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Methods to Recover Value-Added Coproducts from Dry Grind Processing of Grains into Fuel Ethanol

机译:从谷物干磨加工成燃料乙醇中回收增值副产品的方法

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Three methods are described to fractionate condensed distillers solubles (CDS) into several new coproducts, including a protein-mineral fraction and a glycerol fraction by a chemical method; a protein fraction, an oil fraction and a glycerol-mineral fraction by a physical method; or a protein fraction, an oil fraction, a mineral fraction, and a glycerol fraction by a physicochemical method. Processing factors (ethanol concentration and centrifuge force) were also investigated. Results show that the three methods separated CDS into different fractions, with each fraction enriched with one or more of the five components (protein, oil, ash, glycerol and other carbohydrates) and thus having different targeted end uses. Furthermore, because glycerol, a hygroscopic substance, was mostly shifted to the glycerol or glycerol-mineral fraction, the other fractions had much faster moisture reduction rates than CDS upon drying in a forced air oven at 60 °C. Thus, these methods could effectively solve the dewatering problem of CDS, allowing elimination of the current industrial practice of blending distiller wet grains with CDS for drying together and production of distiller dried grains as a standalone coproduct in addition to a few new fractions.
机译:描述了三种方法,通过化学方法将浓缩的蒸馏酒可溶物(CDS)分离成几种新的副产物,包括蛋白质-矿物质部分和甘油部分。通过物理方法的蛋白质级分,油级分和甘油-矿物级分;或通过物理化学方法的蛋白质级分,油级分,矿物质级分和甘油级分。还研究了加工因素(乙醇浓度和离心力)。结果表明,三种方法将CDS分为不同的馏分,每个馏分富含五种成分(蛋白质,油,灰分,甘油和其他碳水化合物)中的一种或多种,​​因此具有不同的目标最终用途。此外,由于甘油(一种吸湿性物质)大部分转移至甘油或甘油矿物级分,因此,在60°C的强制空气干燥箱中干燥后,其他级分的水分降低率比CDS高得多。因此,这些方法可以有效地解决CDS的脱水问题,从而消除了将蒸馏酒湿谷物与CDS混合在一起进行干燥以及生产蒸馏酒谷物作为独立副产品的现有工业实践,除了一些新的馏分。

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