研究目的
To assess the applicability of a portable NIR spectroscopy system and chemometric algorithms in intelligently detecting postharvest quality of cherry tomatoes, specifically evaluating firmness, soluble solids content (SSC), and pH.
研究成果
NIR spectroscopy combined with ELM algorithms provides excellent prediction for firmness and SSC, and good prediction for pH in cherry tomatoes, demonstrating its capability for nondestructive quality assessment during postharvest storage.
研究不足
The study is limited to cherry tomatoes under specific storage conditions; preprocessing methods like MSC and SNV did not improve prediction performance, and the models may not generalize to other fruits or conditions without further validation.
1:Experimental Design and Method Selection:
The study used a portable NIR spectrometer to collect spectra from cherry tomatoes over a storage period, applying chemometric algorithms (PLS, SVM, ELM) for prediction. Preprocessing techniques (S-G, MSC, SNV) were evaluated.
2:Sample Selection and Data Sources:
Cherry tomatoes harvested at 30–60% red skin color, stored at 7°C and 90% relative humidity for 25 days, with 15 samples selected every 5 days for analysis.
3:List of Experimental Equipment and Materials:
Portable NIR spectrometer (950–1650 nm), puncture tester (model GY-1), hand refractometer, acidimeter, white Teflon board, optical fiber, USB data line, personal computer.
4:Experimental Procedures and Operational Workflow:
Spectra were collected by positioning a fiber probe on the tomato surface, with three measurements averaged. Quality parameters (firmness, SSC, pH) were measured after spectral collection. Data preprocessing and modeling were performed using specified software.
5:Data Analysis Methods:
Statistical analysis with SPSS, hierarchical clustering with PermutMatrix, PCA, and chemometric modeling with MATLAB and Unscrambler software.
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NIR Spectrometer
950–1650 nm
Isuzu Optics Corp.
To obtain the spectra of cherry tomatoes in the reflectance mode.
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Puncture Tester
GY-1
Handpi Instrument Co.
To determine the firmness of cherry tomatoes at the fruit equator.
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Hand Refractometer
Aipli Co. Ltd.
To measure the soluble solids content (SSC) of cherry tomato juice.
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Acidimeter
Shanghai Precision Scientific Instrument Co. Ltd.
To measure the pH value of cherry tomato juice.
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White Teflon Board
Used as a white reference for correcting NIR spectra intensity.
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Optical Fiber
To transmit light from the NIR spectrometer to the sample.
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USB Data Line
To connect the NIR spectrometer to a personal computer for data transfer.
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Personal Computer
To control the NIR spectrometer and perform data analysis.
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