Degradation of Brill Red 10B Textile Dye: A Comparative Study of Coconut Husk Biochar Immobilized Bacteria and Eichhornia crassipes- Mediated Ag/ZnO Nanoparticles
Srimurali S, Sowmiya K, Shri Ranjini S, Rajesh Kannan V, Sumathi C. SamiappanAbstract
This study investigates the degradation of Brilliant Red 10B dye in textile wastewater using four sustainable treatment strategies: Bacillus subtilis-mediated biodegradation, coconut husk biochar adsorption, immobilized bacterial systems, and green-synthesized Ag/ZnO nanoparticles. Seven bacterial isolates were cultured from textile wastewater, characterized, and the BRDB 3 isolate achieved up to 75.2% dye degradation under optimized conditions. Biochar prepared from coconut husk by pyrolysis at 600 °C removed 100% of dye at low concentrations within one hour. Immobilized BRDB 3 and BRDB 4 resulted in 85.07% and 78.85% degradation, respectively. Ag/ZnO nanoparticles synthesized with Eichhornia crassipes extract exhibited rapid dye degradation, reaching 80% in 20 min under sunlight. CHB was the most effective adsorbent (91.6% removal) when used on real textile wastewater, followed by immobilized BRDB 3 (83.27%), and Ag/ZnO NPs had intermediate performance (32.11%). The GC–MS analysis showed that Ag/ZnO NPs acted as extensive molecular breakers, which generated a range of low-molecular-weight compounds. In contrast, Coconut husk biochar and immobilized bacterial treatments yielded high degradation rates but left some persistent high-molecular-weight residues. These findings indicate the moderately good catalytic performance of the Ag/ZnO nanoparticles and establish the importance of combining the biological and adsorptive frameworks to achieve effective textile wastewater purification.