PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 9, 20262 citationsOpen Access

Contact Ultrasound-Assisted Hot Air Drying of Sichuan Pepper: Drying Characteristics, Microstructure, and Physicochemical Quality Attributes

View Full Paper
XLXu LiuKZKaikai ZhangBWBowen Wu

Key Points

  • To evaluate the effectiveness of contact ultrasound-assisted hot air drying on the drying characteristics and quality of Sichuan pepper.
  • Applied ultrasound at various frequencies and powers during hot air drying
  • Measured drying temperature effects on drying kinetics and quality attributes
  • Conducted Scanning Electron Microscopy to observe microstructural changes
  • US-HAD reduced drying time by 20.00–33.33% compared to traditional drying methods
  • The drying kinetics were accurately described by the Page model with R2 > 0.99
  • Ultrasound enhanced effective moisture diffusivity significantly
  • Color degradation and flavor compound loss were minimized while retaining high levels of phenols and flavonoids

Abstract

Sichuan Pepper is a high-value spice, but traditional drying often degrades its unique flavor and quality. This study investigates the applicability of contact ultrasound-assisted hot air drying (US-HAD) to address these issues. The effects of drying temperature (45, 50, 55 °C), ultrasonic power (48, 60, 72 W), and frequency (25, 28, 40 kHz) on drying kinetics, effective moisture diffusivity (Deff), and physicochemical quality were systematically evaluated. Results showed that US-HAD significantly reduced drying time by 20.00–33.33% compared to hot air drying (HAD). The Page model (R2 > 0.99) best described the drying kinetics. Ultrasound enhancement increased Deff (6.55 × 10−6 to 9.63 × 10−6 m2/s) by inducing micro-channel formation and stomatal opening, as evidenced by Scanning electron microscopy (SEM). Critically, US-HAD at 50 °C, 60 W, and 28 kHz minimized color degradation ( = 18.73), maximized the retention of total phenols and flavonoids, and increased antioxidant activity by 18.62%. GC-MS analysis confirmed better retention of volatile flavor compounds. However, the slight decrease in Deff at higher temperatures (55 °C) suggests potential surface hardening risks. This study confirms US-HAD as a promising technology for high-quality spice processing, though further research is still needed on the cost-effectiveness of industrial-scale expansion.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/698979d9f0ec2af6756e7cd5https://doi.org/10.3390/agriculture16030391
Ask AI
Helpful
Bookmark
Share
View Full Paper