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Effects of kernel hardness and moisture content on wheat breakage in the single kernel characterisation system

机译:单粒表征系统中籽粒硬度和水分含量对小麦破碎的影响

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摘要

The particle size distribution (psd) produced by breakage of wheat in the Perten Single Kernel Characterisation System (SKCS) was measured using sonic sifting, for a range of wheat varieties, kernel sizes and moisture contents. At moisture contents of 16% wb, the psd produced by the SKCS was very evenly spread over the range 106-3350 µm, with the average particle size much greater than would result from roller milling. Hard wheats gave slightly smaller average particle sizes in the broken material (this was unexpected and contrasts with First Break roller milling, for which hard wheats give larger output particles than soft wheats), but the variation in psd among different wheat varieties was surprisingly small. This indicates that the SKCS exerts a very positive breakage action on wheat grains, giving similar degrees of breakage to kernels of different hardness. The reported hardness index therefore depends primarily on the crushing force profile or energy to grind, and is not confounded by differences in the extent of breakage achieved. Kernel size similarly gave little difference in the output psd. The effect of increasing the moisture content from 9 to 17% wb was to increase the average output particle size greatly; moist kernels do not break so readily in the SKCS.
机译:对于多种小麦品种,籽粒大小和水分含量,使用声波筛分法测量了在Perten单核特征分析系统(SKCS)中由小麦破碎产生的粒径分布(psd)。在水分含量为16%wb的情况下,SKCS产生的psd非常均匀地分布在106-3350 µm的范围内,其平均粒径远大于辊磨产生的粒径。硬质小麦在破碎物料中的平均粒径略小(这是出乎意料的,这与“初碎”辊磨相比,硬质小麦比软质小麦具有更大的输出颗粒),但是不同小麦品种的psd差异却出乎意料地小。这表明SKCS对小麦籽粒产生非常积极的破坏作用,使不同硬度的籽粒具有类似程度的破坏。因此,所报告的硬度指数主要取决于破碎力曲线或要研磨的能量,并且不会因所达到的断裂程度差异而感到困惑。类似地,内核大小在输出psd中几乎没有差异。将水分含量从9%wb增加到17%wb的效果是大大增加了平均输出粒度;在SKCS中,潮湿的籽粒不易破裂。

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