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On nanolillration Desal-5 DK performances with calcium chloride-water solutions

机译:氯化钙-水溶液对纳米级Desal-5 DK的性能影响

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A study on the performances of nanofiltration Desal-5 DK membranes is presented in the case of CaCl_2-water mixtures.Extensive experimentation at room temperature is performed to characterize the membrane separation efficiency in a wide range of electrolyte composition (1-500 mol/m~3) at various feed pH values (5-6.5).The applied pressure in the feed side is kept in the range from 3 to 30 bar.The effect of pH and concentration is investigated both on salt rejection and on total volume flux.The results are exhaustive and useful to draw general trends.Calcium rejection increases as the concentration increases and decreases as the feed pH increases.However,as the salt concentration increases,calcium rejection goes through a maximum value;at asymptotic conditions the maximum value is located at a concentration close to 100 mol/m~3 CaCl_2.The effect occurs in the whole pressure range investigated and it is much more remarkable at the higher pH values.Volumetric membrane charge values corresponding to each operative conditions experimented are calculated through the "integral" version of the Donnan Steric Pore Model and Dielectric Exclusion.Membrane charge is obtained as an increasing function with pH,whereas it shows an unimodal behaviour in the concentration range investigated.At low concentrations the membrane charge is negative,it switches to positive values as the concentration increases and finally decreases till to negative values at higher concentrations.Amphoteric behaviour of polyamide Desal membranes is re-confirmed,although a remarkable dependence of the points of zero charge is obtained upon salt concentration.
机译:研究了在CaCl_2-水混合物的情况下纳滤Desal-5 DK膜的性能。在室温下进行了广泛的实验以表征在宽范围的电解质组成(1-500 mol / m)中的膜分离效率〜3)在各种进料pH值(5-6.5)下。进料侧施加的压力保持在3至30 bar范围内。研究了pH和浓度对除盐率和总体积通量的影响。结果是详尽无遗的,有助于得出总体趋势。钙排泄量随浓度的增加而增加,而随进料pH的增加而减小。但是,随着盐浓度的增加,钙排泄量会达到最大值;在渐近条件下,最大值位于浓度接近100 mol / m〜3 CaCl_2时,在整个研究压力范围内均会产生这种影响,在较高的pH值下效果更明显。通过Donnan Steric孔模型的“积分”版本和介电排斥来计算对所试验的每种操作条件的考虑。膜电荷随pH值的增加而增加,而在所研究的浓度范围内则表现出单峰行为。在低浓度下膜电荷是负的,随着浓度的增加它会变成正值,而在更高的浓度下它会逐渐下降到负值。虽然在零电荷点上存在显着的依存性,但是聚酰胺脱盐膜的两性行为再次得到确认。盐浓度。

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