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汞(II)形态在裸露和改性的磁性壳聚糖薄片上的去除的对比研究:动力学和热力学模拟。

Comparative study of mercury(II) species removal onto naked and modified magnetic chitosan flakes coated ethylenediaminetetraacetic-disodium: kinetic and thermodynamic modeling.

机构信息

University Center of Naâma, BP 66, 45000, Naâma, Algeria.

Laboratory of Inorganic Chemistry and Environment, Department of Chemistry, Tlemcen University, Box 119, Tlemcen, Algeria.

出版信息

Environ Sci Pollut Res Int. 2018 Sep;25(25):24923-24938. doi: 10.1007/s11356-018-2553-6. Epub 2018 Jun 21.

Abstract

This comparative study investigates pre-concentration/separation procedure for the magnetic solid phase extraction of Hg(II) species by a new green materials: naked magnetic chitosan flakes coated FeO micro-particles (NMCFs) and magnetic chitosan flakes coated FeO micro-particles embedded ethylenediaminetetraacetic-disodium (MCFs-EDTA-Na) in a batch process. The sorption procedure was optimized by using model solutions containing mercury(II) ions in chloride medium. The influence of experimental parameters like pH, time reaction, initial Hg(II) concentration, and ionic strength was investigated. The SEM micrograph indicates a good dispersion of magnetite micro-particles onto chitosan flakes. The FTIR spectrum reveals that EDTA-Na moieties have been successfully cross-linked onto magnetic chitosan flakes. Vibration magneto-metric measurements confirm the paramagnetic (without remanence) behavior of NMCFs and MCFs-EDTA-Na. The experimental sorption data show that Hg(II) ions extraction yield decreases in acidic medium in both NMCFs and MCFs-EDTA-Na. The found optimum pH values are near 4.5 using NMCFs and 4.7 when the Hg(II) ion sorption occurs onto MCFs-EDTA-Na micro-particles. The results also showed that Hg(II) ion sorption kinetic was very fast at the initial stage of contact time. The maximal sorption capacity was found to be 454 ± 13 mg g, under optimum conditions, using NMCFs and 495 ± 14 mg g when MCFs-EDTA-Na was used.

摘要

本对比研究调查了预浓缩/分离程序,用于通过新的绿色材料:裸磁壳聚糖薄片涂覆的 FeO 微粒子(NMCFs)和磁壳聚糖薄片涂覆的 FeO 微粒子嵌入乙二胺四乙酸二钠(MCFs-EDTA-Na)在批处理过程中萃取 Hg(II)物种。通过使用含有氯化介质中汞(II)离子的模型溶液优化了吸附程序。研究了实验参数如 pH 值、反应时间、初始 Hg(II)浓度和离子强度的影响。SEM 显微照片表明,磁铁矿微粒子在壳聚糖薄片上具有良好的分散性。FTIR 光谱表明 EDTA-Na 部分已成功交联到磁壳聚糖薄片上。振动磁计量测量证实了 NMCFs 和 MCFs-EDTA-Na 的顺磁(无剩磁)行为。实验吸附数据表明,在 NMCFs 和 MCFs-EDTA-Na 中,Hg(II)离子的萃取率在酸性介质中降低。使用 NMCFs 时,最佳 pH 值约为 4.5,而当 Hg(II)离子吸附到 MCFs-EDTA-Na 微粒子上时,最佳 pH 值为 4.7。结果还表明,Hg(II)离子吸附动力学在接触时间的初始阶段非常快。在最佳条件下,使用 NMCFs 时,最大吸附容量为 454 ± 13 mg/g,而使用 MCFs-EDTA-Na 时,最大吸附容量为 495 ± 14 mg/g。

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