Method for rapid and nondestructive identification of deteriorated agricultural products
A fast technology for agricultural products, applied in measuring devices, material analysis through optical means, instruments, etc., can solve the problems of cumbersome operation, strong subjectivity, and low efficiency, so as to improve industrial and agricultural production efficiency, promote healthy development, and guarantee The effect of quality and safety
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Embodiment 1
[0041] Follow the steps below to quickly and non-destructively identify whether the wheat samples 1# to 60# to be tested have deteriorated:
[0042] (1) Take 105 non-deteriorated wheats, grind them through a cyclone mill and pass through a sieve with a diameter of 1 mm to obtain non-deteriorated wheat flour; use a Fourier transform near-infrared spectrometer at a resolution of 8 cm -1 The near-infrared absorbance spectrum data of the above-mentioned non-deteriorated wheat flour were collected under the condition of 1 =4169cm -1 、w 2 =4349cm -1 and w 3 =4475cm -1 For the absorbance value under , the minimum value of 105 non-deteriorated wheat under the characteristic wavenumber is used as the threshold, and the corresponding thresholds are e 1 =0.5300, e 2 =0.5800, e 3 =0.5300;
[0043] The characteristic wavenumber w 1 =4169cm -1 、w 2 =4349cm -1 、w 3 =4475cm -1 The lower thresholds are e 1 =0.5300, e 2 =0.5800, e 3 =0.5300, (w 1 , e 1 ) corresponding to atta...
Embodiment 2
[0053] Follow the steps below to quickly and non-destructively identify whether the wheat samples 61# to 120# to be tested have deteriorated:
[0054] (1) Take 105 non-deteriorated wheats, grind them through a cyclone mill and pass through a sieve with a diameter of 1 mm to obtain non-deteriorated wheat flour; use a Fourier transform near-infrared spectrometer at a resolution of 8 cm -1 The near-infrared absorbance spectrum data of the above-mentioned non-deteriorated wheat flour were collected under the condition of , and after the baseline correction was performed on the obtained near-infrared absorbance spectrum data, the characteristic wavenumber w of the non-deteriorated wheat in the mid-wave near-infrared region was obtained 4 =5377cm -1 、w 5 =5661cm -1 and w 6 =5986cm -1 For the absorbance value under , the minimum value of 105 non-deteriorated wheat under the characteristic wavenumber is used as the threshold, and the corresponding thresholds are e 4 =0.5350, e 5...
Embodiment 3
[0064] Follow the steps below to quickly and non-destructively identify whether the wheat samples 121# to 180# to be tested have deteriorated:
[0065] (1) Take 105 non-deteriorated wheats, grind them through a cyclone mill and pass through a sieve with a diameter of 1 mm to obtain non-deteriorated wheat flour; use a Fourier transform near-infrared spectrometer at a resolution of 8 cm -1 The near-infrared absorbance spectrum data of the above-mentioned non-deteriorated wheat flour were collected under the condition of 7 =7606cm -1 、w 8 =8346cm -1 、w 9 =9305cm -1 、w 10 =10616cm -1 For the absorbance value under , the minimum value of 105 non-deteriorated wheat under the characteristic wavenumber is used as the threshold, and the corresponding thresholds are e 7 =0.5350, e 8 =0.5730, e 9 =0.5370, e 10 =0.5350;
[0066] The characteristic wavenumber w 7 =7606cm -1 、w 8 =8346cm -1 、w 9 =9305cm -1 、w 10 =10616cm -1 The lower thresholds are e 7 =0.5350, e 8 =0.573...
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