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Preparation of Breadfruit Leaf Biochar for the Application of Congo Red Dye Removal from Aqueous Solution and Optimization of Factors by RSM-BBD

M. Laxmi Deepak BhatluDepartment of Chemical EngineeringKPR Institute of Engineering and TechnologyCoimbatoreTamil Nadu 641407IndiaP. S. AthiraBuckman Laboratories (India) Pvt. Ltd.ChennaiTamil Nadu 600031IndiaN. JayanDepartment of Chemical EngineeringTexas Tech UniversityLubbockTX 79409USADebabrata BarikMilon Selvam DennisonDepartment of Mechanical EngineeringKampala International UniversityWestern CampusKampalaUganda20000
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In this work, biochar produced from breadfruit leaves was utilized to remove the toxic Congo red dye. XRD, FTIR, and FESEM-EDX were implemented to characterize the biochar. Response surface methodology (RSM) and the Box-Behnken design (BBD) techniques were used to evaluate Congo red’s optimum adsorption efficiency. The adsorption of Congo red was studied by varying dye concentrations (5–50 mg/L), times (30–240 min), pH (6–9), and dosages (0.5–2 g/100 mL). X-ray diffractometer results show that the structure of biochar is amorphous. The biochar exhibited unbounded OH, aliphatic CH group, and C=O stretch, as shown by the band peaks at 3340 cm −1 , 2924 cm −1 , and 1625 cm −1 intensities. RSM-BBD design results showed maximum removal efficiency of 99.96% for Congo red at pH 6.37, dye concentration 45 mg/L, time 105 min, and dosage 1.92 g, respectively. The adsorption of Congo red by biochar was successfully modeled using the Langmuir model and pseudo-second-order model. The biochar produced from breadfruit leaves exhibited a high adsorption capacity of 17.81 mg/g for Congo red adsorption. It suggests that the adsorption is both homogenous monolayer and physicochemical.

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