吸附
苯乙烯
材料科学
复合数
磺酸盐
聚合
聚合物
放射性废物
化学工程
共聚物
丙烯酸
动能
核化学
选择性吸附
高分子化学
钠
动力学
间歇式反应器
废水
催化作用
选择性
化学
辐照
三元运算
聚苯乙烯
嫁接
作者
Heba M. M. Abo‐Ehdahab,Mahmoud Goneam Hamed,W.F. Zaher,S. I. El‐Dessouky,Ε. H. Borai
摘要
ABSTRACT A crown ether‐functionalized polymeric composite, PSSS(AA‐18C6), was synthesized by γ‐radiation‐induced polymerization for the selective separation of Eu 3+ and Co 2+ from radioactive liquid waste. The composite was prepared by copolymerizing sodium styrene sulfonate and acrylic acid in the presence of 18‐crown‐6 and N,N′‐methylenediacrylamide. Optimum synthesis conditions were obtained at an irradiation dose of 20 kGy and 2 wt% crown ether. FTIR, SEM, and TGA confirmed the successful incorporation of 18‐crown‐6 into a porous, thermally stable crosslinked polymer network. Adsorption performance was strongly pH‐dependent, with maximum uptake at pH 5 and equilibrium attained within 90 min. Kinetic data were best described by the pseudo‐second‐order model ( R 2 = 0.99), indicating that adsorption was governed by interactions with the available functional sites. Maximum adsorption capacities reached 115 and 60 mg g −1 for Eu 3+ and Co 2+ , respectively, demonstrating the superior affinity of the composite toward Eu 3+ . Complete regeneration was achieved using EDTA, confirming excellent reusability. Application to simulated radioactive liquid waste containing 152+154 Eu and 60 Co resulted in removal efficiencies of 94% and 47%, respectively, demonstrating the potential of PSSS(AA‐18C6) as an efficient and selective adsorbent for radionuclide separation and radioactive wastewater treatment.
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