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Updated: Feb 4, 2026

Author Spotlight: Exploring Tea Aroma Using Solvent-Assisted Flavor Evaporation Technique
Published on: May 26, 2023
Processing technology as aroma architect: OAV fingerprints decode differentiation and compatibility of key odorants
Panpan Liu1, Jia Chen1,2, Lin Feng1
1Key Laboratory of Tea Resources Comprehensive Utilization, Ministry of Agriculture and Rural Affairs, Hubei Qingzhuan Tea Engineering Research Centre, Fruit and Tea Research Institute, Hubei Academy of Agricultural Sciences, Wuhan, Hubei 430064, China.
Abstract:
This study systematically investigates the regulatory role of processing technology in the aroma differentiation of Fuding Dabai tea (Camellia sinensis). Using an integrated sensomics approach combining quantitative descriptive analysis and GC × GC-TOF-MS, we deciphered aroma formation in green (GT), white (WT), black (BT), and dark (DT) teas. Among 187 volatiles detected, WT exhibited the highest VOC content (2349.42 μg/L) and the most key odorants (30 of 36). Multivariate statistical modeling identified fermentation degree as the primary factor driving aroma divergence, clearly discriminating fermented (BT/DT) from non/light-fermented (GT/WT) teas. OPLS-DA selected 12 marker compounds (VIP > 1), predominantly alcohols and aldehydes. Sweet aroma exhibited strong correlations with benzeneacetaldehyde (r = 0.91) and (E)-2-hexenal (r = 0.92), while aged aroma correlated strongly with (E,E)-2,4-heptadienal (r = 0.92) (all p < 0.001). We demonstrate that processing reconfigures aroma profiles through enzymatic inhibition, oxidative conversion, and microbial fermentation pathways. These results provide a biochemical basis for aroma-oriented optimization in tea processing and establish the superior suitability of Fuding Dabai for white tea production.
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