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用于监测水相流中锕系元素的薄萃取膜。

Thin extractive membrane for monitoring actinides in aqueous streams.

机构信息

Radiochemistry Division, Trombay, Mumbai 400 085, India.

出版信息

J Hazard Mater. 2013 Sep 15;260:53-60. doi: 10.1016/j.jhazmat.2013.05.007. Epub 2013 May 13.

DOI:10.1016/j.jhazmat.2013.05.007
PMID:23747462
Abstract

Alpha spectrometry and solid state nuclear track detectors (SSNTDs) are used for monitoring ultra-trace amount of alpha emitting actinides in different aqueous streams. However, these techniques have limitations i.e. alpha spectrometry requires a preconcentration step and SSNTDs are not chemically selective. Therefore, a thin polymer inclusion membrane (PIM) supported on silanized glass was developed for preconcentraion and determination of ultra-trace concentration of actinides by α-spectrometry and SSNTDs. PIMs were formed by spin coating on hydrophobic glass slide or solvent casting to form thin and self-supported membranes, respectively. Sorption experiments indicated that uptakes of actinides in the PIM were highly dependent on acidity of solution i.e. Am(III) sorbed up to 0.1 molL(-1) HNO₃, U(VI) up to 0.5 molL(-1) HNO₃ and Pu(IV) from HNO₃ concentration as high as 4 molL(-1). A scheme was developed for selective sorption of target actinide in the PIM by adjusting acidity and oxidation state of actinide. The actinides sorbed in PIMs were quantified by alpha spectrometry and SSNTDs. For SSNTDs, neutron induced fission-fragment tracks and α-particle tracks were registered in Garware polyester and CR-39 for quantifications of natural uranium and α-emitting actinides ((241)Am/(239)Pu/(233)U), respectively. Finally, the membranes were tested to quantify Pu in 4 molL(-1) HNO3 solutions and synthetic urine samples.

摘要

阿尔法谱法和固体核径迹探测器 (SSNTDs) 用于监测不同水相中痕量的阿尔法发射锕系元素。然而,这些技术存在局限性,即阿尔法谱法需要预浓缩步骤,而 SSNTDs 不具有化学选择性。因此,开发了一种基于硅烷化玻璃的薄聚合物包容膜 (PIM),用于通过α谱法和 SSNTDs 预浓缩和测定痕量浓度的锕系元素。PIM 通过旋转涂覆在疏水性玻璃载玻片上或溶剂浇铸形成薄的自支撑膜来形成。吸附实验表明,PIM 中锕系元素的吸附量高度依赖于溶液的酸度,即 Am(III) 在 0.1 molL(-1) HNO₃ 中吸附,U(VI) 在 0.5 molL(-1) HNO₃ 中吸附,Pu(IV) 在高达 4 molL(-1) HNO₃ 浓度下吸附。通过调整锕系元素的酸度和氧化态,开发了一种在 PIM 中选择性吸附目标锕系元素的方案。通过阿尔法谱法和 SSNTDs 对吸附在 PIM 中的锕系元素进行定量。对于 SSNTDs,在 Garware 聚酯和 CR-39 中记录了中子诱导裂变碎片轨迹和α粒子轨迹,以分别定量天然铀和α发射锕系元素((241)Am/(239)Pu/(233)U)。最后,对膜进行了测试,以在 4 molL(-1) HNO3 溶液和合成尿液样品中定量 Pu。

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