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Characteristics of Separation of Carnitine and Metal Ions in Cheese Whey Model Solution by Loose Reverse Osmosis Membrane

机译:松散反渗透膜分离干酪乳清模型溶液中肉碱和金属离子的特征

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References(16) Cited-By(3) Aiming at recovering carnitine from cheese whey by using loose reverse osmosis membranes, rejection characteristics of several components in the whey were examined by using model solutions. An electroneutral membrane was found to be most effective for the separation. The rejection of carnitine was above 0.95 independent of the pH of solutions, while monovalent metal ions showed low rejections of 0.1–0.3. On the other hand, the rejections of divalent metal ions decreased with increase of the pH, and reached a minimum of about 0.5. As a result, mono- and divalent metal ions could be removed simultaneously by adjusting the pH of the feed solutions. To clarify the effect of pH on the rejection, the permeate of MgCl2 aqueous solution was examined. The rejections of MgCl2 were greatly affected by the pH and showed the same tendency as the mixed solution. The effect of the pH on permeation of electrolyte was considered to be caused mainly by the adsorption of ions on the membrane.
机译:参考文献(16)引用(3)旨在通过使用疏松的反渗透膜从干酪乳清中回收肉碱,使用模型解决方案检查了乳清中几种成分的排斥特性。发现电中性膜对于分离最有效。肉碱的截留率高于0.95,与溶液的pH无关,而一价金属离子的截留率较低,为0.1-0.3。另一方面,二价金属离子的排阻随着pH值的增加而降低,并达到约0.5的最小值。结果,可以通过调节进料溶液的pH同时去除一价和二价金属离子。为了弄清楚pH对排阻的影响,检查了MgCl2水溶液的渗透物。 pH值对MgCl2的排阻有很大影响,并显示出与混合溶液相同的趋势。认为pH对电解质渗透的影响主要是由于离子在膜上的吸附所致。

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