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首页> 外文期刊>Water, Air, and Soil Pollution >Evaluation of the Cr(Ⅵ) Adsorption Performance of Xanthate Polysaccharides Supported onto Agave Fiber-LDPE Foamed Composites
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Evaluation of the Cr(Ⅵ) Adsorption Performance of Xanthate Polysaccharides Supported onto Agave Fiber-LDPE Foamed Composites

机译:龙舌兰纤维-LDPE发泡复合材料负载黄原酸酯多糖对Cr(Ⅵ)的吸附性能评价

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In this work, hexavalent chromium adsorption onto LDPE and agave fiber composites coated with chitosan or cellulose was studied in batch experiments. Chemical modifications consisting in cross-linked chitosan, cross-linked chitosan xanthate, and cellulose xanthate were applied to the polysaccharide-coated sorbents in order to increase their stability and adsorption capacity. The sorbents were characterized in terms of morphology by scanning electron microscopy and their chemical composition was evaluated by infrared and nuclear magnetic resonance spectroscopies. The results showed that the adsorption kinetics followed the pseudo-second-order model in all cases (i.e., chemisorption as the rate-limiting step of the adsorption reaction). Moreover, the isotherms evidenced a monolayer adsorption on homogeneous sites described by the Langmuir model. The maximum adsorption capacity of 284.7 mg Cr(VI)/g was obtained for the cross-linked chitosan xanthate sorbent at pH4 which represents an increase of 43% against the chitosan-coated sorbent (199.1 mg Cr(VI)/g). Besides, functionalized cellulose sorbent also increased its capacity from 84.5 to 106.0 mg Cr(VI)/g cellulose due to the xanthate group. Up to six adsorption-desorption cycles were completed for the case of functionalized chitosan sorbent, confirming that the stability was increased with the cross-linking and the material could be reused several times without losing its adsorption capacity. In the case of cellulose xanthate, only three adsorption cycles were completed. However, improvements were observed in the desorption capacity considering that it decreased below 20% after two cycles in the cellulose-coated sorbent.
机译:在这项工作中,分批实验研究了六价铬吸附到LDPE和覆有壳聚糖或纤维素的龙舌兰纤维复合材料上的过程。为了提高它们的稳定性和吸附能力,将化学交联剂包括交联的壳聚糖,交联的壳聚糖黄原酸酯和纤维素黄原酸酯,应用于多糖包被的吸附剂。通过扫描电子显微镜对吸附剂的形态进行表征,并通过红外和核磁共振波谱对吸附剂的化学组成进行评估。结果表明,在所有情况下(即化学吸附是吸附反应的限速步骤),吸附动力学都遵循拟二级模型。此外,等温线证明了在Langmuir模型描述的均匀位置上有单层吸附。在pH4下,交联的壳聚糖黄原酸酯吸附剂的最大吸附容量为284.7 mg Cr(VI)/ g,相对于壳聚糖包衣的吸附剂(199.1 mg Cr(VI)/ g)增加了43%。此外,由于黄原酸酯基团的作用,功能化纤维素吸附剂的容量也从84.5增加到106.0 mg Cr(VI)/ g纤维素。对于功能化的壳聚糖吸附剂,最多完成了六个吸附-解吸循环,这证实了通过交联可以提高稳定性,并且该材料可以重复使用多次而不会失去其吸附能力。在纤维素黄药的情况下,仅完成了三个吸附循环。但是,观察到解吸能力有所提高,因为在两个循环中,在纤维素涂覆的吸附剂中解吸能力降低至20%以下。

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