Department of Biomedical Engineering, Oregon Health and Science University (OHSU) School of Medicine, Portland, OR, USA.
Pacific Northwest National Laboratory (PNNL), Richland, WA, USA.
J Hazard Mater. 2019 Mar 15;366:677-683. doi: 10.1016/j.jhazmat.2018.12.043. Epub 2018 Dec 14.
This work evaluated sorbent materials created from nanoporous silica self-assembled with monolayer (SAMMS) of hydroxypyridinone derivatives (1,2-HOPO, 3,2-HOPO, 3,4-HOPO), acetamide phosphonate (Ac-Phos), glycine derivatives (IDAA, DE4A, ED3A), and thiol (SH) for capturing of actinides and transition metal cobalt. In filtered seawater doped with competing metals (Cr, Mn, Fe, Co, Cu, Zn, Se, Mo) at levels encountered in environmental or physiological samples, 3,4-HOPO-SAMMS was best at capturing uranium (U(VI)) from pH 2-8, Ac-Phos and 1,2-HOPO-SAMMS sorbents were best at pH < 2. 3,4-HOPO-SAMMS effectively captured thorium (Th(IV)) and plutonium (Pu(IV)) from pH 2-8, and americium (Am(III)) from pH 5-8. Capturing cobalt (Co(II)) from filtered river water doped with competing metals (Cu, As, Ag, Cd, Hg, Tl, and Pb) was most effective from pH 5-8 with binding affinity ranged from IDAA > DE4A > ED3A > Ac-Phos > SH on SAMMS. Iminodiacetic acid (IDAA)-SAMMS was also outstanding at capturing Co(II) in ground and seawater. Within 5 min, over 99% of U(VI) and Co(II) in seawater was captured by 3,4-HOPO-SAMMS and IDAA-SAMMS, respectively. These nanoporous materials outperformed the commercially available cation sorbents in binding affinity and adsorption rate. They have great potential for water treatment and recovery of actinides and cobalt from complex matrices.
这项工作评估了由纳米孔硅自组装的吸附剂材料,这些材料具有单层(SAMMS)的羟吡啶衍生物(1,2-HOPO、3,2-HOPO、3,4-HOPO)、乙酰胺膦酸(Ac-Phos)、甘氨酸衍生物(IDAA、DE4A、ED3A)和硫醇(SH),用于捕获锕系元素和过渡金属钴。在含有竞争金属(Cr、Mn、Fe、Co、Cu、Zn、Se、Mo)的过滤海水中,在环境或生理样品中遇到的水平下,3,4-HOPO-SAMMS 在 pH 2-8 范围内最能捕获铀(U(VI)),Ac-Phos 和 1,2-HOPO-SAMMS 吸附剂在 pH<2 时最有效。3,4-HOPO-SAMMS 能有效地从 pH 2-8 范围内捕获钍(Th(IV))和钚(Pu(IV)),并从 pH 5-8 范围内捕获镅(Am(III))。用竞争金属(Cu、As、Ag、Cd、Hg、Tl 和 Pb)掺杂的过滤河水,从 pH 5-8 范围内用结合亲和力范围为 IDAA>DE4A>ED3A>Ac-Phos>SH 在 SAMMS 上最有效地捕获钴(Co(II))。亚氨基二乙酸(IDAA)-SAMMS 在捕获地面和海水中的 Co(II)方面也表现出色。在 5 分钟内,3,4-HOPO-SAMMS 和 IDAA-SAMMS 分别捕获了海水中超过 99%的 U(VI)和 Co(II)。这些纳米多孔材料在结合亲和力和吸附速率方面优于市售的阳离子吸附剂。它们具有从复杂基质中处理水和回收锕系元素和钴的巨大潜力。