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Isothermal titration microcalorimetry to determine the thermodynamics of metal ion removal by magnetic nanoparticle sorbentsf

机译:等温滴定微量热法测定磁性纳米颗粒吸附剂去除金属离子的热力学f

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Isothermal titration microcalorimetry, a novel approach, was applied to determine key thermodynamic parameters directly for the adsorption of metal ions to.a magnetic nanoparticle sorbent (Mag-Ligand), measuring the energy exchange during the binding process. We demonstrate that the interactions are enthalpically driven and energetically favorable, with exothermic binding reactions, giving the selectivity sequence: Cr~(3+) < Cu~(2+) < Zn~(2+) < Ga~(3+) < Ce~(3+) < Cd~(2+) < In~(3+) < Hg~(2+) < Pb~(2+). The sorption kinetic and isothermal studies demonstrated effective and fast removal of nine different metal ions including three rare earths, in competitive and non-competitive conditions across a range of pH and water hardness. Sorption is dominated by the complexation reactions between metal ions and Mag-Ligand and adsorption of metal ions onto Mag-Ligand. Maximum sorption capacity can be predicted based on the thermodynamic data, although kinetics plays a role during competitive sorption. Furthermore, the magnetic behavior of Mag-Ligand results in fast and efficient solid-liquid separation after the sorbent has extracted the metal ions from the contaminated waters, and Mag-Ligand can be regenerated for reuse by a simple acid wash, providing a more sustainable, fast, convenient, and efficient approach for heavy metal remediation.
机译:等温滴定微量热法是一种新颖的方法,用于确定直接将金属离子吸附到磁性纳米粒子吸附剂(Mag-Ligand)上的关键热力学参数,从而测量结合过程中的能量交换。我们证明了相互作用是由焓驱动和能量有利的,具有放热结合反应,给出了选择性序列:Cr〜(3+)

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