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环境水样中低水平铀的测定用阴离子交换预处理方法。

An anion exchange pretreatment method for the determination of low-level uranium in the environmental water samples.

机构信息

School of Nuclear Science and Technology, University of South China, 28 Changsheng West Road, Hengyang 421001, PR China.

Guangxi Key Laboratory of Processing for Non-ferrous Metallic and Featured Materials, School of Resources, Environment and Materials, Guangxi University, 100 Daxue Road, Nanning 530004, PR China.

出版信息

J Environ Radioact. 2021 Oct;237:106699. doi: 10.1016/j.jenvrad.2021.106699. Epub 2021 Jul 17.

Abstract

Uranium in environmental water is usually at trace or ultra-trace levels with high concentrations of background ions so that the detection of uranium often couples with pretreatment processes to lower the detection limit, and improve the selectivity and accuracy of instruments. A simple, green, effective and efficient anion exchange pretreatment method was proposed to favor the determination of low-level uranium in natural environmental water samples. To determine the applicability and obtain the optimum operating parameters, the effects of coprecipitation, pH, contact time, uranium concentration, background ions, eluent and the flow speed on the uranium recovery were investigated. The experimental results showed that the proper addition of saturated NaCO solution for pH adjustment did not lead to uranium loss in natural water samples, and the optimum pH value for adsorption was determined from 6 to 8. The adsorption speed was improved a lot with the employment of a novel silica-supported anion exchange resin, which also showed good linear dependence in the concentration range from <0.5 μg/L to 1000 μg/L with high tolerance limits towards common background ions. The optimum eluent was determined as 1 M HNO, and the optimum flow speeds for adsorption and desorption were about 4.0 and 1.0 mL/min, respectively. Based on these results, a pretreatment process was finally established, which realized the quantitative recovery of uranium from six different natural water samples with the chemical yields exceeding 95% and the enrichment factors about 100 times.

摘要

环境水中的铀通常处于痕量或超痕量水平,且背景离子浓度较高,因此铀的检测通常需要与预处理过程相结合,以降低检测限,并提高仪器的选择性和准确性。本研究提出了一种简单、绿色、有效和高效的阴离子交换预处理方法,有利于测定天然环境水样中的低水平铀。为了确定适用性并获得最佳操作参数,考察了共沉淀、pH 值、接触时间、铀浓度、背景离子、洗脱液和流速对铀回收率的影响。实验结果表明,适当添加饱和 NaCO 溶液进行 pH 值调节不会导致天然水样中铀的损失,吸附的最佳 pH 值范围为 6-8。新型硅胶负载阴离子交换树脂的使用大大提高了吸附速度,该树脂在 0.5μg/L 至 1000μg/L 的浓度范围内也表现出良好的线性相关性,对常见背景离子具有较高的耐受限度。最佳洗脱液确定为 1M HNO,吸附和解吸的最佳流速分别约为 4.0 和 1.0mL/min。基于这些结果,最终建立了一种预处理工艺,从六种不同的天然水样中定量回收铀,化学回收率超过 95%,富集倍数约为 100 倍。

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