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基于二氧化硅的吸附剂对模拟高放废液中钯、钼和锆的协同吸附行为。

Synergistic adsorption behavior of a silica-based adsorbent toward palladium, molybdenum, and zirconium from simulated high-level liquid waste.

机构信息

Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University, Sendai 980-8579, Miyagi, Japan.

Department of Quantum Science and Energy Engineering, Graduate School of Engineering, Tohoku University, Sendai 980-8579, Miyagi, Japan.

出版信息

J Hazard Mater. 2021 Jun 5;411:125136. doi: 10.1016/j.jhazmat.2021.125136. Epub 2021 Jan 15.

Abstract

In this study, the synergistic adsorption behavior of palladium [Pd(II)], molybdenum [Mo(VI)], and zirconium [Zr(IV)] in simulated high-level liquid waste was systematically investigated based on various factors, such as the contact time, concentration of nitric acid, adsorption amount, and temperature using a silica-based adsorbent impregnated with N,N'-dimethyl-N,N'-di-n-hexyl-thiodiglycolamide (Crea) and 2, 2', 2' -nitrilotris[N,N-bis(2-ethylhexyl)acetamide] (TAMIA-EH). The adsorption rates of Pd(II), Mo(VI), and Zr(IV) in this synergistic adsorption system were high; thus, equilibrium states could be obtained in only 1 h with high uptake percentages of more than 90%. The adsorption abilities of Pd(II), Mo(VI), and Zr(IV) were only slightly affected by variation in the concentration of nitric acid in the range of 0.1-5 M and solution temperature in the range of 288-313 K. Selective stripping of the adsorbed Re(VII), Pd(II), Zr(IV), and Mo(VI) was successfully achieved under elution with 5 M HNO, 0.2 M Tu (pH 1), 50 mM DTPA (pH 2), and 50 mM DTPA dissolved in 0.5 M NaCO (pH 11) solutions using the chromatography method. In addition, the adsorption performance in solid-state was studied using the particle-induced X-ray emission (PIXE) method; the obtained results were in good agreement with the results obtained via column separation.

摘要

在这项研究中,基于各种因素,如接触时间、硝酸浓度、吸附量和温度,使用负载 N,N'-二甲基-N,N'-二正己基硫代二甘酰胺(Crea)和 2,2',2'- 三嗪三[N,N-双(2-乙基己基)乙酰胺](TAMIA-EH)的硅胶基吸附剂,系统研究了模拟高放废液中钯[Pd(II)]、钼[Mo(VI)]和锆[Zr(IV)]的协同吸附行为。在这种协同吸附体系中,Pd(II)、Mo(VI)和 Zr(IV)的吸附速率很高,因此仅需 1 小时即可达到平衡状态,吸附率超过 90%。硝酸浓度在 0.1-5 M 范围内和溶液温度在 288-313 K 范围内变化时,Pd(II)、Mo(VI)和 Zr(IV)的吸附能力仅受到轻微影响。采用 5 M HNO、0.2 M Tu(pH 1)、50 mM DTPA(pH 2)和 50 mM DTPA 溶解在 0.5 M NaCO(pH 11)溶液中作为洗脱液,成功地实现了对吸附的 Re(VII)、Pd(II)、Zr(IV)和 Mo(VI)的选择性洗脱。此外,还使用粒子诱导 X 射线发射(PIXE)法研究了固相中吸附性能,所得结果与柱分离得到的结果吻合良好。

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