吸附
废水
离子交换树脂
放射性废物
多孔性
核化学
人体净化
基质(化学分析)
锶
化学
材料科学
废物管理
化学工程
放射化学
色谱法
复合材料
无机化学
有机化学
工程类
作者
Yin Su,Jiangang He,Xingchen Liu,Jia Su,Kesheng Hu,Junqiang Yang,Tonghuan Liu,Xiaoqing Gao,Shan Xing,Keliang Shi,Xiaolin Hou
标识
DOI:10.1016/j.seppur.2023.126051
摘要
Effective removal of radioactive 90Sr is crucial for both management of spent nuclear fuel and recovery of radioactive strontium resources, while it's still a great challenge due to the presence of high acid levels and intense radiation. Herein, a novel porous resin (DtBuCH18C6@CG-71) were synthesized by introducing 4′,4″(5″)-di-tert-butyldicyclohexano-18-crown-6 onto CG-71 resin using vacuum impregnation. The DtBuCH18C6@CG-71 resin maintains superior adsorption abilities in extreme conditions, including high acid resistance (3–12 mol/L HNO3), substantial γ-irradiation (200 kGy 60Co), and elevated temperatures (50–100 ℃). Impressively, even when exposed to a high concentration of matrix ions (59 elemental ions), the Sr(II) adsorption ratio onto DtBuCH18C6@CG-71 resin remains near 100 % even in highly acidic condition, which performance outpaces most of commercial resins. Dynamic column tests using an automated separation system further confirmed the superior ability of DtBuCH18C6@CG-71 in term of extracting Sr(II) from wastewater. Given its impressive features, cost-effectiveness, and scalability, DtBuCH18C6@CG-71 resin holds promising potential for 90Sr disposal in nuclear wastewater.
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