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Screening of polymeric membranes for membrane assisted deacidification of sardine oil

机译:用于沙丁鱼油膜辅助脱酸的聚合物膜的筛选

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The diversification in fish oil use and the need for softer processing demand new oil refining processes. In considering the advantages of membrane technology, three different membranes (polyamide (PA), polytetrafluoroethylene (PTFE) and polyethersulfone (PES)) were used in this particular study. Preliminary results in the separation of free fatty acids (FFA) from glycerides of sardine oil/ethanol mixtures using a single dead end microfiltration mode have been reported here. The influence of experimental factors like pressure and oil/ethanol ratios (w/v) on the permeate flux and the reduction of FFA (%) in the permeate was studied. PTFE membrane showed promising results in terms of residual FFA in permeate (%), % oil loss (15.12%, 5.45%) as compared to PA (20.50%, 6.66%) and PES membranes (20.60%, 8.92%). PA membrane showed a higher flux of 4.4?L/m2/h, followed by PTFE 3.34?L/m2/h and PES, 1.19?L/m2/h at 3.5 bar trans-membrane pressure. These results showed that using PTFE membrane could be an ideal strategy for the membrane assisted deacidification of sardine oil using solvents. Graphical Figure options.
机译:鱼油用途的多样化和对更软加工的需求要求新的炼油工艺。考虑到膜技术的优势,在此特定研究中使用了三种不同的膜(聚酰胺(PA),聚四氟乙烯(PTFE)和聚醚砜(PES))。此处已报道了使用单末端微滤模式从沙丁鱼油/乙醇混合物的甘油酯中分离游离脂肪酸(FFA)的初步结果。研究了压力和油/乙醇比(w / v)等实验因素对渗透通量和渗透液中FFA减少(%)的影响。相对于PA(20.50%,6.66%)和PES膜(20.60%,8.92%),PTFE膜在渗透液中的残留FFA(%),%油损失(15.12%,5.45%)方面显示出令人鼓舞的结果。 PA膜的通量较高,为4.4?L / m 2 / h,其次是PTFE 3.34?L / m 2 / h,PES为1.19?L / m < sup> 2 / h,跨膜压力为3.5 bar。这些结果表明,使用PTFE膜可能是使用溶剂对沙丁鱼油进行膜辅助脱酸的理想策略。图形选项。

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