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在可见光照射下,三维 Ag2O-Ag/TiO2 复合材料从水中高效去除放射性碘离子。

Efficient removal of radioactive iodide ions from water by three-dimensional Ag2O-Ag/TiO2 composites under visible light irradiation.

机构信息

School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

CECEP Environmental Protection Investment Development Co., Ltd., Jiangxi 3300969, China.

出版信息

J Hazard Mater. 2015 Mar 2;284:171-81. doi: 10.1016/j.jhazmat.2014.10.054. Epub 2014 Nov 11.

DOI:10.1016/j.jhazmat.2014.10.054
PMID:25463231
Abstract

Three-dimensional Ag2O and Ag co-loaded TiO2 (3D Ag2O-Ag/TiO2) composites have been synthesized through a facile method, characterized using SEM, EDX, TEM, XRD, XPS, UV-vis DRS, BET techniques, and applied to remove radioactive iodide ions (I(-)). The photocatalytic adsorption capacity (207.6 mg/g) of the 3D Ag2O-Ag/TiO2 spheres under visible light is four times higher than that in the dark, which is barely affected by other ions, even in simulated salt lake water where the concentration of Cl(-) is up to 590 times that of I(-). The capability of the composites to remove even trace amounts of I(-) from different types of water, e.g., deionized or salt lake water, is demonstrated. The composites also feature good reusability, as they were separated after photocatalytic adsorption and still performed well after a simple regeneration. Furthermore, a mechanism explaining the highly efficient removal of radioactive I(-) has been proposed according to characterization analyses of the composites after adsorption and subsequently been verified by adsorption and desorption experiments. The proposed cooperative effects mechanism considers the interplay of three different phenomena, namely, the adsorption performance of Ag2O for I(-), the photocatalytic ability of Ag/TiO2 for oxidation of I(-), and the readsorption performance of AgI for I2.

摘要

通过简便的方法合成了三维 Ag2O 和 Ag 共负载 TiO2(3D Ag2O-Ag/TiO2)复合材料,并用 SEM、EDX、TEM、XRD、XPS、UV-vis DRS、BET 技术进行了表征,并将其用于去除放射性碘离子(I(-))。3D Ag2O-Ag/TiO2 球在可见光下的光催化吸附容量(207.6 mg/g)是黑暗条件下的四倍,几乎不受其他离子的影响,即使在模拟盐湖水中,Cl(-)的浓度是 I(-)的 590 倍。该复合材料能够从不同类型的水中去除痕量的 I(-),例如去离子水或盐湖水。该复合材料还具有良好的可重复使用性,因为它们在光催化吸附后被分离,并且在简单的再生后仍然表现良好。此外,根据吸附后复合材料的表征分析,提出了一种解释高效去除放射性 I(-)的机制,并通过吸附和解吸实验进行了验证。所提出的协同效应机制考虑了三种不同现象的相互作用,即 Ag2O 对 I(-)的吸附性能、Ag/TiO2 对 I(-)氧化的光催化能力以及 AgI 对 I2 的再吸附性能。

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