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Selective removal of acidic pharmaceuticals from contaminated lake water using multi-templates molecularly imprinted polymer

机译:使用多模板分子印迹聚合物从受污染的湖水中选择性去除酸性药物

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摘要

A novel multi-templates molecularly imprinted polymer (MIP), using acidic pharmaceuticals mixture (ibuprofen (IBP), naproxen (NPX), ketoprofen (KEP), diclofenac (DFC), and clofibric acid (CA)) as the template, was prepared for the removal of acidic pharmaceuticals from contaminated water. The sorption behaviors of the MIP including sorption kinetics, isotherms, effect of pH and ionic strength were investigated in detail. The MIP exhibited excellent selectivity affinity toward five acidic pharmaceuticals with higher binding capacity in water compared to non-imprinted polymer (NIP). The pseudo-second-order model well described the adsorption of acidic pharmaceuticals on the MIP. The feasibility of applying MIP for removing acidic pharmaceuticals from contaminated environmental water was demonstrated by comparing the adsorption capacity of acidic pharmaceuticals in spiked lake water to that in deionized water. In addition, the MIP could be used at least fifteenth cycles without obvious loss in adsorption capacity.
机译:以酸性药物混合物(布洛芬(IBP),萘普生(NPX),酮洛芬(KEP),双氯芬酸(DFC)和氯纤维酸(CA))为模板,制备了一种新型的多模板分子印迹聚合物(MIP)。用于从污水中去除酸性药物。详细研究了MIP的吸附行为,包括吸附动力学,等温线,pH值和离子强度的影响。与非印迹聚合物(NIP)相比,MIP对五种酸性药物具有优异的选择性亲和力,在水中具有更高的结合能力。伪二级模型很好地描述了酸性药物在MIP上的吸附。通过比较加标的湖水中的酸性药物与去离子水中的酸性药物的吸附能力,证明了应用MIP从受污染的环境水中去除酸性药物的可行性。此外,MIP至少可以使用第十五个周期而不会明显降低吸附能力。

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