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Selective removal of chromium (VI) from sulphates and other metal anions using an ion-imprinted polymer

机译:使用离子印迹聚合物从硫酸根和其他金属阴离子中选择性去除铬(VI)

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摘要

A linear copolymer was prepared from 4-vinylpyridine and styrene. An ion-imprinted polymer (IIP) specific for Cr (VI) adsorption was prepared by copolymerisation of the quaternised linear copolymer (quaternised with 1,4-chlorobutane), 2-vinylpyridine functional monomer and ethylene glycol dimethacrylate (EGDMA), as the cross-linking monomer, in the presence of l,l'-azobis(cyclohexanecarbonitrile) as initiator. Ammonium dichromate and aqueous methanol were used as a template and porogenic solvent, respectively. Leaching of the chromate template from the polymer particles was achieved with successive stirring of the ion-imprinted polymer (IIP) particles in 4 M HNO_3 solutions to obtain leached materials, which were then used for selective rebinding of Cr (VI) ions from aqueous solutions. Similarly, the non-imprinted polymer/ control polymer (NIP/CP) material was also prepared under exactly the same conditions as the IIP but without the chromate anion template. Various parameters, such as solution pH, initial concentration, aqueous phase volume, sorbent dosage, contact time and leaching solution volumes, were investigated. Scanning electron microscopy (SEM), Fourier Transform Infrared (FTIR) spectroscopy, BET surface area and pore size analysis were used for the characterisation of IIP (both unleached and leached) and CP materials. Optimal parameters were as follows: solution pH, 3; contact time, 120 min; elu-ent, 20 mℓ of 0.1 M NaOH; and sorbent amount, 125 mg. Maximum retention capacity of IIP and CP was 37.58 and 25.44 mg-g~(-1), respectively. The extraction efficiencies of the IIP and CP were compared using a batch and SPE mode of extraction. In the absence of high concentrations of ions, especially sulphate ions, both CP and IIP demonstrated no differences in binding of Cr (VI), which was almost 100%. However, in the presence of high concentrations of sulphate ions, the selectivity on the CP completely collapsed. The study clearly demonstrates the suitably of the developed IIP for selective extraction of Cr (VI) in complex samples such as those from acid mine drainage. The selectivity was also compared by direct injection of the real-world sample, both spiked and non-spiked, into that obtained after IIP selective extraction. Despite the method's very low detection limits for direct injection (below 1 μg-.ℓ~(-1)), no Cr (VI) was obtained. However, after IIP selective extraction, spiked Cr (VI) was detected in the spiked sample.
机译:由4-乙烯基吡啶和苯乙烯制备线性共聚物。通过将季铵化线性共聚物(与1,4-氯丁烷季铵化),2-乙烯基吡啶官能单体和乙二醇二甲基丙烯酸酯(EGDMA)进行共聚,制备了一种特定于Cr(VI)吸附的离子印迹聚合物(IIP)。 -在1,1'-偶氮双(环己烷甲腈)作为引发剂的存在下形成-连接单体。重铬酸铵和甲醇水溶液分别用作模板和成孔剂。通过在4 M HNO_3溶液中连续搅拌离子印迹聚合物(IIP)颗粒来获得铬酸盐模板从聚合物颗粒中的浸出,以获得浸出的材料,然后将其用于水溶液中Cr(VI)离子的选择性重新结合。同样,非压印聚合物/对照聚合物(NIP / CP)材料也是在与IIP完全相同的条件下制备的,但没有铬酸根阴离子模板。研究了各种参数,例如溶液pH,初始浓度,水相体积,吸附剂用量,接触时间和浸出溶液体积。扫描电子显微镜(SEM),傅立叶变换红外(FTIR)光谱,BET表面积和孔径分析用于表征IIP(未浸出和浸出)和CP材料。最佳参数如下:溶液pH 3;接触时间120分钟;洗脱液:20毫升0.1 M NaOH;和吸附量125 mg。 IIP和CP的最大保留容量分别为37.58和25.44 mg-g〜(-1)。使用分批和SPE萃取模式比较了IIP和CP的萃取效率。在没有高浓度离子(尤其是硫酸根离子)的情况下,CP和IIP都显示出几乎没有100%的Cr(VI)结合键。但是,在高浓度硫酸根离子存在下,CP的选择性完全崩溃了。该研究清楚地证明了开发的IIP适用于选择性提取复杂样品(例如酸性矿山排水中的样品)中的Cr(VI)。还通过直接注入加标和未加标的真实样品到IIP选择性萃取后获得的样品中,比较了选择性。尽管该方法的直接进样检测限非常低(低于1μg-.- 1〜(-1)),但未获得Cr(VI)。但是,在IIP选择性萃取后,在加标样品中检测到加标的Cr(VI)。

著录项

  • 来源
    《Water SA》 |2011年第4期|p.529-537|共9页
  • 作者单位

    School of Chemistry, University of the Witwatersrand, P/Bag 3, WITS 2050, Johannesburg, South Africa;

    School of Chemistry, University of the Witwatersrand, P/Bag 3, WITS 2050, Johannesburg, South Africa;

    Department of Chemistry, University of Johannesburg, PO Box 524, Auckland Park 2006, South Africa;

    Department of Chemistry, Rhodes University, PO Box 94, Grahamstown, 6140, South Africa;

    School of Chemistry, University of the Witwatersrand, P/Bag 3, WITS 2050, Johannesburg, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ion-imprinted polymer; chromium (VI); acid mine drainage; selectivity;

    机译:离子印迹聚合物铬(VI);酸性矿山排水选择性;

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