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A green and simple method for preparation of an efficient palladium adsorbent based on cysteine functionalized2,3-dialdehyde cellulose

机译:一种基于半胱氨​​酸官能化的2,3-二醛纤维素的绿色简便的高效钯吸附剂的制备方法

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摘要

A green and efficient adsorbent for adsorption of palladium ions was prepared from 2,3-dialdehyde cellulose (DAC) originating from nanocellulose from the green algae Cladophora. The DAC was functionalized with cysteine via reductive amination in a convenient one-pot procedure to provide the adsorbent. The adsorption properties for adsorbing palladium(II) ions, including capacity, adsorption isotherm and kinetics, were studied. The successful reductive amination of cysteine with 2,3-dialdehyde cellulose was confirmed by FT-IR, elemental analysis and XPS. The adsorbent was characterized by SEM, XRD, gas adsorption and TGA. The adsorbent had a high adsorption capacity (130 mg palladium per gram adsorbent) and enabled fast adsorption of palladium(II) ions from solution (80 % of maximum capacity reached in 2 h). Adsorbent materials suitable for both filters (fibrous) and column matrixes (spherical particles) could be obtained in an efficient manner by controlling the degree of oxidation while producing the DAC material.
机译:从2,3-二醛纤维素(DAC)制备绿色和有效的钯离子吸附剂,DAC是由藻类绿藻Cladophora的纳米纤维素制成。在一个方便的一锅法中,通过还原胺化作用将半胱氨酸与DAC官能化,以提供吸附剂。研究了钯(II)离子的吸附性能,包括容量,吸附等温线和动力学。通过FT-IR,元素分析和XPS证实了2,3-二醛纤维素成功还原了半胱氨酸。通过SEM,XRD,气体吸附和TGA对吸附剂进行了表征。吸附剂具有高吸附容量(每克吸附剂含130 mg钯),并能从溶液中快速吸附钯(II)离子(在2小时内达到最大容量的80%)。通过在生产DAC材料的同时控制氧化程度,可以有效地获得适用于过滤器(纤维状)和柱状基质(球形颗粒)的吸附剂材料。

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