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Equilibrium, kinetic and thermodynamic studies on the biosorption of reactive acid dye on Enteromorpha flexuosa and Gracilaria corticata

机译:活性酸染料在弯曲小肠and和江Gra中生物吸附的平衡,动力学和热力学研究

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Purpose Biosorption is an emerging, eco-friendly and economical method for treating the wastewater effluents. Compared to many other biological materials, algae biomass proved to be the better biosorbent due to the presence of cell wall polymers in them. Methods Algal biomasses namely Enteromorpha flexuosa and Gracilaria corticata were dried, crushed and used as biosorbents: Ponceau S, a diazo dye was used as a model adsorbate for the biosorption studies. The biosorbents were characterized by Scanning Electron Microscopy, FT-IR and zero point charge. Batch studies were performed by varying pH, biosorbent dosage and initial dye concentrations. Adsorption isotherms, kinetic and thermodynamic analyses were carried out. The effect of electrolytes was also studied. Batch desorption studies were also carried out using various reagents.Results Isotherm data were tested with Langmuir and Freundlich isotherm models and the results suggested that the Freundlich isotherm fitted the data well. Kinetic studies were performed with varying initial dye concentrations and the data were incorporated with pseudo first-order and pseudo second-order kinetic equations and was found that the studied biosorption processes followed pseudo second-order kinetic equation. Thermodynamic parameters were evaluated at three different temperatures 293 K, 300 K and 313 K. About 95% of the dye could be desorbed from both the biosorbents.Conclusion Both the algal biomasses had heterogeneous surfaces and followed pseudo second-order chemical kinetics. Thermodynamic parameters proved that the biosorption by both the biomasses were spontaneous, feasible and endothermic processes. Desorption studies proved the worth of the algal biomasses as biosorbents in industrial level.
机译:目的生物吸附是一种新兴的,环保且经济的方法,用于处理废水。与许多其他生物材料相比,由于藻类生物质中存在细胞壁聚合物,因此它们被证明是更好的生物吸附剂。方法干燥,粉碎藻类生物量即弯曲小肠虫(Enteromorpha flexuosa)和皮质cil(Gracilaria corticata)用作生物吸附剂:重氮染料Ponceau S被用作模型吸附剂进行生物吸附研究。通过扫描电子显微镜,FT-IR和零点电荷对生物吸附剂进行表征。通过改变pH,生物吸附剂剂量和初始染料浓度进行批量研究。进行吸附等温线,动力学和热力学分析。还研究了电解质的作用。结果还用Langmuir和Freundlich等温线模型测试了等温线数据,结果表明Freundlich等温线很好地拟合了数据。动力学研究是在不同的初始染料浓度下进行的,并将数据与伪一级和伪二级动力学方程结合,发现所研究的生物吸附过程遵循伪二级动力学方程。在三个不同的温度293 K,300 K和313 K下评估了热力学参数。两种生物吸附剂均可解吸约95%的染料。结论两种藻类生物质均具有非均质表面,并遵循伪二级化学动力学。热力学参数证明两种生物质的生物吸附是自发的,可行的和吸热的。解吸研究证明了藻类生物质作为工业级生物吸附剂的价值。

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