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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Ultrahigh selective and efficient removal of anionic dyes by recyclable polyethylenimine-modified cellulose aerogels in batch and fixed-bed systems
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Ultrahigh selective and efficient removal of anionic dyes by recyclable polyethylenimine-modified cellulose aerogels in batch and fixed-bed systems

机译:批次和固定床系统中可回收聚乙烯菊氨酸改性纤维素气凝胶的超高选择性和高效除去阴离子染料

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A new type of polyethylenimine modified cellulose (PMC) aerogels were synthesized through a chemical cross-linking process, by which plenty of amine groups were introduced to the surface of cellulose aerogels. FT-IR, SEM, EDS, BET and XPS were used to characterize the physicochemical properties of this novel composite. The prepared aerogels were used to remove anionic dyes from effluents and it exhibited excellent adsorption performance in batch and fixed-bed experiments. Adsorption results indicated that PMC could efficiently, selectively separate anionic dyes from dye mixtures and maintain the maximum absorption capacity even after ten regeneration cycles, exhibiting superior selectivity and desirable recyclability. The maximum adsorption capacities of PMC for rose bengal and methyl blue were 1310.21 and 1333.04 mg/g, respectively, which were much higher than those of previously reported results. The Kinetics and isothermal adsorption data were well described by pseudo-second-order kinetic model and Langmuir model. The breakthrough curves obtained from fixed-bed systems were well fitted by Thomas model. Most importantly, anionic dyes could be efficiently removed even with high concentrations of coexisting anions. All these results manifested that PMC could be a promising candidate for sewage treatment, profiting from the fascinating merits of easy separation, low-cost, high adsorption capacity, strong anti-environment disturbance, superior reusability and selectivity.
机译:通过化学交联过程合成了一种新型的聚乙酰胺改性纤维素(PMC)气凝胶,通过将大量胺基引入纤维素Aerogels的表面。 FT-IR,SEM,EDS,BET和XPS用于表征该新型复合材料的物理化学性质。制备的气凝胶用于从流出物中除去阴离子染料,并且在分批和固定床实验中表现出优异的吸附性能。吸附结果表明PMC可以有效地,选择性地将来自染料混合物的阴离子染料分开,即使在十个再生循环后也能保持最大吸收能力,表现出优异的选择性和可取性的可回收性。 PMC用于玫瑰孟加拉和甲基蓝的最大吸附容量分别为1310.21和1333.04mg / g,远高于先前报道的结果。伪二阶动力学模型和Langmuir模型很好地描述了动力学和等温吸附数据。从固定床系统获得的突破性曲线由托马斯模型安装得很好。最重要的是,即使具有高浓度的共存阴离子,也可以有效地消除阴离子染料。所有这些结果表明,PMC可能是污水处理的有希望的候选人,从易于分离,低成本,高吸附能力,强烈的抗环境干扰,卓越的可重用性和选择性方面,利润兴趣。

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