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Influence of surface charge and solution pH on the performance characteristics of a nanofiltration membrane

机译:表面电荷和溶液pH值对纳滤膜性能特征的影响

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Acetyl cellulose nanofiltration membrane (NF) was manufactured by a dry/wet phase inversion process and studied on its performance characteristics for the electrolyte solutions NaCl, MgCl_2, Na_2SO_4 with a concentration range of 10~(-3)—10~(-2) N at various pH values. It was shown that the multivalent cation Mg~(2+) or sulfate anion SO_4~(2-) present in non-symmetrical electrolytes makes the membrane more positively or negatively charged as a result of their adsorption on the amphoteric pore surface, which greatly increases the membrane selectivity up to 85-95% for these electrolyte solutions. Meanwhile, with respect to 1:1 electrolyte solution NaCl the rejection capacity is low (R = 30-40%) because there is essentially no adsorption on the membrane surface. For a feed source made of the RO retentate the experimental data showed that the fabricated membrane possesses high rejection capacity for multivalent ions such as SO_4~(2-) (R = &5.7%) and Mg~(2+) (R = 93.5%) and low selectivity for monovalent salts such as NaCl (R = 33.7%). The following salts rejection sequence with respect to symmetric and nonsymmetric electrolyte solutions has been set up: R_(Na2SO4) >R_(NaCl) >R_(MgCl2) and R_(MgCl2) >R_(Na2SO4) >R_(NaCl) at pH ≥7 and pH ≤ 7, respectively. The fact that at pH values above 7 rejection of sodium chloride is higher than that of magnesium chloride, although its ion size is smaller than that of the latter, can be explained only by charge exclusion effect. From these results it can be concluded that Donnan exclusion effect is the predominant mechanism for salt removal by NF membranes.
机译:通过干/湿相转化工艺制备乙酰纤维素纳滤膜(NF),并研究其在浓度范围为10〜(-3)—10〜(-2)的电解质溶液NaCl,MgCl_2,Na_2SO_4中的性能特征。 N在各种pH值下。结果表明,非对称电解质中存在的多价阳离子Mg〜(2+)或硫酸根阴离子SO_4〜(2-)使膜吸附在两性孔表面上,使膜带更多正电荷或负电荷。将这些电解质溶液的膜选择性提高到85-95%。同时,对于1:1的NaCl电解质溶液,由于在膜表面上基本上没有吸附,所以排斥能力低(R = 30-40%)。对于由RO截留液制成的进料源,实验数据表明,制成的膜对多价离子(如SO_4〜(2-)(R =&5.7%)和Mg〜(2+)(R = 93.5%)和对一价盐(如NaCl)的低选择性(R = 33.7%)。对于对称和非对称电解质溶液,已建立以下排盐顺序:在pH≥时,R_(Na2SO4)> R_(NaCl)> R_(MgCl2)和R_(MgCl2)> R_(Na2SO4)> R_(NaCl)分别为7和pH≤7。 pH值高于7时,氯化钠的截留率高于氯化镁,尽管其离子大小小于氯化镁,但只能通过电荷排除效应来解释。从这些结果可以得出结论,Donnan排斥作用是NF膜去除盐的主要机理。

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