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Biosorption of Nickel(II) from Aqueous Solution by the Fungal Mat of Trametes versicolor (Rainbow) Biomass: Equilibrium, Kinetics, and Thermodynamic Studies

机译:云芝(彩虹)生物质真菌垫从水溶液中吸附镍(Ⅱ)的研究:平衡,动力学和热力学研究

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摘要

This study investigates the equilibrium, kinetics and thermodynamics of Nickel(Ⅱ) biosorption from aqueous solution by the fungal mat of Trametes versicolor (rainbow) biomass. The optimum biosorption conditions like pH, contact time, biomass dosage, initial metal ion concentration and temperaturewere determined in the batch method. The biosorbent was characterized by FTIR, SEM and BET surface area analysis. The experimental data were analyzed in terms of pseudo-first-order, pseudo-second-order and intraparticle diffusion kinetic models, further it was observed that the biosorption process of Ni(Ⅱ) ions closely followed pseudo-second-order kinetics. The equilibrium data of Ni(Ⅱ) ions at 303, 313, and 323 K were fitted to the Langmuir and Freundlich isotherm models. Langmuir isotherm provided a better fit to the equilibrium data andthe maximum monolayer biosorption capacity of the T. versicolor(rambow) biomass for Ni(II) was 212.5 mg/g at pH 4.0. The calculated thermodynamic parameters, △G°, △H°, and △S°, demonstrated that the biosorption of Ni(Ⅱ) ions onto the T. versicolor (rainbow) biomass was feasible, spontaneous and endothermic at 303 ~ 323 K. The performance of the proposed fungal biosorbent was also compared with that of many other reported sorbents for Nickel(Ⅱ) removal and it was observed that the proposed biosorbent is effective in terms of its high sorption capacity.
机译:本研究研究了Trametes versicolor(rainbow)生物量真菌垫对水溶液中镍(Ⅱ)生物吸附的平衡,动力学和热力学。间歇法确定了最佳的生物吸附条件,如pH,接触时间,生物量,初始金属离子浓度和温度。通过FTIR,SEM和BET表面积分析来表征生物吸附剂。根据拟一级,拟二级和颗粒内扩散动力学模型对实验数据进行了分析,进一步观察到Ni(Ⅱ)离子的生物吸附过程与拟二级动力学密切相关。将Ni(Ⅱ)离子在303、313和323 K时的平衡数据拟合到Langmuir和Freundlich等温模型。 Langmuir等温线提供了更好的平衡数据,并且在pH 4.0时,杂色锦葵生物对Ni(II)的最大单层生物吸附能力为212.5 mg / g。计算得出的热力学参数△G°,△H°和△S°证明Ni(Ⅱ)离子在杂色菊(彩虹)生物量上的生物吸附是可行的,自发的并且在303〜323 K下吸热。还对拟议的真菌生物吸附剂的性能进行了比较,并与许多其他已报道的用于去除镍(Ⅱ)的吸附剂进行了比较,并观察到,拟议的生物吸附剂的高吸附能力是有效的。

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