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Article

Quality and Microstructural Changes in Salted Goose Meat Dried by Hot-Air, Infrared, and Microwave Techniques

by
Emre Kabil
1,*,
Muhammet Ali Çakır
2,
Barış Yalınkılıç
3 and
Mehmet Başlar
4
1
Department of Food Processing, Armutlu Vocational College, Yalova University, 77500 Yalova, Türkiye
2
Department of Nutrition and Dietetics, Faculty of Health Science, Kırklareli University, 39000 Kırklareli, Türkiye
3
Department of Gastronomy and Culinary Arts, Faculty of Architecture and Design, İstanbul Gedik University, 34876 Istanbul, Türkiye
4
iPeak Academy Ltd., Mildenhall, Suffolk IP28 7DE, UK
*
Author to whom correspondence should be addressed.
Processes 2025, 13(10), 3223; https://doi.org/10.3390/pr13103223
Submission received: 19 August 2025 / Revised: 4 October 2025 / Accepted: 5 October 2025 / Published: 10 October 2025

Abstract

This study aimed to investigate the effects of different drying methods on salted goose meat, with a particular focus on its microstructure, drying kinetics, color, TBARS (Thiobarbituric acid reactive substances), rehydration, and shrinkage parameters. Goose breast meat with 6% (w/w) salt was dried using hot air and infrared drying at temperatures of 55 °C, 65 °C, and 75 °C, as well as microwave at power levels of 120 W, 350 W, and 460 W. The results revealed that increasing temperature and power levels increased the drying rate in all drying methods. The microwave-dried samples at 460 W and 350 W showed the highest average L* values, followed by the samples dried at 75 °C using infrared and hot air. On the other hand, the lowest temperature (55 °C) and power (120 W) levels resulted in the highest average TBARS values across all drying processes. Furthermore, the highest shrinkage rate was observed at the highest temperature (75 °C) or power level (460 W), while the highest average rehydration rate was recorded in the samples dried at 75 °C using infrared and hot air. Considering the microstructure of the dried meats, the drying method and the temperature/power conditions were found to cause a change in the fibril structures to varying extents.
Keywords: goose meat; drying kinetics; microwave drying; infrared drying; meat microstructure goose meat; drying kinetics; microwave drying; infrared drying; meat microstructure

Share and Cite

MDPI and ACS Style

Kabil, E.; Çakır, M.A.; Yalınkılıç, B.; Başlar, M. Quality and Microstructural Changes in Salted Goose Meat Dried by Hot-Air, Infrared, and Microwave Techniques. Processes 2025, 13, 3223. https://doi.org/10.3390/pr13103223

AMA Style

Kabil E, Çakır MA, Yalınkılıç B, Başlar M. Quality and Microstructural Changes in Salted Goose Meat Dried by Hot-Air, Infrared, and Microwave Techniques. Processes. 2025; 13(10):3223. https://doi.org/10.3390/pr13103223

Chicago/Turabian Style

Kabil, Emre, Muhammet Ali Çakır, Barış Yalınkılıç, and Mehmet Başlar. 2025. "Quality and Microstructural Changes in Salted Goose Meat Dried by Hot-Air, Infrared, and Microwave Techniques" Processes 13, no. 10: 3223. https://doi.org/10.3390/pr13103223

APA Style

Kabil, E., Çakır, M. A., Yalınkılıç, B., & Başlar, M. (2025). Quality and Microstructural Changes in Salted Goose Meat Dried by Hot-Air, Infrared, and Microwave Techniques. Processes, 13(10), 3223. https://doi.org/10.3390/pr13103223

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