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Improved quality of soybean oil from fine soybean flour by solvent extraction.

机译:通过溶剂萃取提高了大豆粉中大豆油的质量。

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摘要

Measurements of rates of extraction in a column with either fine flour or soybean flakes showed that in the flour extraction the oil was being washed out of the fine flour with little diffusion involved, whereas with flakes the limit on extraction rate was diffusion of the solvent into and out of the tissue.; Fine full fat flour worked very well in a laboratory batchwise countercurrent extraction with mixing and centrifugal separation. The oil resulting from this countercurrent extraction system had superior quality with very little phospholipids and free fatty acids and was light in color. However, due to the large hold-up volume, the separation of miscella from the meal required several stages to finish.; Aqueous ethanol solutions were used as a second solvent to displace the hold-up volume of hexane miscella. But the second solvent did not remove all the oil extracted by hexane. A test with beta-carotene showed that only the hexane miscella outside the flour particles was displaced.; Aqueous ethanol solutions as a second solvent extracted additional nontriglyceride materials (primarily phospholipids) from the meal. The quality of the extracted crude oil was lowered although only one centrifugation was needed.; A continuous extraction system with fine flour was tested at a laboratory scale with no success due to lack of proper ways to move dry flour, to mix the flour with solvent and to separate the solid from miscella. A pilot plant study showed that the grinding of beans and the separation of solid from miscella are the most difficult steps in solvent extraction with fine flour. The oil from the pilot plant study showed very low phospholipids content as did the laboratory extraction. But the free fatty acid content and color of the oil were abnormally high.; More laboratory studies revealed that moisture levels of the beans and of the flour affect the phospholipid and free fatty acid content of the resulting oil. But the reasons for the abnormally high free fatty acid content and dark color of the pilot plant extracted oil are still unknown.
机译:用细粉或大豆片在柱中的萃取速率的测量结果表明,在粉萃取中,油是从细粉中洗出的,几乎没有扩散,而对于片而言,萃取速率的限制是溶剂扩散到其中并从组织中取出。细的全脂面粉在实验室通过混合和离心分离进行的逆流萃取中效果很好。由该逆流萃取系统得到的油具有优异的品质,几乎没有磷脂和游离脂肪酸,并且颜色浅。但是,由于滞留量大,从食物中分离杂物需要几个阶段才能完成。乙醇水溶液用作第二种溶剂,以代替己烷杂胶的滞留体积。但是第二种溶剂并不能除去己烷萃取的所有油。用β-胡萝卜素进行的测试表明,只有面粉颗粒外部的己烷杂胶被置换了。作为第二溶剂的乙醇水溶液从粗粉中提取了其他的非甘油三酸酯物质(主要是磷脂)。尽管仅需要一次离心,但提取的原油的质量却降低了。由于缺乏适当的方法来移动干面粉,将面粉与溶剂混合以及将固体与杂物分离,因此在实验室规模上测试了使用细面粉的连续提取系统,但未成功。工厂的一项中试研究表明,在用细粉进行溶剂萃取中,豆类的研磨以及杂物中固体的分离是最困难的步骤。中试工厂研究的油和实验室提取物的磷脂含量非常低。但是油中的游离脂肪酸含量和颜色异常高。更多的实验室研究表明,豆类和面粉中的水分含量会影响所得油中磷脂和游离脂肪酸的含量。但是,中试植物提取油中游离脂肪酸含量异常高和颜色偏暗的原因仍然未知。

著录项

  • 作者

    Nieh, Cinping David.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Agriculture Food Science and Technology.
  • 学位 Ph.D.
  • 年度 1991
  • 页码 134 p.
  • 总页数 134
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农产品收获、加工及贮藏;
  • 关键词

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