首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Simultaneous preconcentration of uranium(VI) and thorium(IV) from aqueous solutions using a chelating calix[4]arene anchored chloromethylated polystyrene solid phase
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Simultaneous preconcentration of uranium(VI) and thorium(IV) from aqueous solutions using a chelating calix[4]arene anchored chloromethylated polystyrene solid phase

机译:使用螯合杯[4]芳烃锚定的氯甲基化聚苯乙烯固相从水溶液中同时富集铀(VI)和th(IV)

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摘要

A new chelating polymeric sorbent is developed using Merrifield chloromethylated resin anchored with calix[4]arene-o-vanillinsemicarbazone for simultaneous separation and solid phase extractive preconcentration of U(VI) and Th(IV). The "upper-rim" functionalized calix[4]arene-ovanillinsemicarbazone was covalently linked to Merrifield resin and characterized by FT-IR and elemental analysis. The synthesized chelating polymeric sorbent shows superior binding affinity towards U(VI) and Th(IV) under selective pH conditions. Various physico-chemical parameters that influence the quantitative extraction of metal ions were optimized. The optimum pH range and flow rates for U(VI) and Th(IV) were 6.0-7.0 and 1.0-4.0 nal min(-1) and 3.5-4.5 and 1.5-4.0 ml min(-1), respectively. The total sorption capacity found for U(VI) and Th(IV) was 48734 and 41175 mu g g(-1), respectively. Interference studies carried out in the presence of diverse ions and electrolyte species showed quantitative analyte recovery (98-98.5%) with lower limits of detection, 6.14 and 4.29 mu g l(-1) and high preconcentration factors, 143 and 153 for U(VI) and Th(IV), respectively. The uptake and stripping of these metal ions on the resin were fast, indicating a better accessibility of the metal ions towards the chelating sites. The analytical applicability of the synthesized polymeric sorbent was tested with some synthetic mixtures for the separation of U(VI) and Th(IV) from each other and also from La(III), Cu(II) and Pb(II) by varying the pH and sequential acidic elution. The validity of the proposed method was checked by analyzing these metal ions in natural water samples, monazite sand and standard geological materials. (c) 2006 Elsevier B.V. All rights reserved.
机译:一种新的螯合聚合物吸附剂是使用Merixfield氯甲基化树脂与杯[4]芳烃-邻-香兰素半咔唑锚定而开发的,用于同时分离和固相萃取预浓缩U(VI)和Th(IV)。 “上边缘”功能化杯[4]芳烃-香兰素半碳酰胺共价连接到Merrifield树脂上,并通过FT-IR和元素分析进行​​表征。合成的螯合聚合物吸附剂在选择性pH条件下显示出对U(VI)和Th(IV)的优异结合亲和力。优化了影响金属离子定量提取的各种物理化学参数。 U(VI)和Th(IV)的最佳pH范围和流速分别为6.0-7.0和1.0-4.0 nal min(-1),以及3.5-4.5和1.5-4.0 ml min(-1)。对U(VI)和Th(IV)的总吸附容量分别为48734和41175μg g(-1)。在各种离子和电解质种类存在下进行的干扰研究表明,定量分析物的回收率(98-98.5%)具有较低的检出限,6.14和4.29 mu gl(-1)和高预富集因子,U(VI)143和153 )和Th(IV)。这些金属离子在树脂上的吸收和汽提速度很快,表明金属离子更容易进入螯合位点。用某些合成混合物测试了合成聚合物吸附剂的分析适用性,方法是通过改变反应混合物中U(VI)和Th(IV)以及La(III),Cu(II)和Pb(II)的分离。 pH和连续酸性洗脱。通过分析天然水样品,独居石砂和标准地质材料中的这些金属离子,验证了该方法的有效性。 (c)2006 Elsevier B.V.保留所有权利。

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