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A Chemometric Study of the Adsorption of Zr(IV) Ions from Aqueous Solutions onto TBP-Surface-Modified Magnetic Fe3O4 Nanoparticles as a New Adsorbent

机译:将Zr(iv)离子从水溶液中吸附到TBP表面改性磁Fe3O4纳米粒子中的化学计量研究,作为一种新吸附剂

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Chemometric experimental design methods were used to optimize the adsorption of Zr(IV) ions from an aqueous solution. Tributyl phosphate functionalized magnetic nanoparticles (TBPFMNPs) were used as a novel adsorbent for the adsorption of Zr(IV) ions. The effect exerted on the adsorption process by the adsorbent amount (mg), TBP/MNP ratio (w/w, %), and concentration of Zr(IV) in aqueous solutions (mg/L) was studied. Two-level factorial design was used, with the other parameters kept constant in the batch experiments. The initial Zr concentration was varied from 3.5 to 70 ppm with 9 mg of the adsorbent. The maximum uptake, 93%, was reached at the initial zirconium concentration of 35 ppm. The maximum distribution coefficient under these conditions reached 15140 mL/g.
机译:化学计量统计学设计方法用于优化Zr(IV)离子与水溶液的吸附。 磷酸酯官能化磁性纳米颗粒(TBPFMNP)用作用于吸附Zr(IV)离子的新型吸附剂。 研究了通过吸附量(Mg),TBP / MNP比(W / W,%)和Zr(IV)中的吸附量(Mg),Zr(Mg / L)浓度施加的效果。 使用了两级因子设计,其他参数在批量实验中保持恒定。 初始Zr浓度从3.5至70ppm变化,9mg吸附剂。 在35ppm的初始锆浓度下达到最大摄取93%。 这些条件下的最大分布系数达到15140毫升/克。

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