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Deacidification of Soybean Oil Combining Solvent Extraction and Membrane Technology

机译:溶剂萃取与膜技术相结合的豆油脱酸

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The aim of this work was to study the removal of free fatty acids (FFAs) from soybean oil, combining solvent extraction (liquid-liquid) for the separation of FFAs from the oil and membrane technology to recover the solvent through nanofiltration (NF). Degummed soybean oil containing 1.05 ± 0.10% w/w FFAs was deacidified by extraction with ethanol. Results obtained in the experiences of FFAs extraction from oil show that the optimal operating conditions are the following: 1.8 : 1 w : w ethanol/oil ratio, 30 minutes extraction time and high speed of agitation and 30 minutes repose time after extraction at ambient temperature. As a result of these operations two phases are obtained: deacidified oil phase and ethanol phase (containing the FFAs). The oil from the first extraction is subjected to a second extraction under the same conditions, reducing the FFA concentration in oil to 0.09%. Solvent recovery from the ethanol phase is performed using nanofiltration technology with a commercially available polymeric NF membrane (NF-99-HF, Alfa Laval). From the analysis of the results we can conclude that the optimal operating conditions are pressure of 20 bar and temperature of 35°C, allowing better separation performance: permeate flux of 28.3 L/m2·h and FFA retention of 70%.
机译:这项工作的目的是研究从大豆油中去除游离脂肪酸(FFA),结合溶剂萃取(液-液)分离油脂和膜技术中的FFA,以通过纳滤(NF)回收溶剂。通过用乙醇萃取将含有1.05±0.10%w / w FFA的脱胶大豆油脱酸。从油脂中提取FFA的经验结果表明,最佳操作条件如下:乙醇/油的比例为1.8:1 w:w,提取时间为30分钟,搅拌速度较高,室温下提取后的静置时间为30分钟。这些操作的结果是获得了两相:脱酸的油相和乙醇相(包含FFA)。在相同条件下,将第一次萃取得到的油进行第二次萃取,将油中的FFA浓度降至0.09%。从乙醇相中回收溶剂是使用纳滤技术和市售的聚合物NF膜(NF-99-HF,阿法拉伐)进行的。通过对结果的分析,我们可以得出最佳操作条件是20 bar的压力和35℃的温度,从而实现更好的分离性能:渗透通量为28.3 L / m2·h,FFA保留率为70%。

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