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On the modeling of heavy metals and rare earth elements adsorption on colloidal carbon-based nanoparticles

机译:胶态碳基纳米粒子吸附重金属和稀土元素的建模研究

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摘要

Acid-base and metal ions adsorptive properties of colloidal carbon-based nanostructured materials, bearing a variable number of oxygen-containing functional groups at the surface, were investigated and modeled. Hydrophilic carbonaceous nanoparticles (HNPs) with uniform dimensions and a good grade of dispersion in water, were obtained through the oxidation of a carbon black with nitric acid, at a temperature of 100 degrees C, for different reaction times (2-24 h). The acid-base properties of the functional groups were evaluated in water suspension by potentiometry and infrared spectroscopy. By means of X-ray fluorescence, infrared spectroscopy and differential pulse voltammetry the interaction properties of HNPs with Cd2+, Zn2+, Pb2+ and selected Ln(3+) ions have also been investigated. The experimental data, collected in the 2.0-7.0 pH range, suggest that the adsorption of metal ions on HNPs is controlled by chemical adsorption involving the strong complexation of metal ions with the carboxylic groups on the surface of HNPs. Particularly, the high complexation of Ln(3+) ions opens the exploitation of HNPs in solid phase extraction for preconcentration, separation and determination of rare earth elements and actinides.
机译:对胶体碳基纳米结构材料的酸碱和金属离子的吸附性能进行了研究和建模,该材料在表面带有可变数量的含氧官能团。通过在100摄氏度的温度下以不同的反应时间(2-24小时)用硝酸氧化炭黑,可获得尺寸均匀且在水中具有良好分散度的亲水性碳纳米颗粒(HNP)。通过电位法和红外光谱法评价了水悬浮液中官能团的酸碱性质。通过X射线荧光,红外光谱和差分脉冲伏安法,还研究了HNP与Cd2 +,Zn2 +,Pb2 +和选定的Ln(3+)离子的相互作用特性。在2.0-7.0 pH范围内收集的实验数据表明,金属离子在HNP上的吸附是通过化学吸附来控制的,化学吸附涉及金属离子与HNP表面上的羧基的强络合。特别是,Ln(3+)离子的高络合度开创了固相萃取中HNP的开发,可用于预浓缩,分离和测定稀土元素和con系元素。

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