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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Chitosan-based ion-imprinted cryo-composites with excellent selectivity for copper ions
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Chitosan-based ion-imprinted cryo-composites with excellent selectivity for copper ions

机译:基于壳聚糖的离子压印的低温复合材料,具有优异的铜离子选择性

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摘要

An original strategy is proposed here to design chitosan-based ion-imprinted cryo-composites (II-CCs) with pre-organized recognition sites and tailored porous structure by combining ion-imprinting and ice-templating techniques. The cryo-composites showed a tube-like porous morphology with interconnected parallel micro-channels, the distance between the channel walls being around 15 mu m. Both the entrapment of a natural zeolite and the presence of carboxylate groups, generated by partial hydrolysis of amide moieties, led to II-CCs with controlled swelling ratios (25-40 g/g, depending on pH) and enhanced overall chelating efficiency (260 mg Cu2+/g composite). To point out the importance of introducing Cu2+ recognition sites, sorption experiments using mixtures of Cu2+ and other competing ions (Co2+, Ni2+, Zn2+ or/and Pb2+) were also carried out. The higher values of selectivity coefficients obtained for the II-CCs compared to those of non-imprinted ones highlight the remarkable potential of our sorbents for decontamination of wastewaters and recycling of Cu2+ ions.
机译:这里提出了一种原始策略来设计基于壳聚糖的离子压印的低温复合材料(II-CCS),通过结合离子印迹和冰模板技术来定制多孔结构。低温复合材料显示出具有互连的平行微通道的管状多孔形态,通道壁之间的距离约为15μm。通过酰胺部分的部分水解产生的天然沸石和羧酸盐基团的存在,导致II-CC,其具有受控溶胀比(25-40g / g,取决于pH)并提高整体螯合效率(260 Mg Cu2 + / g复合材料)。为了指出引入Cu2 +识别位点的重要性,还进行了使用Cu2 +和其他竞争离子的混合物(CO 2 +,Ni2 +,Zn2 +或/和PB2 +)的吸附实验。与非印记相比,对II-CCS获得的选择性系数的较高值突出了我们吸附剂的显着潜力,以进行废水的废水和Cu2 +离子的再循环。

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