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METHOD FOR OBTAINING HIGH-ENHANCED NATURAL FRACTIONS FROM PALM OIL USING SUPERCRITICAL AND LIKE SUPERCRITICAL LIQUID MEDIA

机译:利用超临界和超临界液体介质从棕榈油中获得增强的自然馏分的方法

摘要

From palm oil valuable compounds like the tocochromanols, carotenoids, phytosterols, and others can be derived. Enrichment to highly concentrated fractions is hindered by the enormous number of components involved, the very low volatility, the very low solubility of many of the compounds in organic solvents, and the high viscosity of the mixtures to be processed. Starting materials for the new process are enriched fractions of tocochromanols (about 20 to about 50 wt.-%) and/or carotenoids (about 10 to 30 wt.-%) from palm oil obtained by conventional processes, or by counter current multistage processes with supercritical carbon dioxide. These processes, not addressed here, may comprise: Removal of free fatty acids, transesterification of the triglycerides to methyl or ethyl esters, removal of the esters, e.g. by short path distillation, separation of the tocochromanol fraction from the carotenoid fraction by cooling. In the new process, fractions derived from crude palm oil, already enriched to some extent in tocochromanols, carotenoids, phytosterols, and others, are being treated by supercritical fluid technology in a unique combination of counter current separation with selective adsorption and desorption using supercritical fluids. A first enrichment, comprising one or more separation steps by application of a near critical or a supercritical fluid in a single or multistage (counter current) separation process is combined appropriately with a second enrichment step wherein the product of the first enrichment step is directly adsorbed on an adsorbent (silicagel) by passing the product flow over a fixed bed of adsorbent without substantial pressure change, and subsequent desorption with the same (or an other) near critical or supercritical fluid at the same or a different pressure as in the first separation, or by a pre-designed sequence of pressures and temperatures. For the tocochromanol enrichment, carbon dioxide at near critical conditions above the critical temperature of carbon dioxide is used. For the carotenoid enrichment, propane at near critical conditions below the critical temperature of propane is used (fig. 2).
机译:从棕榈油中可以得到有价值的化合物,如生育酚,类胡萝卜素,植物甾醇等。涉及的大量组分,极低的挥发性,许多化合物在有机溶剂中的极低溶解度以及待加工混合物的高粘度,阻碍了浓缩到高浓度馏分中。用于该新方法的起始原料是通过常规方法或通过逆流多阶段方法获得的棕榈油中的生育酚酚(约20至约50重量%)和/或类胡萝卜素(约10至30重量%)的浓缩馏分。与超临界二氧化碳。这些在此未解决的方法可以包括:除去游离脂肪酸,将甘油三酸酯酯交换成甲基或乙基酯,除去酯,例如将其除去。通过短程蒸馏,通过冷却将生育酚铬烷级分与类胡萝卜素级分分离。在新工艺中,源自棕榈油的馏分已经在一定程度上富集了生育酚,类胡萝卜素,植物甾醇等,目前正通过超临界流体技术进行独特的逆流分离与使用超临界流体的选择性吸附和解吸相结合的处理。 。将通过在单级或多级(逆流)分离过程中应用近临界或超临界流体而包括一个或多个分离步骤的第一浓缩与第二浓缩步骤适当组合,其中第一浓缩步骤的产物被直接吸附使产物流通过固定的吸附剂床而没有明显的压力变化,随后在相同或不同的压力下用相同(或另一种)接近临界或超临界流体进行解吸,并在相同或不同的压力下进行吸附,或按预先设计的压力和温度顺序。为了富集生育铬酚,使用了在高于二氧化碳临界温度的近临界条件下的二氧化碳。对于类胡萝卜素富集,在低于丙烷临界温度的临界条件下使用丙烷(图2)。

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