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Simultaneous improvement in solvent permeability and deacidification of soybean oil by nanofiltration

机译:纳滤同时提高大豆油的溶剂渗透性和脱酸度

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摘要

In this paper, soybean oil deacidification and hexane removal using laboratory scale solvent resistance nanofiltration membranes based technique is presented. Composite nanofiltration membranes made of different polymers poly(vinylideneflouride) (PVDF), polydimethylsiloxane (SI), polycarbonate (PC), and glycerol were tested to remove the hexane and free fatty acid (FFA) from soybean oil/hexane miscella (oil feed solution 10, 25, and 35% w/w) at 20 bar of transmembrane pressure and 30 °C, in a dead-end filtration set up. All membranes tested showed low fouling phenomena and high stability in the presence of hexane throughout the membrane pre-treatment and permeation procedure. The PVDF-10SI-1PC membrane showed the best performance achieving a miscella permeability of Lm = 6.8 × 10−6 L (h m bar)−1, oil and FFA sieving efficiency of β(oil) = 0.21(80% of oil rejection) and βFFA = 2.43 (27% of FFA removal), respectively, at oil feed concentration of 25%. Apart from these specific properties, the PVDF-10SI-1PC membrane presented excellent mechanical and chemical resistances and low reversible fouling. The results demonstrate that membrane technology can attain a high efficiency in the simultaneous solvent recovery and deacidification of oil/hexane miscella commonly processed in the soybean oil industry.
机译:本文介绍了基于实验室规模的耐溶剂纳滤膜技术的大豆油脱酸和己烷去除方法。测试了由不同聚合物聚偏二氟乙烯(PVDF),聚二甲基硅氧烷(SI),聚碳酸酯(PC)和甘油制成的复合纳滤膜,以从大豆油/己烷杂油(供油溶液)中去除己烷和游离脂肪酸(FFA)在20 bar的跨膜压力和30°C的条件下进行10、25和35%w / w的终馏过滤设置。在整个膜预处理和渗透过程中,在己烷存在下,所有测试的膜均显示出低结垢现象和高稳定性。 PVDF-10SI-1PC膜表现出最佳性能,可实现Lm = 6.8×10 -6 L(h bar) -1 ,油和FFA筛分的杂透性当进料浓度为25%时,β(油)的效率分别为0.21(排油率的80%)和βFFA= 2.43(FFA去除率的27%)。除了这些特定的特性,PVDF-10SI-1PC膜还具有出色的机械和化学耐受性以及低可逆结垢性。结果表明,膜技术可以在大豆油工业中通常加工的油/己烷混合油的同时溶剂回收和脱酸中获得很高的效率。

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