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Nanofiltration as a purification step in production process of organic acids: Selectivity improvement by addition of an inorganic salt

机译:纳滤是有机酸生产过程中的纯化步骤:通过添加无机盐提高选择性

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摘要

The aim of this study is to investigate to what extend the addition of an electrolyte (NaCl or Na2SO4) can improve the selectivity of the sodium lactate/glucose separation by nanofiltration. Experimental results were used to get the variation of the observed retentions versus the permeation flux and to evaluate the separation efficiency from the separation factor. In presence of NaCl, both glucose and lactate retentions slightly decrease and remain very close except at low permeation fluxes where the addition of NaCl has more effect on lactate retention than on glucose one. On the contrary, whilst the addition of Na2SO4 has no influence on glucose retention, a strong effect was pointed out on the lactate one, especially for high electrolyte concentrations for which negative retentions were obtained at low permeation fluxes. Then, the separation was much more improved by the addition of Na2SO4 compared to NaCl. A maximum separation factor of 1.9 was obtained with Na2SO4 at 0.25 M added to the glucose (0.1 M)/sodium lactate (0.1 M) solution whereas the separation was impossible without the addition of salt.
机译:这项研究的目的是研究在多大程度上增加电解质(NaCl或Na2SO4)的添加可以提高通过纳滤分离乳酸钠/葡萄糖的选择性。实验结果被用来获得观察到的保留量相对于渗透通量的变化,并从分离因子评估分离效率。在存在氯化钠的情况下,葡萄糖和乳酸的保留都略有下降,并且保持非常接近,除非在低通量下,添加氯化钠对乳酸的保留比对葡萄糖的影响更大。相反,尽管添加Na 2 SO 4对葡萄糖的保留没有影响,但是指出了对乳酸盐的强烈影响,特别是对于高电解质浓度,其在低渗透通量下获得了负保留。然后,与NaCl相比,添加Na2SO4可以大大改善分离效果。向葡萄糖(0.1 M)/乳酸钠(0.1 M)溶液中加入0.25 M的Na2SO4可获得最大分离系数1.9,而如果不添加盐则无法进行分离。

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