Jay R. Patel, Nikita J. Ambegaonkar, Ronak Patel, T.S. Rajaraman, Pratik Patel, P.B. Patel, Naina H. Tahilramani, Sunil R. Patel
Sugarcane bagasse is generated in huge quantities worldwide which can be converted into high-end valuable products. A major portion of bagasse is converted into Sugarcane Bagasse Ash (SCBA) by burning it at a high temperature in industries. Proper utilization of SCBA instead of landfilling can reduce the harmful environmental effects. In this paper, application of bagasse ash as a green adsorbent for the removal of Fuchsin Basic (FB) dye was investigated. SCBA was characterized using XRD, FTIR, SEM-EDS, BET for insights into its properties. Parameters like contact time, pH, temperature, initial concentration and adsorbent dosage were varied and their impact on dye removal was studied. A maximum removal around 78% (for 10 mg/L dye concentration, 3 g/L adsorbent dosage, 7 pH, 60 min and 25 °C) was achieved using SCBA. Adsorption equilibrium was investigated and Langmuir model fitted best (q max = 9.1706 mg/g and k l = 0.1690 L/mg, R 2 = 0.9939) as compared to Freundlich and Temkin models. Additionally, kinetics studies revealed that Pseudo second order (R 2 = 0.9998) was superior over other kinetic models. Thermodynamic study confirmed the endothermic adsorption of FB on SCBA and FB removal of 50% was observed even after four cycles indicating reusability of adsorbent after regeneration. Use of SCBA directly as adsorbent without excessive pretreatment promises to be an attractive option.