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Separation of Zn(II) Cr(III) and Ni(II) Ions Using the Polymer Inclusion Membranes Containing Acetylacetone Derivative as the Carrier

机译:使用含乙酰丙酮衍生物的聚合物夹杂膜作为载体分离Zn(II)Cr(III)和Ni(II)离子

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摘要

Polymer inclusion membranes (PIMs) doped with ethylenodiamino-bis-acetylacetone as fixed carrier was applied for the investigation of the facilitated transport of Zn(II), Cr(III), and Ni(II) ions from an aqueous nitrate feed phase (c = 0.001 mol/dm ). The optimal membrane composition (amount of carrier and -NPPE-plasticizer) was determined. For the optimal polymer inclusion membranes doped with ethylenodiamino-bis-acetylacetone, the following patterns of transport selectivity were found: Zn(II) > Cr(III) > Ni(II). The initial flux of Zn(II), Cr(III), and Ni(II) ions was 6.37 µmol/m ∙s, 5.53 µmol/m ∙s, and 0.40 µmol/m ∙s, respectively. The selectivity coefficients equal to 1.2 and 15.9 were found for Zn(II)/Cr(III) and Zn(II)/Ni(II), respectively. After 24-h transport, the recovery factor of Zn(II), Cr(III), and Ni(II) were 90%, 65%, and 6%, respectively. The polymer inclusion membranes doped with ethylenodiamino-bis-acetylacetone were characterized by scanning electron microscopy and non-contact atomic force microscopy. The influence of membrane morphology on transport process was discussed.
机译:以乙二二氨基双乙酰丙酮为固定载体掺杂的聚合物包合物膜(PIM)用于研究从硝酸盐进料水相中促进Zn(II),Cr(III)和Ni(II)离子的迁移(c = 0.001 mol / dm 2)。确定了最佳的膜组成(载体和-NPPE-增塑剂的量)。对于掺杂有乙二二氨基-双-乙酰丙酮的最佳聚合物包合物膜,发现了以下传输选择性模式:Zn(II)> Cr(III)> Ni(II)。 Zn(II),Cr(III)和Ni(II)离子的初始通量分别为6.37 µmol / m∙s,5.53 µmol / m∙s和0.40 µmol / m∙s。 Zn(II)/ Cr(III)和Zn(II)/ Ni(II)的选择性系数分别为1.2和15.9。运输24小时后,Zn(II),Cr(III)和Ni(II)的回收率分别为90%,65%和6%。用扫描电子显微镜和非接触原子力显微镜对掺有乙二胺基双-双乙酰丙酮的聚合物包合物膜进行表征。讨论了膜形态对运输过程的影响。

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