谷物含水率和辊磨间隙尺寸对黄凹玉米粉各种物理性能的影响

Muhammad Noor Intan Shafinas, Darfour Bernard, M. Nazira, K. Rosentrater
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Yellow dent corn grain with moisture contents (MC) of 8%, 14.0%, and 18%, and roller gap sizes (GAP) of 0.1016 mm, 0.2032 mm, and 0.3048 mm were used. The Witt corrugated roller mill equipment with rollers of 1/32 inches corrugations was used to produce fine grits and flours. The particle sizes obtained were between 0.54 mm and 0.75 mm which increased with an increase in MC and GAP. Grain with 8% MC and GAP of 0.1016 mm and 0.2032 mm, and grain with 14.0% MC and GAP of 0.1016 mm can produce flour of particle sizes good for swine feed. Grain with 8% MC and GAP of 0.3048 mm and grain with 14.0.0% MC and GAP of 0.1016 mm and 0.2032 mm can produce flour of particle sizes good for ruminant feed. Grain with 18% MC and GAP of 0.1016 mm, and grain with 14.0% MC and GAP of 0.2032 mm can produce flour of particle sizes good for poultry feed. GAP of 0.1016 mm and 8% MC can produce flour of particle sizes suitable for the ethanol production industry. 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引用次数: 1

摘要

全球种植的玉米有六个主要品种,用于动物饲料、人类消费和商业/工业用途。面粉是玉米干磨的最终产品。由玉米粉制成的产品由于玉米品种的不同、碾磨方法的不同、面粉粒度的不同和干燥温度的不同,往往在物理、化学和糊化性能上表现出差异。本研究旨在确定不同黄凹玉米含水率和辊辊间隙大小对所制玉米粉物理性能的影响。还考虑了将该面粉用于动物饲料生产和乙醇生产的可能性。采用含水率(MC)为8%、14.0%和18%的黄凹玉米,辊隙尺寸(gap)分别为0.1016 mm、0.2032 mm和0.3048 mm。采用具有1/32英寸波纹辊的威特波纹辊磨设备生产细粉和面粉。所得颗粒粒径在0.54 ~ 0.75 mm之间,随MC和GAP的增加而增大。8% MC、0.1016 mm和0.2032 mm的谷物和14.0% MC、0.1016 mm的谷物可以生产出适合猪饲料的粒度面粉。8% MC、GAP为0.3048 mm和14.0.0% MC、GAP为0.1016 mm和0.2032 mm的谷物可生产出适合反刍动物饲料的粒度面粉。含18%纤维素、间隙为0.1016 mm的谷物和含14.0%纤维素、间隙为0.2032 mm的谷物可以生产出适合家禽饲料的粒度面粉。GAP为0.1016 mm, MC为8%,可生产适合乙醇生产行业的粒度面粉。面粉的配制要有针对性地根据谷物的MC和GAP进行。粒径几何平均直径在0.54 mm ~ 0.75 mm之间,粒径几何平均直径随MC和GAP的增大而增大。含水率为8%的籽粒在面粉中的损失最大,含水率为18%的籽粒对面粉的红色有显著影响。
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Effect of Grain Moisture Content and Roller Mill Gap Size on Various Physical Properties of Yellow Dent Corn Flour
Corn has six main varieties grown globally for animal feed, human consumption, and commercial/industrial purposes. Flour is an end-product of corn dry-milling. Products that are derived from corn flour often show differences in physical, chemical, and pasting properties due to corn varietal differences, milling methods, differences in flour particle sizes, and drying temperatures. The study aimed to determine the effect of different moisture contents of yellow dent corn and roller gap sizes, on the physical properties of the resulting corn flour. The possibility to use the flour in the manufacturing of animal feed and ethanol production was also considered. Yellow dent corn grain with moisture contents (MC) of 8%, 14.0%, and 18%, and roller gap sizes (GAP) of 0.1016 mm, 0.2032 mm, and 0.3048 mm were used. The Witt corrugated roller mill equipment with rollers of 1/32 inches corrugations was used to produce fine grits and flours. The particle sizes obtained were between 0.54 mm and 0.75 mm which increased with an increase in MC and GAP. Grain with 8% MC and GAP of 0.1016 mm and 0.2032 mm, and grain with 14.0% MC and GAP of 0.1016 mm can produce flour of particle sizes good for swine feed. Grain with 8% MC and GAP of 0.3048 mm and grain with 14.0.0% MC and GAP of 0.1016 mm and 0.2032 mm can produce flour of particle sizes good for ruminant feed. Grain with 18% MC and GAP of 0.1016 mm, and grain with 14.0% MC and GAP of 0.2032 mm can produce flour of particle sizes good for poultry feed. GAP of 0.1016 mm and 8% MC can produce flour of particle sizes suitable for the ethanol production industry. Flour preparation should purposely be done based on grain MC and GAP. The geometric mean diameter of particle sizes ranged from 0.54 mm-0.75 mm, and the geometric mean diameter of particle sizes increased with increasing MC and GAP. Also, grains with 8% MC had the highest loss in flour, and the higher moisture of 18% significantly affected the red color of flour.
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