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用于通过便携式X射线荧光光谱法现场测定铀的高效固相萃取的磁性共价有机框架。

Magnetic Covalent Organic Framework for Efficient Solid-Phase Extraction of Uranium for on-Site Determination by Portable X-ray Fluorescence Spectrometry.

作者信息

Li Yuanyu, Hu Jing, Li Chenghui, Hou Xiandeng

机构信息

Key Lab of Green Chemistry and Technology of MOE and College of Chemistry, Sichuan University, Chengdu, Sichuan 610064, China.

Analytical and Testing Center, Sichuan University, Chengdu, Sichuan 610064, China.

出版信息

Anal Chem. 2024 Apr 16;96(15):5757-5762. doi: 10.1021/acs.analchem.4c00063. Epub 2024 Apr 3.

Abstract

Uranium plays a pivotal role in the nuclear industry; however, its inadvertent release has raised concerns regarding health and environmental implications. It is crucial for a prompt warning and accurate tracing of uranium contamination in emergency scenarios. In this study, a novel and simple method was proposed that combines magnetic dispersive solid-phase extraction (MDSPE) with portable X-ray fluorescence spectrometry (XRF) for the on-site sampling and determination of trace uranium in real samples. A magnetic covalent organic framework (FeO@COF) composite with excellent chemical stability and a large adsorption capacity of 311 mg/g was synthesized and employed as an efficient adsorbent for the solid-phase extraction of trace uranium. Without the need for a centrifuge or filter requirement, the established method by benchtop wavelength-dispersive X-ray fluorescence spectrometry (WDXRF) exhibits an exceptionally low limit of detection (LOD) of 0.008 μg/L with a sample volume of 50 mL and a fast adsorption time of 15 min, rendering it suitable for environmental monitoring of UO. Consequently, this approach, in combination with a hand-held portable XRF instrument with an LOD of 0.1 μg/L, was successfully implemented for the on-site extraction and quality assessment of real water samples, yielding accurate results and satisfactory spike recoveries.

摘要

铀在核工业中起着关键作用;然而,其意外释放引发了对健康和环境影响的担忧。在紧急情况下,对铀污染进行及时预警和准确追踪至关重要。在本研究中,提出了一种新颖且简单的方法,该方法将磁分散固相萃取(MDSPE)与便携式X射线荧光光谱法(XRF)相结合,用于现场采样和测定实际样品中的痕量铀。合成了一种具有优异化学稳定性且吸附容量高达311 mg/g的磁性共价有机框架(FeO@COF)复合材料,并将其用作痕量铀固相萃取的高效吸附剂。所建立的台式波长色散X射线荧光光谱法(WDXRF)无需离心机或过滤,在样品体积为50 mL时检测限极低,仅为0.008 μg/L,吸附时间快,仅需15分钟,适用于UO的环境监测。因此,该方法与检测限为0.1 μg/L的手持式便携式XRF仪器相结合,成功用于实际水样的现场萃取和质量评估,结果准确,加标回收率令人满意。

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