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Synthesis of multi-ion imprinted polymers based on dithizone chelation for simultaneous removal of Hg2+, Cd2+, Ni2+ and Cu2+ from aqueous solutions

机译:基于二硫醚螯合的多离子印迹聚合物的合成同时除去HG2 +,CD2 +,Ni2 +和Cu2 +水溶液

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Simultaneous analysis and removal of various heavy metal ions has received increasing concerns because they are usually co-existent with different toxicological effects. Ion imprinted polymers (IIPs) can effectively identify water-soluble ions especially heavy metal ions, however, multi-ion imprinting is rarely performed owing to possible cross-reactivity and matrix interferences. In this work, a novel and generally applicable IIPs strategy was proposed for simultaneous preconcentration and removal of four heavy metal ions based on dithizone chelation. Multi-ion imprinted polymers (MIIPs) embedded in a sol–gel matrix were prepared by using Hg ~(2+) , Cd ~(2+) , Ni ~(2+) and Cu ~(2+) as templates and 3-aminopropyltriethoxysilane as a functional monomer, and the possible synergy mechanism was explored between dithizone coordination chemistry and multi-ion imprinting. The structures, morphologies and thermostability of MIIPs were well characterized by Fourier transform infrared (FT-IR), scanning electron microscopy (SEM), Brunauer–Emmett–Teller (BET) and thermogravimetry analysis (TGA). The resultant MIIPs showed high binding capacity and fast dynamics, and the adsorption processes obeyed Langmuir isotherm and pseudo-second-order dynamic models. The MIIPs displayed excellent selectivity toward the four target ions particularly over Pb ~(2+) , Zn ~(2+) and Co ~(2+) with selective coefficients of 6.8–16.9, as well as high anti-interference ability when confronted with common co-present various ions. Moreover, a high preparation yield of 41% and good reusability over 90% desorption efficiency were obtained. Consequently, the MIIPs were used as solid-phase extraction sorbents for preconcentration of trace Hg ~(2+) , Cd ~(2+) , Ni ~(2+) and Cu ~(2+) , presenting high detectability up to 6.0–22.5 ng L ~(?1) and satisfactory recoveries ranging from 94.7–110.2% in seawater samples. The developed MIIPs-based method proved to be a practically feasible method in heavy metal removal and water pretreatment.
机译:同时分析和去除各种重金属离子的越来越多的问题,因为它们通常与不同的毒理学作用共存。离子印迹聚合物(IIPS)可以有效地鉴定水溶性离子,特别是重金属离子,然而,由于可能的交叉反应性和基质干扰,很少进行多离子印刷。在这项工作中,提出了一种新颖的和一般适用的IIPS策略,用于基于二硫腙螯合的同时浓缩和去除四种重金属离子。通过使用Hg〜(2+),Cd〜(2+),Ni〜(2+)和Cu〜(2+)作为模板和3制备嵌入溶胶 - 凝胶基质中的多离子印迹聚合物(MiIPs)。 - 氨基丙基三乙氧基硅烷作为官能单体,并且在二硫醚配位化学和多离子印记之间探讨了可能的协同机制。 MiIPS的结构,形态和热稳定性很好地表征了傅里叶变换红外(FT-IR),扫描电子显微镜(SEM),Brunauer-Emmett-Teller(Bet)和热重率分析(TGA)。所得到的MiIPS显示出高粘合能力和快速动力学,吸附过程遵循Langmuir等温线和伪二阶动态模型。 MiIPS朝向四个靶离子的选择性出色的选择性,特别是在Pb〜(2+),Zn〜(2+)和Co〜(2+)上,选择性系数为6.8-16.9,以及当面对时的高抗干扰能力共同共同存在各种离子。此外,获得了41%的高制备产率和超过90%解吸效率的良好可重用性。因此,MiIPS用作固相提取吸附剂,用于痕量Hg〜(2+),Cd〜(2+),Ni〜(2+)和Cu〜(2+)的前浓度,呈现高达6.0的高可检测性-22.5 ng l〜(?1)和令人满意的回收率在海水样本中的94.7-110.2%。基于开发的MiIPS的方法被证明是一种实际上可行的重金属去除和水预处理方法。

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