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Facile Preparation of Magnetic Chitosan Coprecipitatedby Ethanol/NH3·H2O for Highly EfficientRemoval toward Cr(VI)

机译:磁性壳聚糖共沉淀的简便制备用乙醇/ NH3·H2O高效处理去除Cr(VI)

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摘要

The adsorption ability of chitosan (CS) usually decreases with the introduction of magnetic particles, and thus magnetic CS has to be chemically modified further to improve its adsorption performance. Herein, a novel magnetic chitosan composite (Fe3O4–CS3) with porous structure and evenly distributed Fe3O4 was successfully prepared via the reduction of the solubility of CS by ethanol (physical reaction), and followed the coprecipitation of the mixture of FeCl3/FeCl2/CS by ethanol/NH3·H2O. Without any modification, its maximum adsorption capacity toward Cr(VI) ions can achieve 242.1 mg/g (≈468.6 mg/g of CS). This significant progress could be ascribed to the very fast precipitate rate of CS due to the decrease in solubility induced by ethanol. Ethanol causes rigorous solidification of CS, so that there is not enough time to densify, resulting in a looser CS matrix with a larger pore size. After adsorption, this Fe3O4–CS3 could not only be easily separated but also be effectively regenerated by NaOH solution in a rather wider concentration range, showing great potential in the field of heavy metal wastewater treatment.
机译:壳聚糖(CS)的吸附能力通常随磁性颗粒的引入而降低,因此必须对化学CS进行化学修饰以提高其吸附性能。本文成功地通过乙醇降低CS的溶解度(物理反应),然后共沉淀FeCl3 / FeCl2 / CS混合物,成功制备了具有多孔结构和均匀分布的Fe3O4的新型磁性壳聚糖复合材料(Fe3O4-CS3)。通过乙醇/ NH3·H2O。无需任何修改,它对Cr(VI)离子的最大吸附容量就可以达到242.1 mg / g(≈468.6 mg / g CS)。这一重大进展可归因于由于乙醇诱导的溶解度降低而导致的CS极快的沉淀速率。乙醇会导致CS严格凝固,因此没有足够的时间进行致密化,从而导致CS基质松散,孔径增大。吸附后,这种Fe3O4-CS3不仅可以很容易地分离出来,而且可以在较宽的浓度范围内被NaOH溶液有效地再生,在重金属废水处理领域显示出巨大的潜力。

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