<p><i>Qu</i>-aroma is a critical quality indicator for medium–high temperature Daqu (MT-<i>Daqu</i>). Due to the differences in regional and environmental conditions, these differences are likely to cause variations in the <i>Qu</i>-aroma of MT-<i>Daqu</i>. Despite this, comprehensive research on the variations in <i>Qu</i>-aroma across different regions has been lacking. This study aims to address this gap to analyze the differences in <i>Qu</i>-aroma characteristics of MT-<i>Daqu</i> from seven distinct production areas. Sensory analysis identified seven broad aroma categories and 25 specific aromas characterizing the <i>Qu</i>-aroma of MT-<i>Daqu</i> samples. Chen aroma and roasted aroma were notably more prevalent in MT-<i>Daqu</i> samples from Sichuan compared to those from other regions (<i>P</i> &lt; <i>0.05</i>). In total, 123 volatile compounds were detected in MT-<i>Daqu</i>, with 42 classified as aroma-active compounds. Among these, 21 aroma-active compounds were identified as markers distinguishing Sichuan MT-<i>Daqu</i> from those produced in non-Sichuan regions, showing significant differences in their concentrations (<i>P</i> &lt; <i>0.05</i>). Additionally, six major aroma-active compounds were found to significantly contribute to the aroma differences between Sichuan and non-Sichuan MT-<i>Daqu</i>. This study delineates the distinct <i>Qu</i>-aroma characteristics of MT-<i>Daqu</i> from various SAB production areas. The insights gained from this research offer valuable guidance for optimizing flavor profiles in MT-<i>Daqu</i> production.</p> Graphical Abstract <p></p>

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Characterization of Qu-aroma of medium–high temperature Daqu from different production areas using sensory evaluation, E-nose, and GC–MS/O analysis

  • Jie Deng,
  • Jia Zheng,
  • Xing Li,
  • Dan Huang,
  • Guangbin Ye,
  • Huibo Luo

摘要

Qu-aroma is a critical quality indicator for medium–high temperature Daqu (MT-Daqu). Due to the differences in regional and environmental conditions, these differences are likely to cause variations in the Qu-aroma of MT-Daqu. Despite this, comprehensive research on the variations in Qu-aroma across different regions has been lacking. This study aims to address this gap to analyze the differences in Qu-aroma characteristics of MT-Daqu from seven distinct production areas. Sensory analysis identified seven broad aroma categories and 25 specific aromas characterizing the Qu-aroma of MT-Daqu samples. Chen aroma and roasted aroma were notably more prevalent in MT-Daqu samples from Sichuan compared to those from other regions (P < 0.05). In total, 123 volatile compounds were detected in MT-Daqu, with 42 classified as aroma-active compounds. Among these, 21 aroma-active compounds were identified as markers distinguishing Sichuan MT-Daqu from those produced in non-Sichuan regions, showing significant differences in their concentrations (P < 0.05). Additionally, six major aroma-active compounds were found to significantly contribute to the aroma differences between Sichuan and non-Sichuan MT-Daqu. This study delineates the distinct Qu-aroma characteristics of MT-Daqu from various SAB production areas. The insights gained from this research offer valuable guidance for optimizing flavor profiles in MT-Daqu production.

Graphical Abstract