A new optical sensor for spectrophotometric determination of uranium (VI) and thorium (IV) in acidic medium

化学 吸光度 化学计量学 钍 铀 分析化学(期刊) 选择性 基础(拓扑) 分光光度法 检出限 核化学 无机化学 色谱法 物理化学 数学分析 催化作用 生物化学 冶金 材料科学 数学
作者
O. A. Elhefnawy
出处
期刊:Radiochimica Acta [R. Oldenbourg Verlag]
卷期号:105 (12): 993-1004 被引量:14
标识
DOI:10.1515/ract-2017-2772
摘要

Abstract A spectrophotometric method was developed for U(VI) and Th(IV) determination in acidic medium by using proposed optical sensor. This sensor is base on the complexation reaction of the ionophore midodrine hydrochloride ( L ) with U(VI)/Th(IV) in plasticized (o-NPOE) high molecular weight (PVC). Several parameters such as effect of acidic medium, response time and sensor compositions were studied. The determination of the complexes stoichiometry was also studied using Job’s method. The complexes stoichiometry were measured at the absorbance spectra 302 nm and the results were found to be 1:1 for both complexes U(VI)- L and Th(IV)- L . The complexation reaction was extremely rapid at room temperature; it takes 5, 10 min to complete the complexation reaction in U(VI) and Th(IV), respectively. Under the optimum conditions the calibration curves of U(VI)/Th(IV) determination, have good linearity at different acidic medium nitric, sulfuric, and phosphoric acids with low detection and quantification limits. The accuracy and precision studies proved that the proposed optical sensor is valid and qualified for U(VI)/Th(IV) spectrophotometric determination in different acidic medium. The selectivity of the proposed optical sensor was studied. The proposed optical sensor was applied successfully for U(VI)/Th(IV) determination in research and development (R&D) nuclear waste samples with satisfactory results. A comparative study of the proposed optical sensor with other previous spectrophotometric sensors for U(VI)/Th(IV) determination, proved the high efficiency of the proposed optical sensor, that it presents wide linear range and low detection limit. The proposed optical sensor could be applied for a quantitative determination of U(VI)/Th(IV) in acidic waste samples.
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