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Fractionation of Barley Flour Using Elusieve Processing: A Combination of Sieving and Air Classification

机译:大麦粉的分级分离:筛分和空气分级

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The availability of winter barley in areas of the U.S. that are not well suited to grow corn, such as the mid-Atlantic states, makes it a feedstock of choice for fuel ethanol production in those regions. Recently, it was found that the Elusieve process, the combination of sieving and air classification (elutriation or aspiration), was effective in fiber separation from corn flour prior to fermentation. The objective of this study was to determine the effect of the Elusieve process on the compositions of fractions from barley flour of a hulled (Thoroughbred) and a hulless (Doyce) barley variety. The barley grains were milled using a hammer mill and sieved into four size fractions. Air classification of the two largest size fractions using a commercial aspirator resulted in heavier fractions with higher starch, higher beta-glucan, and lower neutral detergent fiber (NDF) contents. Hulls were preferentially carried into the lighter fractions, as signified by higher NDF contents of lighter fractions. Elusieve processing was more effective (higher separation factors) for the hulled variety than the hulless variety because higher hull presence caused increased carryover of hull into the lighter fractions for the hulled variety. The increase in beta-glucan and starch contents in barley flour, by hull separation using the combination of sieving and air classification, may increase ethanol productivity and may be beneficial in fuel ethanol production from barley when using a process that converts both starch and beta-glucans into fuel ethanol. Since the Elusieve process was most effective only when hulls were present, any dehulling operation prior to grinding would make Elusieve processing needless
机译:美国大西洋中部各州等不太适合种植玉米的地区有冬大麦,因此成为这些地区燃料乙醇生产的首选原料。最近,发现Elusieve工艺(筛分和空气分级(淘析或抽吸)的结合)在发酵之前从玉米粉中分离纤维是有效的。这项研究的目的是确定Elusieve工艺对去壳(纯种)和无壳(道伊斯)大麦品种的大麦粉馏分组成的影响。大麦籽粒用锤磨机研磨并筛分成四个大小部分。使用商用抽气机对两个最大尺寸的馏分进行空气分级,得到的馏分较重,淀粉含量更高,β-葡聚糖含量更高,中性洗涤剂纤维(NDF)含量更低。船体优先携带到较轻的馏分中,这由较轻的馏分的NDF含量较高表示。 Elusieve加工对有壳品种比无壳品种更有效(较高的分离因子),因为较高的壳存在会导致将壳带入带壳品种的较轻馏分中的可能性增加。通过使用筛分和空气分级相结合的船壳分离技术,大麦粉中β-葡聚糖和淀粉含量的增加可能会提高乙醇的生产率,并且在使用将淀粉和β-葡聚糖转化为燃料乙醇。由于Elusieve工艺只有在存在船体的情况下才最有效,因此在磨削之前进行任何脱壳操作都将使Elusieve加工变得不必要

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