1. Valorization of algal biomass to synthesize heterogeneous gC 3 N 4 -Biochar photocatalyst for the treatment of industrial wastewater using photocatalysis-persulfate oxidation process.
- Author
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Shafique A, Ayub HMU, Iqbal J, Hamid S, Ashraf F, Rehman MSU, Boukhari S, Habila MA, Nawaz A, and Fazal T
- Abstract
Textile wastewater, heavily contaminated with organic dyes, is generating severe problems to environment and human health. The implementation of gC
3 N4 with biochar (gC3 N4 -BC) for the treatment of textile wastewater is less effective due to the limited adsorption capacity and slower degradation kinetics. To tackle these problems, peroxydisulfate (PDS) is integrated with gC3 N4 -BC photocatalyst to enhance the process efficiency and kinetics. The synthesized gC3 N4 -BC-5 composite shows higher separation of charge carriers, light absorbance, and lower energy bandgap (2.62 eV). The results of photocatalytic degradation and rate constant are enhanced up to 99.9 % and 0.041 min-1 using gC3 N4 -BC-5 with PDS as compared to without PDS (96.8 % and 0.028 min-1 , respectively). The radicals (SO4 -• ,O2 -• , and OH• ) are responsible to improve the degradation process efficiency and kinetics. The reusability of optimized sample indicates that gC3 N4 -BC-5 is stable and effective up to five cycles. The gC3 N4 -BC-5 composite attains highest adsorption (70.9 %) when compared to BC (62.3 %) and pure gC3 N4 (27.1 %). The well-fitted models of adsorption (Pseudo-Second-Order and Freundlich) confirm the favorable, chemical, and multilayered adsorption process. The coupling of gC3 N4 -BC-5 with PDS is effective, efficient, and stable process to enhance the kinetics and degradation of textile wastewater., Competing Interests: Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper., (Copyright © 2024. Published by Elsevier Ltd.)- Published
- 2024
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