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Preparation of Chitosan Stacking Membranes for Adsorption of Copper Ions

机译:壳聚糖堆积膜吸附铜离子的制备

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摘要

Chitosan (CS) stacking mats with excellent performance for adsorption of copper ions (Cu(II)) in wastewater were fabricated by alternating electrospinning/electrospraying. The hierarchical structure of the stacking membranes was designed by CS micro-hemispheres sandwiched between CS fibers. The CS stack membranes prepared by the electrospinning technology could effectively increase the specific surface area, and thus, facilitate the adsorption of copper ions. CS stacking membranes with three layers reached adsorption equilibrium within 60 min, and had a maximum absorbance of 276.2 mg/g. The absorbance performance was superior to most of the reported CS adsorbents. Compared with CS fiber mats which were dominated by CS chemical structure during adsorption, the stacking structure of CS membranes contributed to the high efficient capability, and exhibited the multilayer adsorption behavior. This study may develop a promising method for the design of environmentally-friendly natural polymer adsorbents to remove Cu(II) in wastewater.
机译:通过交替电纺丝/电喷雾制备了壳聚糖(CS)堆叠垫,该堆叠垫具有优异的吸附废水中铜离子(Cu(II))的性能。叠层膜的分层结构是由夹在CS纤维之间的CS微半球设计的。通过静电纺丝技术制备的CS叠层膜可以有效地增加比表面积,从而促进铜离子的吸附。具有三层的CS堆叠膜在60分钟内达到吸附平衡,最大吸光度为276.2 mg / g。吸收性能优于大多数报道的CS吸附剂。与吸附过程中以CS化学结构为主的CS纤维毡相比,CS膜的堆叠结构有助于其高效率的发挥,并表现出多层吸附性能。这项研究可能为设计环保的天然聚合物吸附剂以去除废水中的Cu(II)开发一种有前途的方法。

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