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Oil separation from wet-milled corn germ dispersions by aqueous oil extraction and aqueous enzymatic oil extraction

机译:通过含水油提取和含水酶促油提取从湿磨玉米胚芽分散体中分离油

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The many recent dry-grind plants that convert corn to ethanol are a potential source of substantial amounts of corn oil, if an economical method of separating it can be developed. Oil separation from corn germ by aqueous extraction (AE) was studied. Batches of 5-20% germ in a buffer solution were preheated in a pressure cooker, ground in a blender or colloid mill, churned in an incubator/shaker and centrifuged to separate a free oil fraction. The highest oil yields were obtained when the germ mass fraction was between 0.1 and 0.16. Addition of an enzyme solution to the ground germ suspension prior to churning, aqueous enzymatic extraction (AEE) gave an oil yield twice as high as the AE yield, carried out using similar conditions. Both types of extraction produced the most oil after a 122pC cook followed by churning at 160rpm and 70pC. Oil yield increased linearly with dispersion loading, from 0.5 up to 1.0g/cmpo based on beaker cross-section (0.09-0.12germ mass fraction). Over a several month period the germ used for the extractions became more difficult to extract, despite storage at 4pC.
机译:如果可以开发出一种经济的分离玉米油的方法,那么最近许多将玉米转化为乙醇的干磨植物可能是大量玉米油的潜在来源。研究了通过水萃取(AE)从玉米胚芽中分离油的方法。将一批在缓冲溶液中的5-20%的细菌在压力锅中预热,在搅拌机或胶体磨中研磨,在培养箱/振荡器中搅拌,然后离心分离出游离的油馏分。当胚芽质量分数在0.1和0.16之间时,可获得最高的油产量。在搅拌之前,将酶溶液添加到研磨的胚芽悬浮液中,水性酶提取(AEE)产生的油收率是使用相似条件进行的AE收率的两倍。在122pC蒸煮后,两种提取均产生最多的油,然后在160rpm和70pC搅拌。油的产率随分散体负载线性增加,从0.5到1.0g / cmpo(基于烧杯横截面)(0.09-0.12germ质量分数)。尽管储存在4pC,但在几个月的时间内,用于提取的细菌变得更加难以提取。

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