsorption capacities (mmol g-1) in single/trinary mixture were found as 0.452/0.340 for MB; 0.329/0.321 for MO; and 0.806/2.04 for MR. Moreover, the recyclability experiments showed that the adsorbent could be reused through photocatalytic self-cleaning for at least three cycles with stable capacity. Thus, the TiO2/AC can be effectively employed for the removal of dyes from industrial textile wastewater.

Funder

Hue University

Publisher

SAGE Publications

Subject

Surfaces and Interfaces,General Chemical Engineering,General Chemistry

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