Evaluation of Pilot-Scale Radio Frequency Heating Uniformity for Beef Sausage Pasteurization Process
Оценка равномерности радиочастотного нагрева в установке пилотного масштаба для пастеризации колбасного фарша из говядины
2022-04-30
SCID: 54.1/2fkhumh4
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beef sausage pasteurizationdielectric propertiesheating uniformitypilot-scale processingradio frequency heating
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Abstract (AI)
Radio frequency (RF) heating has the advantages of a much faster heating rate as well as the great potential for sterilization of food compared to traditional thermal sterilization. A new kettle was designed for sterilization experiments applying RF energy (27.12 MHz, 6 kW). In this research, beef sausages were pasteurized by RF heating alone, the dielectric properties (DPs) of which were determined, and heating uniformity and heating rate were evaluated under different conditions. The results indicate that the DPs of samples were significantly influenced (p < 0.01) by the temperature and frequency. The electrode gap, sample height and NaCl content had significant effects (p < 0.01) on the heating uniformity when using RF energy alone. The best heating uniformity was obtained under an electrode gap of 180 mm, a sample height of 80 mm and NaCl content of 3%. The cold points and hot spots were located at the edge of the upper section and geometric center of the sample, respectively. This study reveals the great potential in solid food for pasteurization using RF energy alone. Future studies should focus on sterilization applying RF energy and SW simultaneously using the newly designed kettle.
Key Findings
1
A pilot-scale kettle operating at 27.12 MHz and 6 kW was designed for RF pasteurization experiments on beef sausage.
2
Beef sausage dielectric properties were significantly affected by both temperature and frequency (p < 0.01).
3
Electrode gap, sample height, and NaCl content significantly influenced RF heating uniformity (p < 0.01).
4
The best heating uniformity occurred with a 180 mm electrode gap, 80 mm sample height, and 3% NaCl content.
5
The sample’s cold point was at the upper-section edge, while the hot spot was at its geometric center, demonstrating RF heating’s potential for solid-food pasteurization.
Research Object
beef sausage pasteurized using radio-frequency heating
Research Subject
dielectric properties, heating rate, and heating uniformity under varying temperature, frequency, electrode gap, sample height, and NaCl content
Publication Details
Publication Date
2022-04-30
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