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Effect of pH on Total Volume Membrane Charge Density in the Nanofiltration of Aqueous Solutions of Nitrate Salts of Heavy Metals

机译:pH对重金属硝酸盐水溶液纳米滤液总量膜电荷密度的影响

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摘要

The separation efficiencies of aqueous solutions containing nitric salts of Zn, Cu, Fe or Pb at various pH in process of nanofiltration have been investigated experimentally. These results were used to obtain the total volume membrane charge densities, through mathematical modelling based on the Donnan–Steric partitioning Model. The experimentally obtained retention values of individual heavy metal ions varied between 36% (Zn2+ at pH = 2), 57% (Pb2+ at pH = 2), 80% (Fe3+ at pH = 9), and up to 97% (Cu2+ at pH = 9). The mathematical modelling allowed for fitting the total volume membrane charge density (Xd), which yielded values ranging from −451.90 to +900.16 mol/m3 for different non-symmetric ions. This study presents the application of nanofiltration (NF) modelling, including a consideration of each ion present in the NF system—even those originating from solutions used to adjust the pH values of the feed.
机译:实验研究了含有Zn,Cu,Fe或Pb的含氮盐水溶液的含水溶液的分离效率。通过基于唐纳 - 空间分区模型的数学建模,这些结果用于获得总体积膜电荷密度。实验获得的单个重金属离子的保留值在36%(pH = 2)之间的36%(Zn2 +在pH = 2时),57%(Pb2 +在pH = 2),80%(PH = 9时),高达97%(Cu2 + AT) pH = 9)。允许拟合总体积膜充电密度(XD)的数学建模,其产生的值范围为-451.90至+ 900.16mol / m 3,用于不同的非对称离子。该研究呈现纳米滤波(NF)建模的应用,包括对NF系统中存在的每个离子的考虑 - 甚至来自用于调节饲料的pH值的溶液的那些。

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