首页> 美国卫生研究院文献>Polymers >The Application of Polymer Inclusion Membranes Based on CTA with 1-alkylimidazole for the Separation of Zinc(II) and Manganese(II) Ions from Aqueous Solutions
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The Application of Polymer Inclusion Membranes Based on CTA with 1-alkylimidazole for the Separation of Zinc(II) and Manganese(II) Ions from Aqueous Solutions

机译:基于CTA和1-烷基咪唑的聚合物包裹体膜在水溶液中分离锌(II)和锰(II)离子中的应用

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摘要

Polymer cellulose triacetate membranes doped with 1-alkylimidazole as fixed carriers were applied for the investigation of the facilitated transport of Zn(II) and Mn(II) ions from an aqueous sulphate feed phase (cM = 0.001 mol/dm3). For the polymer inclusion membranes (PIMs) doped with 1-alkylimidazole (alkyl – from hexyl up to decyl), the following patterns of transport selectivity were found: Zn(II) > Mn(II). The highest initial flux of Zn(II) ions (2.65 µmol/m2·s) was found for PIMs doped with 1-decyl-imidazole, whereas the best Zn(II)/Mn(II) selectivity coefficients equal to 19.7 were found for 1-hexyl-imidazole. Permeability coefficients for Zn(II) and Mn(II) ions transported across PIMs increase with an increase in the pKa values of 1-alkylimidazole. The polymer membranes of cellulose triacetate-o-NPPE with 1-alkylimidazole were characterised by scanning electron microscopy, non-contact atomic force microscopy and thermal analysis techniques. The influence of membrane morphology on the Zn(II) and Mn(II) transport process was discussed.
机译:掺杂有1-烷基咪唑作为固定载体的聚合物三醋酸纤维素膜用于研究从硫酸盐进料相(cM = 0.001 mol / dm 3)促进Zn(II)和Mn(II)离子的迁移/ sup>)。对于掺杂有1-烷基咪唑(烷基-从己基到癸基)的聚合物包合物膜(PIM),发现了以下传输选择性模式:Zn(II)> Mn(II)。对于掺杂1-癸基咪唑的PIM,发现最高的Zn(II)离子初始通量(2.65 µmol / m 2 ·s),而最佳的Zn(II)/ Mn(II)对1-己基-咪唑的选择性系数等于19.7。跨PIM传输的Zn(II)和Mn(II)离子的渗透系数随1-烷基咪唑的pKa值的增加而增加。用扫描电子显微镜,非接触原子力显微镜和热分析技术对三乙酸纤维素-n-NPPE与1-烷基咪唑的聚合物膜进行了表征。讨论了膜形态对Zn(II)和Mn(II)传输过程的影响。

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