首页> 外文期刊>Journal of Membrane Science >LIX (R)-loaded polymer inclusion membrane for copper(II) transport - 2. Optimization of the efficiency factors (permeability, selectivity, and stability) for LIX (R) 84-I
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LIX (R)-loaded polymer inclusion membrane for copper(II) transport - 2. Optimization of the efficiency factors (permeability, selectivity, and stability) for LIX (R) 84-I

机译:负载LIX(R)的聚合物包合物膜,用于铜(II)传输-2.优化LIX(R)84-I的效率因子(渗透率,选择性和稳定性)

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Polymer inclusion membrane transport of copper(II) in chloride and sulfate Medium I,, studied using CTA (support). tris(2-n-butoxyethyl)phosphate (plasticizer), LIX (R) 84-1 (carrier), and ethanol (additive). An optimization in the aqueous phases, tpH, type of anions and buffer concentration) and membrane compositions (extractant and plasticizer, concentrations) was performed and the efficiency factors (permeability, selectivity, and stability) of the system evaluated. It was observed that beside, the improvement in metal ion flux and reduction in metal accumulation in the membrane by the incorporation of the additive in the solution, an increase in membrane stability is also attained. A transport model for the system in sulfate medium is proposed, Values for the aqueous and organic resistances (Delta(A) = 10(47) and Delta(o) = 10(8.0) s m(-1), respectively), true organic diffusion coefficient and membrane diffusion coefficient of the Cu(II)-carrier complex in the membrane phase (D-b,D-o = 10(-13) and D-o = 10(-12.2) m(2) s(-1). respectively) were calculated assuming that a carrier-diffusion mechanism is mainly responsible for ion transport, as suggested for the transport profiles, and the value of the conditional extraction constant (log K-est = -5.6) determined in an independent form by solid-liquid extraction experiments, A highly selective separation of Cu(II) from Zn(II) and Fe(III) was achieved as well. (c) 2005 Elsevier B.V. All rights reserved.
机译:使用CTA(载体)研究了在氯化物和硫酸盐介质I中铜(II)的聚合物包合物膜传输。磷酸三(2-正丁氧基乙基)酯(增塑剂),LIX(R)84-1(载体)和乙醇(添加剂)。对水相,tpH,阴离子类型和缓冲液浓度)和膜组成(萃取剂和增塑剂,浓度)进行了优化,并评估了系统的效率因子(渗透性,选择性和稳定性)。观察到,此外,通过在溶液中掺入添加剂而改善了金属离子通量和减少了膜中金属的积累,还实现了膜稳定性的提高。提出了该系统在硫酸盐介质中的迁移模型,其水和有机电阻值(分别为Delta(A)= 10(47)和Delta(o)= 10(8.0)sm(-1)),真有机物Cu(II)-载体配合物在膜相中的扩散系数和膜扩散系数分别为(Db,Do = 10(-13)和Do = 10(-12.2)m(2)s(-1))。假定载流子扩散机制主要负责离子迁移(如关于迁移曲线所建议的那样)的计算,并且通过固液提取实验以独立形式确定条件提取常数(log K-est = -5.6)的值,还实现了从锌(II)和铁(III)中高度选择性地分离铜(II)。 (c)2005 Elsevier B.V.保留所有权利。

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