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Updated: Sep 16, 2026

Ultrasonic-Assisted Preparation of Biodiesel Products from Vegetable Oils
Published on: April 19, 2024
Ultrasound-assisted processing improves germination and mashing efficiency and the functional quality of pumpkin
Flaviana Coelho Pacheco1, Irene Andressa1, Fabiana Nascimento de Carvalho1
1Department of Food Technology, Federal University of Viçosa, Avenue Peter Henry Rolfs, s / n, University Campus, Viçosa, MG 36570-900, Brazil.
Abstract:
This study evaluated the combined effects of ultrasound-assisted hydration (25 kHz, 38 W/L, 20 min, 25 °C), followed by germination (72 h at 25 °C), and ultrasound-assisted mashing performed under 0 %, 50 %, or 100 % ultrasound application during each isothermal resting stage (25 kHz, 38 W/L, 25 °C). The effects of these processing conditions on the technological performance, fermentation kinetics, and bioactive potential of fermented beverages produced from pumpkin seed flour were evaluated. Ultrasound-assisted mashing, particularly when combined with ultrasound pretreatment and germination, enhanced compound release, increasing total soluble solids, reducing sugars, and soluble proteins by up to 2.5-, 25.4-, and 5.8-fold, respectively. The improved substrate availability accelerated fermentation, increasing acidification rates by up to 2.21-fold and reducing fermentation time by up to 44 % to reach the final endpoint of pH 4.6. During refrigerated storage (15 days at 5 °C), pH and acidity remained stable (p > 0.05), while probiotic viability remained above 9 log CFU/mL. Ultrasound-assisted mashing also increased beverage luminosity and whiteness index, whereas germination enhanced yellowness index. The combined processing strategy improved the functional quality of the beverages, increasing total phenolic content (2.3-fold), in vitro antioxidant activity (up to 5.1-fold by ABTS and 4.9-fold by DPPH), as well as in vitro α-glucosidase inhibitory activity (2.6-fold) and in vitro angiotensin-converting enzyme (ACE) inhibitory activity (1.9-fold) after fermentation. Overall, the integration of ultrasound-assisted hydration, germination, and ultrasound-assisted mashing improved compound release, fermentation efficiency, and the functional quality of the resulting beverages. Both ultrasound-assisted mashing conditions were effective, although continuous sonication (100 %) generally provided the greatest functional improvements.
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