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Adsorption and Desorption of Cu/Zn ions with Triethylenetetramine-Functionalized Adsorbents: Kinetics Study

机译:用三乙基甲胺官能化吸附剂的Cu / Zn离子的吸附和解吸:动力学研究

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Adsorption and desorption kinetics is critical in the efficiency and performance evaluation of the adsorbents. In this study, the adsorption and desorption kinetics of copper and/or zinc ions was investigated with the polyamine-functionalized adsorbents (P-TETA). The adsorption kinetics was studied in both single species system (when only one metal ion was present) and binary species system (when both metal ions were present). The adsorption kinetics in single species system was well fitted with two models at two stages for both Cu and Zn ions, indicating that the adsorption was diffusion-controlled at the initial stage and attachment-controlled at later stage. The adsorption kinetics in binary species system revealed the stronger coordination affinity of Cu ion with P-TETA than Zn ion. The desorption kinetics was well fitted with Elovich model for Cu ion desorption only, in both single and binary species system, with a higher desorption rate in single species system.
机译:吸附和解吸动力学对于吸附剂的效率和性能评估至关重要。在该研究中,用多胺官能化吸附剂(P-TETA)研究了铜和/或锌离子的吸附和解吸动力学。在单一物种系统中研究了吸附动力学(仅存在一个金属离子)和二元物种系统(当存在两种金属离子时)。单一物种系统中的吸附动力学良好地配有两种型号,用于Cu和Zn离子的两个阶段,表明吸附在初始阶段并在后期附着控制的初期控制。二元物种系统中的吸附动力学揭示了Cu离子与p-teta的更强的配位亲和力而不是Zn离子。解吸动力学在单一和二元体系中仅适用于Cu离子解吸的Elovich模型,单一物种系统的解吸速率较高。

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