首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Flow injection on-line determination of uranium after preconcentration on XAD-4 resin impregnated with dibenzoylmethane
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Flow injection on-line determination of uranium after preconcentration on XAD-4 resin impregnated with dibenzoylmethane

机译:在用二苯甲酰甲烷浸渍的XAD-4树脂上预浓缩后,通过流动注射在线测定铀

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摘要

A flow injection on-line determination of uranium(VI) after preconcentration in a minicolumn having amberlite XAD-4 resin impregnated with dibenzoylmethane (DBM) is described. Uranium(VI) is selectively adsorbed from aqueous solution of pH 5.5 in the minicolumn (5.5 cm long with 5.0 mm i.d.) at a flow rate of 13.6 mL min~(-1). The uranium(VI) complex was desorbed from the resin by 0.1 mol dm~(-3) HCl at a flow rate of 4.2 mL min ~(-1) and mixed with arsenazo-III solution (0.05% solution in 0.1 mol dm~(-3) HCl, 4.2 mL min~(-1)), and taken to the flow through cell of spectrophotometer where its absorbance was measured at 651 nm. Various parameters affecting the complex formation and its elution were optimized. Peak height (absorbance) was used for data analyses. The preconcentration factors of 36 and 143, detection limits of 0.9 and 0.232 μg L~(-1), sample throughputs of 40 and 10 were obtained for preconcentration time of 60 and 300 s, respectively. The tolerance limits of many interfering cations like Th(IV) and rare-earth elements were improved. The proposed method was applied on different water (spiked tap, well and sea water) and biological samples and good recovery was obtained. The method was also validated on mocked uranium ore sample and the results were in good agreement with the reported value.
机译:描述了在微柱中预浓缩铀(VI)后的流动注射在线测定,该柱具有用二苯甲酰甲烷(DBM)浸渍的Amberlite XAD-4树脂。铀(VI)以13.6 mL min〜(-1)的流速从pH值为5.5的微型柱(长5.5 cm,内径为5.0 mm)中选择性吸附。用0.1 mol dm〜(-3)HCl以4.2 mL min〜(-1)的流速从树脂上解吸铀(VI)络合物,并与砷偶氮III溶液(0.05%的0.1 mol dm〜 (-3)HCl,4.2 mL min〜(-1)),流至分光光度计的流通池,在651 nm处测量其吸光度。优化了影响复合物形成及其洗脱的各种参数。峰高(吸光度)用于数据分析。在60和300 s的预浓缩时间下,分别获得36和143的预浓缩系数,0.9和0.232μgL〜(-1)的检出限,40和10的样品通量。诸如Th(IV)和稀土元素等许多干扰阳离子的耐受极限得到了提高。该方法适用于不同水质(自来水,井水和海水)和生物样品,回收率良好。该方法还对模拟铀矿石样品进行了验证,其结果与报道的值非常吻合。

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