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Separation of ions in acidic conditions using NF

机译:使用NF在酸性条件下分离离子

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The retention of Na~+ and Mg~(2+) ions in their nitrate solutions was studied in the pH range 0.5-7. Three different Mg~(2+) concentrations were used. Two nanofiltration membranes (NF 45 and Desal-5 DK) were tested. The NF 45 membrane showed higher retention values for the tested ions. The Mg~(2+) ions were very well retained (97.5-99.5%) within the pH range. The nitric acid permeated freely in all of the experiments. The experiments showed that the concentration of nitric acid in the permeate depended on the ratio of H~+ ions/rejected metal ions in the feed. The retention of the Na~+ ion varied from 80-40%. The smallest Na~+ retention was measured in neutral conditions. The addition of HNO_3 led to a sharp increase in the Na~+ retention mostly because of two things: An increase in H~+ concentration (a cation that permeates more easily than the Na~+ ion) and the positive charge of the membrane due to the decrease in pH, increasing the rejection of all cations. In addition, the Na~+ retention decreased with an increase of the Mg~(2+) concentration in the feed. The effect diminished gradually with decreasing pH due to a high ion concentration that lessened the charge effect of the membrane.
机译:研究了Na〜+和Mg〜(2+)离子在0.5-7的pH范围内的保留情况。使用了三种不同的Mg〜(2+)浓度。测试了两种纳滤膜(NF 45和Desal-5 DK)。 NF 45膜对测试离子显示出更高的保留值。在pH范围内,Mg〜(2+)离子保留得很好(97.5-99.5%)。硝酸在所有实验中均能自由渗透。实验表明,渗透液中硝酸的浓度取决于进料中H〜+离子/被拒绝的金属离子的比例。 Na +离子的保留率为80-40%。在中性条件下测定了最小的Na +保留。 HNO_3的添加导致Na〜+保留量急剧增加,主要是由于以下两点:H〜+浓度(比Na〜+离子更容易渗透的阳离子)的增加以及膜的正电荷降低pH值,增加所有阳离子的截留率。另外,随着饲料中Mg〜(2+)浓度的增加,Na〜+的保留量降低。由于高离子浓度降低了膜的电荷效应,因此随着pH值的降低,效应逐渐减弱。

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