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Optimization of Ni (Ⅱ) Facilitated Transport from Aqueous Solutions Using a Polymer Inclusion Membrane.

机译:Ni(Ⅱ)的优化使用聚合物包涵体促进水溶液的水溶液。

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Efficient Ni (II) transport through a polymer inclusion membrane (PIM) was achieved. A central composite design (DCC) coupled to a Derringer's desirability function (DF) was used to optimize membrane composition using Kelex 100 (HQ) as carrier, cellulose triacetate (CTA) as polymer support, and tris(2-ethylhexyl) phosphate (TEHP) as plasticizer. The effect of components' contents in the membrane and the interactions among them on Ni (II) migration was evaluated using two normalized function as response variables (G(Feed), G(Strip)). Using the optimal membrane composition, (96 +/- 1.5) % of Ni (II) was detected in the strip solution after 48 h of pertraction. The efficiency factors of the system were determined, i.e., permeability (optimization pH of the aqueous samples and initial metal concentration), selectivity (among Zn (II), Pb (II), Cu (II), Ca (II) and Mg (II)), and stability (reuse capability). Ni (II) transport mechanism was proposed and analyzed as well.
机译:达到高效的Ni(II)通过聚合物包涵体(PIM)的运输。耦合到Derringer的期望功能(DF)的中央复合设计(DC)用于使用Kelex 100(HQ)作为载体,纤维素三乙酸(CTA)作为聚合物载体的膜组合物,以及Tris(2-乙基己基)磷酸酯(Tehp )作为增塑剂。使用两个标准化函数作为响应变量评估组分'内容物在膜中的含量和它们中的相互作用的影响(G(饲料),G(条))。使用最佳膜组合物,在48小时的牵伸后在带状溶液中检测到Ni(II)的96 +/- 1.5)%。确定系统的效率因素,即渗透率(水性样品的优化pH和初始金属浓度),选择性(Zn(II),Pb(II),Cu(II),Ca(II)和Mg( ii))和稳定性(重用能力)。提出并分析了Ni(II)运输机制。

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