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March 6, 2026Molecules3 citationsOpen Access

Tracking Aromatic Volatile Biomarkers Through Coffee Bean Postharvest Stages

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APAlexa J. Pajuelo-MuñozNational University Toribio Rodríguez de MendozaICIlse S. Cayo-ColcaNational University Toribio Rodríguez de MendozaCGCarlos Granda-WongUniversidad Nacional de Piura

Key Points

  • The central aim is to synthesize evidence on volatile biomarkers throughout coffee's postharvest stages.
  • Conducted a review of existing literature on coffee processing stages.
  • Analyzed the role of various volatile compounds in different postharvest processes.
  • Evaluated the implications of biomarkers for coffee quality and processing standards.
  • Identified key volatile compounds linked to coffee ripeness and defects.
  • Highlighted the role of yeast and bacteria in producing alcohols and acids during fermentation.
  • Showed how drying affects the retention of aromatic compounds and coffee stability.
  • Described how roasting incorporates the bean's entire postharvest history reflected in aroma.

Abstract

This review synthesizes recent evidence on the generation and behavior of volatile biomarkers throughout the main postharvest stages of coffee, highlighting their potential for technological standardization. During harvest, aldehydes, furans, and lactones reflect ripeness and the presence of physiological defects, thereby influencing the formation of other volatile groups in subsequent stages. During pulping and fermentation, the metabolism of yeasts and lactic and acetic acid bacteria produces alcohols, acids, and esters (such as 2-phenylethanol, ethyl acetate, and methyl phenylacetate), which function as biomarkers of proper mucilage management and a balanced initial fermentation. In drying, the evolution of aldehydes derived from lipid oxidation and the retention of aromatic esters provide insights into dehydration kinetics and the stability of green coffee against oxidation. Finally, during roasting, volatile pyrazines, furans, thiols, and phenols integrate the entire postharvest history of the bean and enable inferences about roast degree, thermal overexposure, and final aroma development. Overall, the volatile biomarkers described here provide a robust chemical basis for objective monitoring of the postharvest process and the differentiation of coffee lots, although further studies are needed to define critical ranges by origin and processing system, standardize analytical methodologies, and quantitatively link these compounds to commercial quality parameters.

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Cite This Study

Pajuelo-Muñoz et al. (2026) studied this question.

synapsesocial.com/papers/69aa7066531e4c4a9ff5a27fhttps://doi.org/10.3390/molecules31050853
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