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Determination of the quality of high-moisture wheat using near-infrared spectroscopy (Part 1) --determination of moisture and protein content in high-moisture wheat-

机译:使用近红外光谱法测定高湿小麦的质量(第1部分) - 在高湿度小麦中的水分和蛋白质含量 -

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摘要

It has been difficult to make an accurate measurement of the moisture and protein content of wheat whose moisture content varies widely during drying and processing. In this study, we used near-infrared spectroscopy, to investigate the accuracy of the measurement for moisture content of wheat in the drying process. Then, we investigated the accuracy of measurements of moisture and protein content of wheat at drying and processing facilities. We found that we could measure both constituents with high accuracy when materials were prepared as high and low moisture wheat with a dividing line of 18% moisture content. The accuracy of wheat moisture content measurement in the drying process was SEP=0.48% and SEP=0.32% for high and low moisture materials, respectively. At processing, the accuracy of the measurement of moisture content was SEP=0.4l% and SEP=0.ll% for high and low moisture materials, respectively, and for protein content it was SEP=0.l3% for both types of materials.
机译:难以准确测量小麦的水分和蛋白质含量,其水分含量在干燥和加工过程中变化很大。 在本研究中,我们使用近红外光谱,研究了干燥过程中小麦水分含量测量的准确性。 然后,我们调查了在干燥和加工设施时对小麦的水分和蛋白质含量测量的准确性。 我们发现,当材料制备高低水小麦时,我们可以测量具有高精度的成分,其含水量为18%的水分含量。 干燥过程中的小麦水分含量测量的准确性分别为0.48%,分别为高水分材料= 0.32%。 在加工时,水分含量测量的准确性分别为含水量的= 0.4L%,分别为高和低水分材料的±0ll%,并且对于两种材料的蛋白质含量为蛋白质含量 。

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