介孔层状双氢氧化物:纳米复合功能材料对海水和盐溶液中铀离子的高效吸附

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
Valeria A. Balybina, Artur N. Dran’kov, Oleg O. Shichalin, Natalia Yu. Savel’eva, Nadezhda G. Kokorina, Zhanna C. Kuular, Nikita P. Ivanov, Svetlana G. Krasitskaya, Andrei I. Ivanets, Evgeniy K. Papynov
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引用次数: 0

摘要

采用共沉淀法制备了一系列基于层状双氢氧化物的吸附材料(Co-Fe LDH、Ni-Fe LDH和Zn-Ti LDH)。实现了不超过10µm的低粒径。过渡金属的使用使得在腐蚀性环境中获得机械和化学稳定的化合物成为可能。XRD分析表明,化合物具有高度组织化的晶体结构。SEM分析表明,Co-Fe LDH和Ni-Fe LDH具有松散、高度分散的表面结构,而Zn-Ti LDH具有整体表面结构。在含Na2CO3、Na2SO4、KNO3、NaCl、K3PO4和NaHCO3的溶液中,以批处理方式研究了U(VI)在所得材料上的吸附。在这些盐存在下,纯化度达到99.9%,分配系数Kd达到105 mL/g。采用Freundlich和Langmuir方程,确定了在蒸馏水和海水中批量(24 h)吸附U(VI)的吸附量qmax和平衡吸附常数Kf和KL。Co-Fe-LDH在海水中的最高吸附量为101.6 mg/g,在蒸馏水中的最高吸附量为114.1 mg/g。海水中竞争离子的存在会降低高达40%的吸附效率。所提供的研究使我们得出结论,所获得的材料,Co-Fe LDH, Ni-Fe LDH和Zn-Ti LDH有望从中等盐度的水介质中吸附去除U(VI)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mesoporous Layered Double Hydroxides: Synthesis for High Effective Uranium Ions Sorption from Seawater and Salt Solutions on Nanocomposite Functional Materials
A series of sorption materials based on layered double hydroxides (Co-Fe LDH, Ni-Fe LDH, and Zn-Ti LDH) were obtained by a facile and environmentally friendly method of coprecipitation. A low particle size of no more than 10 µm was achieved. The use of transition metals makes it possible to obtain compounds that are mechanically and chemically stable in aggressive environments. XRD analysis revealed that the compounds have a highly organized crystalline structure. Using SEM, it was determined that Co-Fe LDH and Ni-Fe LDH had a loose, highly dispersed surface structure, while Zn-Ti LDH had a monolithic surface structure. U(VI) adsorption on the obtained materials in solutions containing Na2CO3, Na2SO4, KNO3, NaCl, K3PO4, and NaHCO3, was studied in batch mode. The degree of purification in the presence of these salts reached 99.9%, while the distribution coefficient Kd reached 105 mL/g. Sorption capacity qmax and equilibrium adsorption constants Kf and KL for U(VI) adsorption in batch mode (for 24 h) from distilled and seawater were determined using the Freundlich and Langmuir equations. The highest sorption capacity of 101.6 mg/g in seawater and 114.1 mg/g in distilled water was registered for Co-Fe-LDH. The presence of competing ions in seawater can reduce sorption efficiency by up to 40%. The provided research allowed us to conclude that the obtained materials, Co-Fe LDH, Ni-Fe LDH, and Zn-Ti LDH are promising for the sorption removal of U(VI) from aqueous media of medium salinity.
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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