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采用具有不同介孔形态的膦酸功能化硅材料捕获镅(III):通过 EXAFS/XPS 研究吸附行为和机制。

Americium(III) capture using phosphonic acid-functionalized silicas with different mesoporous morphologies: adsorption behavior study and mechanism investigation by EXAFS/XPS.

机构信息

Institute of Nuclear and New Energy Technology, Tsinghua University , Beijing 100084, P. R. China.

出版信息

Environ Sci Technol. 2014 Jun 17;48(12):6874-81. doi: 10.1021/es500563q. Epub 2014 May 29.

Abstract

Efficient capture of highly toxic radionuclides with long half-lives such as Americium-241 is crucial to prevent radionuclides from diffusing into the biosphere. To reach this purpose, three different types of mesoporous silicas functionalized with phosphonic acid ligands (SBA-POH, MCM-POH, and BPMO-POH) were synthesized via a facile procedure. The structure, surface chemistry, and micromorphology of the materials were fully characterized by (31)P/(13)C/(29)Si MAS NMR, XPS, and XRD analysis. Efficient adsorption of Am(III) was realized with a fast rate to reach equilibrium (within 10 min). Influences including structural parameters and functionalization degree on the adsorption behavior were investigated. Slope analysis of the equilibrium data suggested that the coordination with Am(III) involved the exchange of three protons. Moreover, extended X-ray absorption fine structure (EXAFS) analysis, in combination with XPS survey, was employed for an in-depth probe into the binding mechanism by using Eu(III) as a simulant due to its similar coordination behavior and benign property. The results showed three phosphonic acid ligands were coordinated to Eu(III) in bidentate fashion, and Eu(P(O)O)3(H2O) species were formed with the Eu-O coordination number of 7. These phosphonic acid-functionalized mesoporous silicas should be promising for the treatment of Am-containing radioactive liquid waste.

摘要

高效捕获半衰期长的剧毒放射性核素,如镅-241,对于防止放射性核素扩散到生物圈至关重要。为了达到这个目的,通过一种简单的方法合成了三种不同类型的磷酸官能化介孔硅(SBA-POH、MCM-POH 和 BPMO-POH)。通过(31)P/(13)C/(29)Si MAS NMR、XPS 和 XRD 分析对材料的结构、表面化学和微观形貌进行了全面表征。Am(III)的吸附实现了快速速率达到平衡(在 10 分钟内)。研究了结构参数和功能化程度对吸附行为的影响。平衡数据的斜率分析表明,与 Am(III)的配位涉及三个质子的交换。此外,还采用扩展 X 射线吸收精细结构(EXAFS)分析结合 XPS 调查,使用 Eu(III)作为模拟物深入探究了结合机制,因为 Eu(III)具有类似的配位行为和良性性质。结果表明,三种磷酸配体以双齿配位方式与 Eu(III)配位,形成 Eu(P(O)O)3(H2O)物种,Eu-O 配位数为 7。这些磷酸官能化介孔硅对于处理含 Am 的放射性液体废物具有广阔的应用前景。

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