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首页> 外文期刊>Journal of Environmental Radioactivity >Anion-exchanged and quaternary ammonium functionalized MIL-101-Cr metal-organic framework (MOF) for ReO_4~-/TcO_4~- sequestration from groundwater
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Anion-exchanged and quaternary ammonium functionalized MIL-101-Cr metal-organic framework (MOF) for ReO_4~-/TcO_4~- sequestration from groundwater

机译:用于REO_4〜 - / TCO_4〜 - 地下水中的阴离子交换和季铵官能化MIL-101-CR金属 - 有机框架(MOF)

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摘要

There are few effective technologies for the sequestration of highly water-soluble pertechnetate (TcO4-) from contaminated water despite the urgency of environmental and public health concerns. In this work, anion exchanged and cetyltrimethylammonium bromide (CTAB) functionalized MIL-101-Cr-NO3 were investigated for perrhenate (ReCO4-), a surrogate of TcO4-, sequestration from artificial groundwater. Cl-, I-, and CF3SO3- exchanged MIL-101-Cr proved more effective at ReO4- removal than the parent MIL-101-Cr-F. Compared to the parent framework, CTAB functionalized MIL-101-Cr-NO3 increased ReO4- removal capacity from 39 to 139 mg/g, improved the reaction kinetics from similar to 30 to 10 min to reach full adsorption capacity and the selectivity for ReO4- over competing NO3-, CO32-, SO42-, and Cl-. Spectroscopic data indicated that the chemical speciation of Re in the exchanged MIL-101-Cr remained ReO4-, indicating synergistic sequestration through both anion exchange and non-ion exchange binding with the positively charged ligand of CTAB. These studies foreshadow potential applications of MOFs for the remediation of (TcO4-)-Tc-99 from contaminated environments.
机译:尽管环境和公共卫生的紧迫性令人紧张,但仍有很少的有效技术用于从受污染的水中从受污染的水中的高度水溶性骨质肽(TCO4-)。在该作品中,研究了阴离子交换和十六烷基二甲基溴化物(CTAB)官能化MIL-101-CR-NO3,用于渗透(RECO4-),TCO4-的替代物,从人造地下水中螯合。 CL-,I-和CF3SO3-交换的MIL-101-CR在REO4中被证明比母体MIL-101-CR-F更有效。与父母框架相比,CTAB官能化MIL-101-CR-NO3增加了REO4-去除容量39至139mg / g,改善了与30至<10分钟相似的反应动力学,以达到全部吸附容量和REO4的选择性 - 竞争No3-,CO32-,SO42-和CL-。光谱数据表明,交换式MIL-101-CR中RE的化学物质仍然是REO4-,其通过阴离子交换和非离子交换与CTAB的带正电荷的配体结合来表明协同叠加。这些研究预示着MOF的潜在应用,用于修复来自受污染环境的(TCO4 - ) - TC-99。

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