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Utilization of Euryale ferox Salisbury seed shell for removal of basic fuchsin dye from water: equilibrium and kinetics investigation

机译:利用 Euryale ferox Salisbury种子壳去除水中的碱性品红染料:平衡和动力学研究

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摘要

Euryale ferox Salisbury (E. ferox) is an environmentally and economically important wetland macrophyte. This paper investigates the adsorption of a carcinogenic dye, basic fuchsin in the aqueous phase onto the hard shell of Euryale ferox seeds so as to establish the thrown away residue as a novel, efficient, bio-friendly and economically low-cost alternative adsorbent against other expensive adsorbents. Characterization of the bioadsorbent was carried out by TGA, SEM, FTIR and Zetasizer analyses. Zeta potential analysis showed good stability of the biomaterial around neutral pH. The operating variables such as adsorbent amount, adsorbate concentration, contact time, pH and temperature were optimized in a batch system. The maximum biosorption capacity of E. ferox was found to be 19.48 mg g?1 which could remove as much as 97.4% of the dye from an aqueous solution of concentration 40 mg L?1 at 298 K. Isothermal and kinetic data fitted best to Freundlich and pseudo second order models respectively. The thermodynamic study revealed the exothermic and spontaneous nature of the adsorption process.
机译: Euryale ferox Salisbury( E。ferox )是一种对环境和经济具有重要意义的湿地大型植物。本文研究了一种致癌染料碱性品红在水相中的吸附在 Euryale ferox 种子的硬壳上的方法,从而建立了一种废弃的残留物,该残留物是一种新颖,高效,生物友好且经济的相对于其他昂贵吸附剂的低成本替代吸附剂。通过TGA,SEM,FTIR和Zetasizer分析进行生物吸附剂的表征。 Zeta电势分析表明该生物材料在中性pH附近具有良好的稳定性。在分批系统中优化了操作变量,例如吸附剂的量,吸附物的浓度,接触时间,pH和温度。 E的最大生物吸附能力。发现ferox 为19.48 mg g ?1 ,可以从浓度为40 mg L ?1 在298 K下。等温和动力学数据分别最适合Freundlich模型和伪二阶模型。热力学研究揭示了吸附过程的放热和自发性质。

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