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A New Ion-Imprinted Chitosan-Based Membrane with an Azo-Derivative Ligand for the Efficient Removal of Pd(II)

机译:一种新型的具有偶氮衍生物配体的离子印迹壳聚糖基膜用于有效去除Pd(II)

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摘要

Herein, we described the synthesis of a novel ion-imprinted membrane for the detection of palladium(II) prepared through the glutaraldehyde crosslinking of chitosan with a 4-[(4-Hydroxy)phenylazo]benzenesulfonic acid ligand trapped into the membrane. The imprinting technology was used to improve adsorption capacity and adsorption selectivity, and was combined with some advantages of the developed membrane, such as low cost and ease of preparation, water-friendly synthesis, and high biocompatible chitosan material. The membranes were characterized by Fourier Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy (SEM), and Energy Dispersive X-ray Spectrometry (EDS). The results obtained showed a high swelling ratio with a maximum value of 16.4 (1640%) at pH 4 with a strong pH dependence. Batch rebinding experiments gave a maximum adsorption capacity of 101.6 mg of Pd(II) per gram of imprinted membrane. The Pd(II) adsorption behavior was well-described by a Langmuir model with a theoretical maximum adsorption capacity of 93.48 mg g−1, similar to the experimental one. Finally, a selectivity study versus Ag(I), Pb(II), and Fe(III) ions demonstrated a good selectivity of chitosan-imprinted membrane towards Pd(II).
机译:在这里,我们描述了一种新型的离子印迹膜的合成,该膜用于检测钯(II),该钯是通过壳聚糖与捕获在膜中的4-[(4-羟基)苯基偶氮]苯磺酸配体的戊二醛交联制备的。压印技术用于提高吸附能力和吸附选择性,并与已开发的膜的一些优点相结合,例如成本低廉,易于制备,水友好的合成方法以及具有高生物相容性的壳聚糖材料。通过傅立叶变换红外光谱(FTIR),扫描电子显微镜(SEM)和能量色散X射线光谱(EDS)对膜进行表征。获得的结果显示出高的溶胀率,在pH 4时最大值为16.4(1640%),具有很强的pH依赖性。分批重新结合实验给出的最大吸附能力为每克印迹膜101.6 mg Pd(II)。用Langmuir模型可以很好地描述Pd(II)的吸附行为,其理论最大吸附容量为93.48 mg g -1 ,与实验值相似。最后,针对Ag(I),Pb(II)和Fe(III)离子的选择性研究表明,壳聚糖印迹膜对Pd(II)具有良好的选择性。

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