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Fabrication and Highly Efficient Dye Removal Characterization of Beta-Cyclodextrin-Based Composite Polymer Fibers by Electrospinning

机译:β-环糊精基复合聚合物纤维的电纺丝制备及高效脱色性能

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摘要

Dye wastewater is one of the most important problems to be faced and solved in wastewater treatment. However, the treatment cannot be single and simple adsorption due to the complexity of dye species. In this work, we prepared novel composite fiber adsorbent materials consisting of ε-polycaprolactone (PCL) and beta-cyclodextrin-based polymer (PCD) by electrospinning. The morphological and spectral characterization demonstrated the successful preparation of a series of composite fibers with different mass ratios. The obtained fiber materials have demonstrated remarkable selective adsorption for MB and 4-aminoazobenzene solutions. The addition of a PCD component in composite fibers enhanced the mechanical strength of membranes and changed the adsorption uptake due to the cavity molecular structure via host–guest interaction. The dye removal efficiency could reach 24.1 mg/g towards 4-aminoazobenzene. Due to the admirable stability and selectivity adsorption process, the present prepared beta-cyclodextrin-based composite fibers have demonstrated potential large-scale applications in dye uptake and wastewater treatment.
机译:染料废水是废水处理中要面对和解决的最重要问题之一。然而,由于染料种类的复杂性,该处理不能是简单而简单的吸附。在这项工作中,我们通过静电纺丝制备了由ε-聚己内酯(PCL)和基于β-环糊精的聚合物(PCD)组成的新型复合纤维吸附材料。形态和光谱表征证明成功制备了一系列不同质量比的复合纤维。所获得的纤维材料显示出对MB和4-氨基偶氮苯溶液的显着选择性吸附。在复合纤维中添加PCD成分可增强膜的机械强度,并通过主体与客体之间的相互作用而改变腔体分子结构,从而改变了吸附吸收。对4-氨基偶氮苯的染料去除效率可以达到24.1 mg / g。由于令人钦佩的稳定性和选择性吸附过程,目前制备的基于β-环糊精的复合纤维在染料吸收和废水处理中已显示出潜在的大规模应用。

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