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首页> 外文期刊>International Journal of Agricultural and Biological Engineering >Optimization of wheat debranning using laboratory equipment for ethanol production
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Optimization of wheat debranning using laboratory equipment for ethanol production

机译:使用用于乙醇生产的实验室设备优化小麦去皮

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Abstract: Ethanol production from starchy cereal grains is increasing rapidly due to increasing demand for alternative fuels. In Canada, wheat is the primary feedstock in ethanol plants. To improve the productivity of the ethanol plants in terms of product quality and yield, debranning of wheat grains may be employed. Debranning is advantageous in two ways. Firstly, bran removal increases the starch content of the feedstock, improving the fermentation efficiency of the ethanol plants. Secondly, bran, a valuable co-product can be used as an animal feed ingredient. In this study, experiments to optimize the debranning process were carried out using two kinds of abrasive equipment, the Satake and the TADD (tangential abrasive dehulling device) mills. Wheat samples (30 and 200 g) were debranned in the Satake mill at 1 215, 1 412, and 1 515 r/min rotational speeds, 30, 36, and 40 grit sizes, and 30, 60, and 90 s retention times, and in the TADD mill at 900 r/min rotational speed, 30, 36, 50, and 80 grit sizes, and 120, 180, 240, and 300 s retention times. In addition to debranning efficiency, the starch separation efficiencies of the two mills were calculated in different debranning conditions. In the Satake mill, the 30 g and 200 g sample size, 1 412 r/min and 1 515 r/min rotational speeds, all grit sizes, and 60 s of retention time demonstrated the highest debranning efficiency. Correspondingly, optimal results in the TADD mill were obtained with 200 g sample size, 900 r/min rotational speed, 50 and 80 grit sizes, and 180 s and 240 s retention times. However, based on the experimental results, Satake mill provided better debranning values compared to the TADD mill. The starch separation efficiency values supported these results. Keywords: wheat debranning, ethanol production, Satake mill, tangential abrasive dehulling device, grit size, retention time, rotational speed, starch separation efficiency DOI: 10.3965/j.ijabe.20140706.008 Citation: George E, Rentsen B, Tabil L G, Meda V. Optimization of wheat debranning using laboratory equipment for ethanol production. Int J Agric & Biol Eng, 2014; 7(6): 54-66.
机译:摘要:由于对替代燃料的需求增加,淀粉类谷物中的乙醇产量正在迅速增长。在加拿大,小麦是乙醇工厂的主要原料。为了在产品质量和产量方面提高乙醇植物的生产率,可以使用小麦籽粒的去皮。去屑在两个方面是有利的。首先,麸皮的去除增加了原料中淀粉的含量,提高了乙醇植物的发酵效率。其次,麸皮(一种有价值的副产品)可以用作动物饲料成分。在这项研究中,利用Satake和TADD(切向磨料脱壳设备)两种磨料设备进行了优化脱屑过程的实验。在Satake磨机中以1215、1412和1515 r / min的转速,30、36和40粒度的砂粒以及30、60和90 s的保留时间对小麦样品(30和200 g)进行脱脂处理,在TADD磨机中,转速为900 r / min,粒度分别为30、36、50和80,以及120、180、240和300 s的保留时间。除了脱脂效率外,还在不同的脱脂条件下计算了两个磨机的淀粉分离效率。在Satake磨机中,30 g和200 g的样品量,1 412 r / min和1 515 r / min的转速,所有粒度的砂纸以及60 s的保留时间都证明了最高的去屑效率。相应地,在TADD磨机中,使用200 g样品大小,900 r / min转速,50和80粒度的粒度以及180 s和240 s的保留时间可获得最佳结果。但是,根据实验结果,与TADD磨相比,Satake磨提供了更好的脱脂值。淀粉分离效率值支持了这些结果。关键字:小麦去膜,乙醇生产,Satake磨机,切向磨料去皮装置,粒度,保留时间,转速,淀粉分离效率DOI:10.3965 / j.ijabe.20140706.008引文:George E,Rentsen B,Tabil LG,Meda V 。使用实验室设备生产乙醇来优化小麦去皮。农业与生物工程学杂志,2014; 7(6):54-66。

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