Near-infrared characterizing method for quality change in tobacco silk producing procedures
A near-infrared and tobacco-based technology, applied in the direction of measuring devices, material analysis through optical means, instruments, etc., can solve the problems of sensory quality fluctuation, long chemical analysis cycle, unsuitable for sample process quality evaluation, etc., and achieve stable effect and quality , the effect of short cycle
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Embodiment 1
[0021] Near-infrared characterization of changes in tobacco quality during the loosening and moisturizing process of silk lines. Set KB-01 as a blank sample according to step 1, set SS-01, SS-02, SS-03 as a comparison sample according to step 2, and their respective process parameters are shown in Table 1:
[0022]
[0023]
[0024] Table 1 Process parameters of loosening and moisturizing
[0025] For the blank sample KB-01 and the comparison samples SS-01, SS-02, SS-03, go through steps 3 to 6: collect the near infrared of the blank sample KB-01, the comparison samples SS-01, SS-02, SS-03 Scan the spectrum, the acquisition range is 7500cm -1 to 4000cm -1 , subtract the scanning spectrum of the blank sample KB-01 from the scanning spectrum of the comparative samples SS-01, SS-02, SS-03, and obtain respectively as follows: figure 1 The near infrared spectrum of SS-01, SS-02, SS-03. from figure 1 It can be seen that when the process parameters are different, the near-...
Embodiment 2
[0027] Near-infrared characterization of changes in tobacco quality during microwave loosening of silk lines. Set KB-02 as a blank sample according to step 1, set WB-01, WB-02, WB-03 as a comparison sample according to step 2, and their respective process parameters are shown in Table 2:
[0028]
[0029]
[0030] Table 2 Microwave loosening process parameters
[0031] For the blank sample KB-02 and the comparison samples WB-01, WB-02, WB-03, go through steps 3 to 6: collect the near infrared of the blank sample KB-02, the comparison samples WB-01, WB-02, WB-03 Scan the spectrum, the acquisition range is 9000cm -1 to 4000cm -1 , subtract the scanning spectrum of the blank sample KB-02 from the scanning spectrum of the comparative samples WB-01, WB-02 and WB-03, respectively, as follows: figure 2 The near-infrared difference spectra of WB-01, WB-02, WB-03. from figure 2 It can be seen that when the process parameters are different, the near-infrared difference spec...
Embodiment 3
[0033] Near Infrared Characterization of Tobacco Quality Changes During the Cutting Process of a Filament Line. Set KB-03 as blank sample according to step 1, set QS-1, QS-2, QS-3 as comparative samples according to step 2, and their respective process parameters are shown in Table 3:
[0034]
[0035]
[0036] Table 3 Shredding process parameters
[0037] For the blank sample KB-03 and the comparison samples QS-1, QS-2, QS-3, go through steps 3 to 6: collect the near infrared of the blank sample KB-03, the comparison samples QS-01, QS-02, QS-03 Scan the spectrum, the acquisition range is 7000cm -1 to 4500cm -1 , subtract the scanning spectrum of the blank sample KB-03 from the scanning spectrum of the comparative samples QS-01, QS-02, QS-03, and obtain respectively the following image 3 The near infrared spectrum of QS-01, QS-02, QS-03. from image 3 It can be seen that when the process parameters are different, the near-infrared difference spectra of the comparat...
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