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UV-radiation curing of simultaneous interpenetrating polymer network hydrogels for enhanced heavy metal ion removal

机译:同时互穿的聚合物网络水凝胶的UV辐射固化可增强重金属离子去除能力

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Simultaneous interpenetrating polymer network (IPN) hydrogels have been prepared by UV-initiated polymerization of a mixture of acrylamide (AM) and triethylene glycol divinyl ether (DVE-3). The consumption of each monomer upon UV-irradiation was monitored in situ by real-time infrared (RTIR) spectroscopy. The acrylamide monomer AM was shown to polymerize faster and more extensively than the vinyl ether monomer DVE-3, which was further consumed upon storage of the sample in the dark, due to the living character of the cationic polymerization. The IPN hydrogels were used to remove heavy metal ions from aqueous solution under the non-competitive condition. The effects of pH values of the feed solution and the DVE-3 content in the formulation on the adsorption capacity were investigated. The results indicated that the adsorption capacity of the IPN hydrogels increased with the pH values and DVE-3 content in the formulation. Furthermore, the synergistic complexation of metal ions with two polymer networks in the IPN was found in the adsorption studies. Adsorption kinetics and regeneration studies suggested that the IPN hydrogels could be used as fast-responsive and renewable sorbent materials in heavy metal removing processes.
机译:同时互穿聚合物网络(IPN)水凝胶已通过紫外线引发丙烯酰胺(AM)和三甘醇二乙烯基醚(DVE-3)的混合物进行聚合制备。通过实时红外(RTIR)光谱原位监测UV照射下每种单体的消耗。与丙烯醚单体DVE-3相比,丙烯酰胺单体AM显示出更快和更广泛的聚合,由于阳离子聚合的活性,在黑暗中保存样品后乙烯基醚单体DVE-3被进一步消耗。 IPN水凝胶用于在非竞争条件下从水溶液中去除重金属离子。研究了进料溶液的pH值和制剂中DVE-3的含量对吸附容量的影响。结果表明,IPN水凝胶的吸附能力随配方中的pH值和DVE-3含量的增加而增加。此外,在吸附研究中发现了金属离子与IPN中的两个聚合物网络的协同络合。吸附动力学和再生研究表明,IPN水凝胶可在重金属去除过程中用作快速响应和可再生的吸附剂材料。

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