Laboratory of Environmental Technology, INET, Tsinghua University, Beijing 100084, PR China.
State Key Laboratory of New Textile Materials and Advanced Processing Technologies, Wuhan Textile University, Wuhan 430200, PR China.
Sci Total Environ. 2022 Aug 20;835:155575. doi: 10.1016/j.scitotenv.2022.155575. Epub 2022 Apr 29.
Selective and effective adsorptive removal of radiocesium is of great importance in terms of nuclear waste management and environmental remediation, but is still challenging because of its radioactive and non-complexing nature. Herein, metal hexacyanoferrates (MHCF, M = Cu, Co, or Ni) modified fibrous chitosan was prepared by multiple sequential adsorption and self-assembly approach, and applied for the selective and effective adsorption of Cs. The physically supported MHCF in chitosan fibers showed good crystallinity and stability, and the obtained fibrous composite has high specific surface area (18.2-29.4 m g). Moreover, MHCF crystals endowed the fibrous chitosan-based adsorbent with a high adsorption capacity and selectivity towards Cs. Its adsorption kinetic and isotherm performance followed the pseudo second-order model and the Sips model. The q value of three fibrous MHCF/chitosan (M = Cu, Co, or Ni) composites was 24.9-70.3 mg g. The fibrous CuHCF/chitosan composite had the highest q among the three composites. In summary, the modified chitosan can selectively and effectively remove Cs from complicated aqueous solutions.
选择性和有效地去除放射性铯对于核废料管理和环境修复非常重要,但由于其放射性和非配位性质,仍然具有挑战性。在此,通过多次顺序吸附和自组装方法制备了金属六氰合铁酸盐(MHCF,M = Cu、Co 或 Ni)修饰的纤维壳聚糖,并将其应用于 Cs 的选择性和有效吸附。壳聚糖纤维中物理支撑的 MHCF 表现出良好的结晶度和稳定性,所得纤维复合材料具有高比表面积(18.2-29.4 m g)。此外,MHCF 晶体赋予基于纤维壳聚糖的吸附剂对 Cs 具有高吸附容量和选择性。其吸附动力学和等温线性能遵循准二级模型和 Sips 模型。三种纤维 MHCF/壳聚糖(M = Cu、Co 或 Ni)复合材料的 q 值为 24.9-70.3 mg g。三种复合材料中,纤维 CuHCF/壳聚糖复合材料的 q 值最高。总之,改性壳聚糖可以从复杂的水溶液中选择性和有效地去除 Cs。