...
首页> 外文期刊>Water SA >Optimal synthesis of a Ni(II)-dimethylglyoxime ion-imprinted polymer for the enrichment of Ni(II) ions in water, soil and mine tailing samples
【24h】

Optimal synthesis of a Ni(II)-dimethylglyoxime ion-imprinted polymer for the enrichment of Ni(II) ions in water, soil and mine tailing samples

机译:镍(II)-二甲基乙二肟肟离子印迹聚合物的最佳合成,用于富集水,土壤和矿山尾矿样品中的镍(II)离子

获取原文
获取原文并翻译 | 示例

摘要

A Ni(II)-dimethylglyoxime ion-imprinted polymer {Ni(II)-DMG IIP} was optimised by the uniform design experimental method and used to adsorb Ni(II) ions from water, soil and mine tailing samples. This aimed to improve the performance of this ion-imprinted polymer in trapping Ni(II) ions from soil and mine tailing samples which are characterised by complex matrices. The optimisation was carried out by varying the molar ratios of monomer to crosslinker to porogen and template to ligands, as well as by keeping these parameters constant and varying the concentrations of initiator, 2,2'-azobisisobu-tyronitrile (A1BN). The optimal molar ratios of crosslinker to monomer, monomer to template and nickel(ll) sulphate hexa-hydrate (NiSO_4.6H_2O) to 4-vinylpyridine to dimethylglyoxime were found to be 3.3:1.0, 0.6:1.0 and 1.0:0.6:3.6, respectively, with 30 mg and 8 m£ as the optimum amounts of initiator and porogen, respectively. Through this optimisation, extraction efficiency for Ni(II) increased from 98 to 100% in aqueous samples. The extraction efficiencies for the soil and mine tailing samples were 98-99% and 99%, respectively, with an enrichment factor of 2 in mine tailing samples and ranging from 27 to 40 in soil samples. The method displayed good accuracy, as it was validated with certified reference materials (SEP-3 and BCR-142R) and the values obtained were close to the certified ones. The improved quality of results obtained from water, soil and mine tailing samples showed that the uniform design experimental method is effective and efficient for optimising imprinted polymers using a lower number of experiments performed.
机译:通过均匀设计实验方法对Ni(II)-二甲基乙二肟肟离子印迹聚合物{Ni(II)-DMG IIP}进行了优化,并用于吸附水,土壤和矿山尾矿样品中的Ni(II)离子。目的是提高这种离子印迹聚合物从土壤和矿山尾矿样品中捕集具有复杂基质特征的Ni(II)离子的性能。通过改变单体与交联剂,致孔剂和模板与配体的摩尔比,以及保持这些参数恒定并改变引发剂2,2'-偶氮二异丁腈(A1BN)的浓度来进行优化。发现交联剂与单体,单体与模板和硫酸镍(II)六水合物(NiSO_4.6H_2O)与4-乙烯基吡啶与二甲基乙二肟的最佳摩尔比为3.3:1.0、0.6:1.0和1.0:0.6:3.6,分别以30 mg和8 m£作为引发剂和致孔剂的最佳量。通过这种优化,水性样品中镍(II)的萃取效率从98%提高到100%。土壤和矿山尾矿样品的提取效率分别为98-99%和99%,矿山尾矿样品的富集系数为2,土壤样品的富集系数为27至40。该方法显示出良好的准确性,因为它已通过认证的参考材料(SEP-3和BCR-142R)进行了验证,并且获得的值接近认证的标准值。从水,土壤和矿山尾矿样品获得的结果质量的提高表明,采用较少次数的实验,均匀设计的实验方法对于优化印迹聚合物非常有效。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号