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Removal of As(V) and As(III) from water with a PEI-modified fungal biomass

机译:用PEI修饰的真菌生物质从水中去除As(V)和As(III)

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A novel biosorbent was prepared by chemically grafting polyethylenimine (PEI) on the fungal biomass of Penicillium chrysogenum through a two-step reaction. The PEI-modified biomass was found to possess zero zeta potential at pH 10.4. Owing to the protonation of amine groups on the biosorbent surface, the biosorbent is favourable for the removal of anionic arsenic species in water. The sorption capacity for As(V) at pH 3 increased by 5.7-fold after surface modification. The sorption performances including kinetics and isotherm were investigated and several models were used to describe the experimental data. The pseudo-second-order model described the kinetic data better, while the Langmuir equation was the better model to fit the isotherm data. The corresponding thermodynamic parameters for As(V) and As(III) sorption were also calculated.
机译:通过两步反应将聚乙烯亚胺(PEI)化学接枝到产黄青霉的真菌生物质上,制备了一种新型生物吸附剂。发现PEI修饰的生物质在pH 10.4下具有零ζ电势。由于生物吸附剂表面上胺基的质子化,生物吸附剂有利于去除水中的阴离子砷。表面改性后,在pH 3下As(V)的吸附容量增加了5.7倍。研究了包括动力学和等温线的吸附性能,并使用几种模型描述了实验数据。伪二阶模型较好地描述了动力学数据,而Langmuir方程是拟合等温线数据的更好模型。还计算了As(V)和As(III)吸附的相应热力学参数。

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