Complementary spectral and volatile fingerprints enable discrimination of post-harvest processed arabica coffee using
Widiastuti Setyaningsih1, Deyla Prajna2, Nuri Andarwulan3
1Department of Food and Agricultural Product Technology, Faculty of Agricultural Technology, Universitas Gadjah Mada, Jalan Flora, Depok, Sleman, Yogyakarta 55281, Indonesia.
Abstract:
Post-harvest processing strongly influences the chemical composition and aroma development of coffee, yet rapid analytical approaches for differentiating processing methods remain limited. This study evaluates near-infrared (NIR) spectroscopy and headspace gas chromatography-ion mobility spectrometry (HS-GC-IMS) as complementary tools to discriminate Arabica coffee processed by honey, natural, and washed methods. Roasted Arabica Gayo coffees were analyzed using NIR spectroscopy and HS-GC-IMS, followed by chemometric evaluation with principal component analysis and supervised machine learning. Support vector machine models provided the most robust performance, with ion mobility sum spectra (IMSS) achieving 100% test accuracy without preprocessing, while first-derivative NIR spectra also reached perfect classification. Model interpretation highlighted class-discriminant IMSS relative drift-time variables and derivative-enhanced NIR wavelength regions, although these fingerprint variables were not assigned to individual compounds. These results demonstrate that NIR spectroscopy and HS-GC-IMS provide complementary chemical fingerprints enabling rapid and reliable discrimination of coffee post-harvest processing.
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