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用于从水溶液中有效去除铀(VI)离子的新型膦酸改性硅藻土吸附剂的优化合成

Optimal Synthesis of Novel Phosphonic Acid Modified Diatomite Adsorbents for Effective Removal of Uranium(VI) Ions from Aqueous Solutions.

作者信息

Kobylinska Natalia, Dudarko Oksana, Gładysz-Płaska Agnieszka, Tertykh Valentyn A, Majdan Marek

机构信息

A.V. Dumansky Institute of Colloid and Water Chemistry, National Academy of Science of Ukraine, 42, Akad. Vernadskogo Blvd., 03142 Kyiv, Ukraine.

Chuiko Institute of Surface Chemistry, National Academy of Science of Ukraine, 17 General Naumov Str., 03164 Kyiv, Ukraine.

出版信息

Materials (Basel). 2023 Jul 26;16(15):5263. doi: 10.3390/ma16155263.

Abstract

The authors synthesized a series of functionalized diatomite-based materials and assessed their U(VI) removal performance. Phosphor-derivative-modified diatomite adsorbents were synthesized by the three-route procedures: polymerisation (), covalent (), and non-covalent () immobilization of the functional groups. The effects of the diatomite modification have been studied using powder XRD, solid state NMR, FTIR spectroscopy, electronic microscopy, EDX, acid-base titrations, etc. The maximum adsorption capacities of , , and samples were 294.3 mg/g, 253.8 mg/g, and 315.9 mg/g, respectively, at pH = 9.0. The adsorption amount of U(VI) ions using the prepared was 95.63%, which is higher compared with that of the natural diatomite at the same concentration. The adsorption studies demonstrated that the phosphonic and hydroxyl groups on the surface of the diatomite played pivotal roles in the U(VI) adsorption. The U(VI) ions as a "" Lewis acid could easily form bonds with the "" donor P-containing ligands, so that the as-prepared sample had excellent adsorption properties. The monolayer adsorption of the analyte on the surface of the raw diatomite and was observed. It was found from the thermodynamic parameters that the uptake of the U(VI) ions by the obtained adsorbents was a spontaneous process with an endothermic effect. Findings of the present work highlight the potential for using modified diatomite as effective and reusable adsorbents for the extraction of U(VI) in the waste, river, and tap waters with satisfactory results.

摘要

作者合成了一系列功能化硅藻土基材料,并评估了它们对U(VI)的去除性能。通过三种途径合成了磷衍生物改性硅藻土吸附剂:官能团的聚合()、共价()和非共价()固定化。使用粉末XRD、固态NMR、FTIR光谱、电子显微镜、EDX、酸碱滴定等方法研究了硅藻土改性的效果。在pH = 9.0时,、和样品的最大吸附容量分别为294.3 mg/g、253.8 mg/g和315.9 mg/g。使用制备的吸附U(VI)离子的量为95.63%,与相同浓度下的天然硅藻土相比更高。吸附研究表明,硅藻土表面的膦酸基和羟基在U(VI)吸附中起关键作用。U(VI)离子作为“”路易斯酸可以很容易地与“”供体含P配体形成键,因此制备的样品具有优异的吸附性能。观察到分析物在原生硅藻土和表面的单层吸附。从热力学参数发现,所获得的吸附剂对U(VI)离子的吸收是一个具有吸热效应的自发过程。本工作的发现突出了使用改性硅藻土作为有效且可重复使用的吸附剂从废水、河水和自来水中提取U(VI)的潜力,结果令人满意。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3df/10419580/d3604cc6db43/materials-16-05263-g001.jpg

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