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Effects of Moisture Temperature and Salt Content on the Dielectric Properties of Pecan Kernels during Microwave and Radio Frequency Drying Processes

机译:微波和射频干燥过程中水分温度和盐含量对山核桃仁介电性能的影响

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摘要

Dielectric properties of materials influence the interaction of electromagnetic fields with and are therefore important in designing effective dielectric heating processes. We investigated the dielectric properties (DPs) of pecan kernels between 10 and 3000 MHz using a Novocontrol broadband dielectric spectrometer in a temperature range of 5–65 °C and a moisture content range of 10–30% wet basis (wb) at three salt levels. The dielectric constant (ε′) and loss factor (ε″) of the pecan kernels decreased significantly with increasing frequency in the radio frequency (RF) band, but gradually in the measured microwave (MW) band. The moisture content and temperature increase greatly contributed to the increase in the ε′ and ε″ of samples, and ε″ increased sharply with increasing salt strength. Quadratic polynomial models were established to simulate DPs as functions of temperature and moisture content at four frequencies (27, 40, 915, and 2450 MHz), with R2 > 0.94. The average penetration depth of pecan kernels in the RF band was greater than that in the MW band (238.17 ± 21.78 cm vs. 15.23 ± 7.36 cm; p < 0.01). Based on the measured DP data, the simulated and experimental temperature-time histories of pecan kernels at five moisture contents were compared within the 5 min RF heating period.
机译:材料的介电特性会影响电磁场与电磁场的相互作用,因此在设计有效的介电加热过程中很重要。我们使用Novocontrol宽带介电谱仪在5–65°C的温度范围内和三盐分下水分含量为10–30%湿基(wb)的情况下,研究了10至3000 MHz之间的山核桃仁的介电性能(DPs)水平。山核桃仁的介电常数(ε')和损耗因子(ε'')随射频(RF)频段中频率的增加而显着降低,但在测量的微波(MW)频段中逐渐降低。水分含量和温度的升高极大地促进了样品ε'和ε''的增加,并且ε''随着盐浓度的增加而急剧增加。建立了二次多项式模型,以模拟DPs在四个频率(27、40、915和2450 MHz)下的温度和水分含量的函数,R 2

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