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Adsorption of Hg(II) from aqueous solution using functionalized hydrogel loaded with hydrous manganese dioxide particles

机译:用富含含氟锰二氧化锰颗粒的官能化水凝胶的水溶液吸附HG(II)

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摘要

In this paper, a high performance adsorbent (hydrous manganese oxides onto acylamino and hydroxyl functionalized hydrogel) containing manganese oxide was prepared by the cross-linking polymer; the novel composite adsorbent has an excellent adsorption for Hg(II) removal. The adsorbent was characterized by scanning electron microscopy and Fourier transform infrared analysis, the hydrogel adsorbent had a typical three-dimensional network structure, and manganese oxides particles were dispersed into the channel and pores structure. The adsorption of Hg2+ in water was tested by using the adsorbent. The results show that the adsorption isotherms were fitted well with Langmuir model, and the maximum Hg2+ adsorption capacity was 0.654 mmol g(-1) (131.2 mg g(-1)). The adsorption kinetics followed a pseudo-second-order equation, and the adsorption equilibrium can be reached in the first 120 min. The optimum pH of adsorption was determined to be 8.0. The desorption efficiency of 94% can be reached using 0.7 mol L-1 HCl as the regeneration agent. The results suggest that this material can be a promising adsorbent for Hg2+ removal in several industrial processes.
机译:本文采用交联聚合物制备含有锰氧化物的高性能吸附剂(含水氯氧化物上含丙氨酸和羟基官能化水凝胶);该新型复合吸附剂具有优异的Hg(II)去除吸附。通过扫描电子显微镜和傅里叶变换红外分析表征吸附剂,水凝胶吸附剂具有典型的三维网络结构,并且将锰氧化物颗粒分散到通道和孔结构中。通过使用吸附剂测试Hg2 +在水中的吸附。结果表明,随着Langmuir模型,吸附等温线均匀,最大HG2 +吸附容量为0.654mmol g(-1)(131.2mg g(-1))。吸附动力学遵循伪二阶方程,可以在前120分钟内达到吸附平衡。测定吸附的最佳pH值为8.0。使用0.7mol L-1 HCl作为再生剂,可以达到94%的解吸效率。结果表明,该材料可以是HG2 +在几种工业过程中去除的有希望的吸附剂。

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