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Effects of Impact Dehuller Rotor Speed on Dehulling Characteristics of Diverse Oat Genotypes Grown in Different Environments

机译:冲击去皮机转子转速对不同环境下燕麦基因型脱壳特性的影响

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Commercial processing of oats for human consumption generally requires impact dehulling to isolate groats from the hull. Impact dehulling involves feeding oat grain into the center of a spinning rotor that expels the grain against the walls of the dehuller. The force of the impact breaks the hull from the groat. We have tested the effect of rotor speed on dehulling efficiency, groat breakage, and unbroken groat yield on 18 oat genotypes from replicated plots in six different environments. Dehulling efficiency and groat breakage increased with rotor speed with all genotypes and environments, but there were significant genotypic and environmental effects as well. In general, genotypes with higher test weight and kernel density dehulled more efficiently at slower rotor speeds. Oat genotypes with higher oil and protein concentrations in their groats tended to break less during dehulling. Oats from hotter, drier environments suffered greater groat breakage. Maximal unbroken groat yield represented a balance between dehulling efficiency and groat breakage, but groat proportion and dehulling efficiency appeared to be the most important factors contributing to groat yield.
机译:供人食用的燕麦商业化加工通常需要去壳去皮,以使去壳与壳分离。冲击脱壳涉及将燕麦谷物喂入旋转转子的中心,该转子将谷物排向脱壳器的壁。冲击力使船体脱离了碎粒。我们已经测试了转子速度对六个不同环境中重复样地中18种燕麦基因型的去皮效率,去壳率和未破壳率的影响。在所有基因型和环境下,脱壳效率和碎粒率随转子速度的增加而增加,但是在基因型和环境方面也有显着影响。通常,具有较高测试重量和籽粒密度的基因型在较低的转子速度下会更有效地脱壳。在去壳过程中,油脂和蛋白质含量较高的燕麦基因型趋向于破碎。在较热,较干燥的环境中燕麦的破损更大。最高的连续碎粒产量代表着去皮效率和碎粒破损之间的平衡,但是碎粒比例和去皮效率似乎是促成碎粒产量的最重要因素。

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