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Study of biosorption of rare earth metals (La, Nd, Eu, Gd) by Sargassum sp. biomass in batch systems: physicochemical evaluation of kinetics and adsorption models

机译:Sargassum SP的稀土金属(La,Nd,Eu,Gd)生物吸附研究。 BioMass分批系统:物理化学评估动力学和吸附模型

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This work evaluated kinetic and adsorption physicochemical models for the biosorption process of lanthanum, neodymium, europium, and gadolinium by Sargassum sp. in batch systems. The results showed: (a) the pseudo-second order kinetic model was the best approximation for the experimental data with the metal adsorption initial velocity parameter in 0.042-0.055 mmol.g~(-1).min~(-1) (La < Nd < Gd < Eu);;(b) the Langmuir adsorption model presented adequate correlation with maximum metal uptake at 0.60-0.70 mmol g~(-1) (Eu < La < Gd < Nd) and the metal-biomass affinity parameter showed distinct values (Gd < Nd < Eu < La: 183.1, 192.5, 678.3, and 837.3 L g~(-1), respectively);;and (c) preliminarily, the kinetics and adsorption evaluation did not reveal a well-defined metal selectivity behavior for the RE biosorption in Sargassum sp., but they indicate a possible partition among RE studied.
机译:该作品评估了Sargassum sp的镧,钕,铕和钆和钆的生物吸附过程的动力学和吸附物理化学模型。在批处理系统中。结果表明:(a)伪二阶动力学模型是0.042-0.055mmol.min〜(-1)的金属吸附初始速度参数的实验数据的最佳近似.min〜(-1)(la

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