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Selective and efficient removal of radioactive ions from water with well-dispersed metal oxide nanoparticles@N-doped carbon

吸附 热解 碳纤维 纳米颗粒 核化学 水溶液中的金属离子 兴奋剂 活性炭 化学 化学工程 金属 材料科学 纳米技术 复合数 有机化学 复合材料 光电子学 工程类
作者
Zhimin Lv,Jing Zhang,Yifeng Zhang,Kexin Li,Xiushen Ye,Ming Fang,Xiaoli Tan,Mingguang Kong,Xiangke Wang
出处
期刊:Separation and Purification Technology [Elsevier BV]
卷期号:285: 120366-120366 被引量:21
标识
DOI:10.1016/j.seppur.2021.120366
摘要

Nuclear pollution in the environment is increasingly serious recently, which directly endangers human health and environmental quality. Herein, this paper proposes a COF-absorption-pyrolysis strategy to confine MgO NPs in COF-derived N-doped porous carbon matrix. The MgO NPs in the obtained materials were evenly anchored on a carbon matrix with a diameter of less than 10 nm confirming by HRTEM analysis. With the characters of porous structure, large specific surface area, and the evenly loading of MgO NPs, [email protected] derived from COF shows a significant removal capacity for U(VI), the removal amounts of U(VI) on [email protected] (389.91 mg/g), [email protected] (947.91 mg/g) and [email protected] (880.60 mg/g) at 298 K were remarkably greater than that of NC500 (180.18 mg/g) and other reported carbon-based materials. Moreover, [email protected] still maintains a high selective removal capacity for U(VI) in the existence of Mg2+, Ca2+, Na+, PO43-, SO42- ions. Characteristic analysis shows that the removal process of U(VI) mainly includes ions exchange, the conversion of MgO to Mg(OH)2, and the complexation between the high-affinity O-H of Mg(OH)2 and U(VI). The ultra-high removal capacity of the [email protected] can be restored by pyrolyzing, and it is further proved to be an efficient adsorbent. In addition, [email protected] has excellent removal capacity for methylene blue and tetracycline. Therefore, the synthesis strategy of confining MgO NPs in the COF-derived N-doped carbon provides a new insight for the treatment of heavy metals and organic pollutants in wastewater.
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