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Determination of structural and electrical parameters for activated composite membranes containing di-(2-ethylhexyl)dithiophosphoric acid as carrier

机译:以二(2-乙基己基)二硫代磷酸为载体的活性复合膜的结构和电学参数的测定

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The paper reports the results obtained on the physicochemical characterisation of activated composite membranes (ACMs). Membrane samples containing different concentrations of di-2-ethyl-hexyldithiophosphoric acid (DTPA) as a carrier were prepared and characterised by different analytical techniques. The amount of the carrier incorporated in ACM appears to be directly proportional to the concentration of carrier in the casting solution. Respective distribution dependencies can serve as calibration graphs applicable for pre-calculation of extractant concentration in the casting solution to manufacture an ACM with a given carrier content. The carrier distribution in the membrane was evaluated by X-ray microanalysis (EDS), which allowed us to determine that only a limited concentration of the carrier can be incorporated into the top polyamide membrane layer, resulting in redistribution of the excess of extractant along the polymeric structure of the membrane. These results also correlate with those obtained by impedance spectroscopy measurements. The equivalent circuits associated with the different membrane samples agree with a two-layer model for the ACM containing a high concentration of carrier (C-DTPA >0.5 M), which allows for the location of a larger amount of carrier into the polyamide layer. The results obtained by the indicated techniques are in good agreement with each other, and provide for the structural characterisation of the membrane. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 26]
机译:该论文报告了有关活化复合膜(ACM)的理化特性的结果。制备了包含不同浓度的二-2-乙基-己基二硫代磷酸(DTPA)作为载体的膜样品,并通过不同的分析技术对其进行了表征。掺入ACM中的载体数量似乎与流延溶液中载体的浓度成正比。各自的分布依存关系可以用作校准图,适用于铸造溶液中萃取剂浓度的预先计算,以制造具有给定载体含量的ACM。膜中的载体分布通过X射线微分析(EDS)进行了评估,这使我们能够确定只有有限浓度的载体可以掺入聚酰胺顶层膜中,从而导致多余的萃取剂沿着膜表面重新分布。膜的聚合物结构。这些结果也与通过阻抗谱测量获得的结果相关。与不同膜样品相关的等效电路与包含高浓度载体(C-DTPA> 0.5 M)的ACM的两层模型相吻合,这允许将大量载体置于聚酰胺层中。通过所示技术获得的结果彼此非常吻合,并提供了膜的结构表征。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:26]

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