1.中国科学技术大学核科学技术学院 合肥 230027
2.中国科学院软物质化学重点实验室 中国科学技术大学化学与材料科学学院高分子科学与工程系 合肥 230026
[ "赵驰, 男, 1992年2月出生, 2014年6月于中国科学技术大学获得学士学位, 现为中国科学技术大学高分子科学与工程系硕士研究生, E-mail:thomson@mail.ustc.edu.cn", "ZHAO Chi (male) was born in February 1992, and received his bachelor's degree from University of Science and Technology of China in June 2014. Now he is a postgraduate student of Department of Polymer Science and Engineering, University of Science and Technology of China.E-mail:thomson@mail.ustc.edu.cn" ]
翁汉钦, 男, 博士, 博士后, E-mail:hanqinw@ustc.edu.cnPh.D. WENG Hanqin, Postdoctor, E-mail:hanqinw@ustc.edu.cn
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赵驰, 翁汉钦, 汪谟贞, 等. 吡啶基改性纤维状介孔二氧化硅微球的辐射制备及其对U(VI)的吸附性能[J]. 辐射研究与辐射工艺学报, 2017,35(5):050301-9.
Chi ZHAO, Hanqin WENG, Mozhen WANG, et al. Pyridine-modified fibrous mesoporous silica microspheres prepared through radiation-induced grafting polymerization and their adsorption property to U(VI)[J]. Journal of Radiation Research and Radiation Processing, 2017,35(5):050301-9.
赵驰, 翁汉钦, 汪谟贞, 等. 吡啶基改性纤维状介孔二氧化硅微球的辐射制备及其对U(VI)的吸附性能[J]. 辐射研究与辐射工艺学报, 2017,35(5):050301-9. DOI: 10.11889/j.1000-3436.2017.rrj.35.050301.
Chi ZHAO, Hanqin WENG, Mozhen WANG, et al. Pyridine-modified fibrous mesoporous silica microspheres prepared through radiation-induced grafting polymerization and their adsorption property to U(VI)[J]. Journal of Radiation Research and Radiation Processing, 2017,35(5):050301-9. DOI: 10.11889/j.1000-3436.2017.rrj.35.050301.
首先合成了双键改性的纤维状介孔二氧化硅纳米微球(F-SiO,2,-K),将其分散在4-乙烯基吡啶(4-vinylpyridine,4-VP)或4-VP的甲醇溶液中,通过共辐射接枝的方法,制备了吡啶基改性纤维状介孔SiO,2,纳米微球(F-SiO,2,-VP)。热重分析结果表明,聚4-乙烯基吡啶(P(4-VP))在F-SiO,2,微球上的接枝率随4-VP单体浓度和吸收剂量增加而增加,但随剂量率的增加先增大后减小。将F-SiO,2,-VP微球分散在含有U(VI)的硝酸溶液中,测定了室温下微球对U(VI)的吸附容量,并对吸附动力学和吸附等温线进行了分析。结果表明,F-SiO,2,-VP微球对U(VI)的吸附容量与硝酸浓度和P(4-VP)的接枝率有关。当硝酸浓度为5 mol/L,P(4-VP)的接枝率为16%时,对U(VI)的吸附容量最大,达到163 mg/g。该吸附过程符合准二级动力学模型,其吸附热力学则当U(VI)浓度低时符合Freundlich模型,而U(VI)浓度高时符合Langmuir等温吸附模型。
In this paper, double-bond-modified fibrous mesoporous silica (F-SiO,2,-K) microspheres were prepared first, and then grafted with poly (4-vinylpyridine) (P(4-VP)) in 4-VP or its methanol solution initiated by γ-ray irradiation to obtain pyridine modified mesoporous silica (F-SiO,2,-VP) microspheres. The Fourier transform infrared spectroscopy (FTIR) and thermal gravimetric analysis (TGA) results indicated the successful grafting of P(4-VP). The degree of grafting (,D,G,) of P(4-VP), which was calculated from TGA curves, increased with the monomer concentration and the absorbed dose, however reached a maximum value at a moderate dose rate. The adsorption ability of F-SiO,2,-VP for U(VI) in nitric acid solution was investigated. The results show that the adsorption capacity is related to the concentration of nitric acid and the ,D,G, of F-SiO,2,-VP, and reaches a maximum of 163 mg/g. The adsorption kinetics fits the pseudo-second-order model, and the adsorption isotherm of F-SiO,2,-VP fits the Freundlich model at low U(VI) concentrations and the Langmuir isotherm well at high U(VI) concentrations.
γ射线辐射接枝介孔二氧化硅4-乙烯基吡啶U (VI)
γ-rayRadiation graftingMesoporous silica4-vinylpyridineUranium
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