首页> 外文期刊>Environmental Science and Pollution Research >Adsorption of aqueous neodymium, europium, gadolinium, terbium, and yttrium ions onto nZVI-montmorillonite: kinetics, thermodynamic mechanism, and the influence of coexisting ions
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Adsorption of aqueous neodymium, europium, gadolinium, terbium, and yttrium ions onto nZVI-montmorillonite: kinetics, thermodynamic mechanism, and the influence of coexisting ions

机译:将钕,铕,钆,铽,钇离子吸附到NZVI-MONTMORILLONITE上:动力学,热力学机制和共存离子的影响

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摘要

This study reports the adsorption of five rare earth elements (REEs) (belonging to light (Nd, Eu, Gd), medium (Tb), and heavy (Y) REE group) on montmorillonite-supported zero-valent iron nanoparticles (nZVI-M). Various parameters about REEs adsorption were investigated: the pH value, the adsorption kinetic, the maximum adsorption capacity, and the adsorption isotherm. The temperature (293–313?K) had a limited effect on the final adsorption equilibrium capacity and the analysis of thermodynamic studies suggests it was spontaneous (negative values of ?G _( o )) and exothermic (negative values of ?H _( o )). The system randomness decreased after adsorption (negative values of ?S _( o )). In addition, the values of thermodynamic parameters and the activation energy were strongly dependent on the temperature range because different kinds of REEs participated in the reaction in the form of hydrated ions and followed a randomly and complexly dissociative adsorption mechanism. According to the intraparticle diffusion model analysis, the adsorption of REEs on nZVI-M was dominated by chemisorption and the nano size of nZVI-M reduced the diffusion thickness and the resistance to intraparticle diffusion. Based on the characterization of adsorbent by XPS, the adsorption mechanisms of REEs on nZVI-M were ion exchange and surface complexation.
机译:该研究报告五个稀土元素(稀土元素)的上蒙脱石支持零价铁纳米颗粒的吸附(属于光(ND,铕,钆),中(TB),和重质(Y)的稀土元素组)(nZVI- M)。关于稀土元素吸附的各种参数进行了研究:pH值,吸附动力学,最大吸附量和吸附等温线。的温度(293-313?K)对最终吸附平衡容量有限的效果和热力学研究的分析表明,它是自发的(的?g负值_(○))和放热(的2 H负值_( O))。后吸附(的?s负值_(O))的系统的随机性降低。此外,热力学参数和活化能的值,因为不同种类的稀土元素的参加了在水合离子形式的反应和随后随机且复杂解离吸附机理是强烈地依赖于温度范围。根据内扩散模型分析,上的nZVI-M稀土元素的吸附物通过化学吸附主导和的nZVI-M的纳米尺寸减小扩散厚度和内扩散的阻力。根据吸附剂的利用XPS的表征,上的nZVI-M稀土元素的吸附机制是离子交换和表面络合。

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