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偕胺肟修饰壳聚糖基离子印迹聚合物用于选择性去除铀酰离子。

Amidoxime modified chitosan based ion-imprinted polymer for selective removal of uranyl ions.

机构信息

Department of Chemistry, University College-Alwajh, University of Tabuk, Tabuk, Saudi Arabia; Department of Polymers and Pigments, National Research Centre, Dokki, Cairo 12311, Egypt.

Department of Chemistry, Faculty of Science, University of Tabuk, Tabuk 71421, Saudi Arabia.

出版信息

Carbohydr Polym. 2021 Mar 15;256:117509. doi: 10.1016/j.carbpol.2020.117509. Epub 2020 Dec 15.

Abstract

Ion-imprinting strategy was utilized in the development of UO(II) imprinted amidoxime modified chitosan sorbent (U-AOCS) that can selectively remove UO(II) from water. First, cyanoactic acid was linked to the chitosan -NH groups and then the inserted -CN groups were converted into amidoxime moieties, which chelate the UO(II) ions and then the polymer chains were cross-linked by glyoxal. The UO(II) ions have been then eluted leaving their matching recognition sites. The prepared U-AOCS along with the control NIP displayed maximum capacities toward the UO(II) ions around 332 and 186 mg/g, respectively, and the isotherms were interpreted better by the Langmuir model in both adsorbents. Moreover, the selective uptake of the uranyl ions in multi-ionic aqueous solutions containing the tetravalent Th(IV) ions, trivalent Al(III), Eu(III), and Fe(III) ions, beside the divalent Pb(II), Co(II), Ni(II), Cu(II) ions confirmed the successful creation of a considerable UO(II) ions selectivity in the U-AOCS construction. In addition, the U-AOCS adsorbent displayed economic feasibility by maintaining around 95 % of its initial efficiency after the regeneration and reuse for 5 adsorption/desorption cycles.

摘要

离子印迹策略被用于开发UO(II)印迹的偕胺肟改性壳聚糖吸附剂(U-AOCS),该吸附剂可从水中选择性地去除 UO(II)。首先,氰基乙二酸与壳聚糖的 -NH 基团相连,然后插入的 -CN 基团被转化为偕胺肟部分,与 UO(II)离子螯合,然后通过乙二醛使聚合物链交联。然后洗脱 UO(II)离子,留下其匹配的识别位点。制备的 U-AOCS 与对照 NIP 相比,对 UO(II)离子的最大容量分别约为 332 和 186 mg/g,并且两种吸附剂的等温线都更好地由朗缪尔模型解释。此外,在含有四价 Th(IV)离子、三价 Al(III)、Eu(III)和 Fe(III)离子以及二价 Pb(II)、Co(II)、Ni(II)和 Cu(II)离子的多离子水溶液中,铀酰离子的选择性摄取证实了在 U-AOCS 结构中成功创造了相当大的 UO(II)离子选择性。此外,U-AOCS 吸附剂在 5 次吸附/解吸循环后再生和重复使用时,其初始效率保持在 95%左右,表现出经济可行性。

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