Institute of Nuclear Physics and Chemistry, China Academy of Engineering Physics, Mianyang 621900, PR China; Institute of Plasma Physics, Chinese Academy of Sciences, P.O. Box 1126, Hefei 230031, PR China.
Institute of Plasma Physics, Chinese Academy of Sciences, P.O. Box 1126, Hefei 230031, PR China.
J Hazard Mater. 2016 Jan 25;302:1-9. doi: 10.1016/j.jhazmat.2015.09.043. Epub 2015 Sep 25.
Iron sulfide (FeS) nanoparticles have been recognized as effective scavengers for multi-valent metal ions. However, the aggregation of FeS nanoparticles in aqueous solution greatly restricts their application in real work. Herein, different biomaterial-FeS nanoparticles were developed for the in-situ immobilization of uranium(VI) in radioactive waste management. TEM images suggested that sodium carboxymethyl cellulose (CMC) and gelatin can effectively suppress the aggregation of FeS nanoparticles in aqueous solutions. The resulting CMC-FeS and gelatin-FeS were stable in aqueous solutions and showed high adsorption capacity for U(VI). Specially, gelatin-FeS showed the best performance in U(VI) adsorption-reduction immobilization under experimental conditions. The maximum enrichment capacity of U(VI) on CMC-FeS and gelatin-FeS at pH 5.0 and 20 °C achieved to ∼430 and ∼556 mg/g, respectively. Additionally, gelatin-FeS and CMC-FeS nanoparticles presented excellent tolerance to environmental salinity. The immobilized U(VI) on the surfaces of CMC-FeS and gelatin-FeS remained stable more than one year. These findings highlight the possibility of using ggelatin-FeS for efficient immobilization of U(VI) from radioactive wastewater.
硫化亚铁(FeS)纳米粒子已被证明是有效清除多价金属离子的试剂。然而,FeS 纳米粒子在水溶液中的聚集极大地限制了它们在实际工作中的应用。在此,开发了不同的生物材料-FeS 纳米粒子,用于放射性废物管理中六价铀的原位固定。TEM 图像表明,羧甲基纤维素(CMC)和明胶可以有效地抑制 FeS 纳米粒子在水溶液中的聚集。所得的 CMC-FeS 和明胶-FeS 在水溶液中稳定,并对 U(VI)具有高吸附能力。特别是在实验条件下,明胶-FeS 在 U(VI)吸附-还原固定方面表现出最佳性能。在 pH 5.0 和 20°C 下,CMC-FeS 和明胶-FeS 对 U(VI)的最大富集容量分别达到约 430 和 556mg/g。此外,明胶-FeS 和 CMC-FeS 纳米粒子对环境盐度具有优异的耐受性。CMC-FeS 和明胶-FeS 表面固定的 U(VI)在一年以上保持稳定。这些发现表明,明胶-FeS 有可能用于从放射性废水中有效固定 U(VI)。