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首页> 外文期刊>Food and bioprocess technology >Dielectric Properties of Pistachio Kernels as Influenced by Frequency, Temperature, Moisture and Salt Content
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Dielectric Properties of Pistachio Kernels as Influenced by Frequency, Temperature, Moisture and Salt Content

机译:开心果仁的介电特性受频率,温度,水分和盐含量的影响

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摘要

Conventional hot air drying for pistachio nuts results in high energy consumption and low product quality. To develop advanced drying methods based on microwave (MW) and radio frequency (RF) energy, dielectric properties of pistachio kernel samples at different frequencies (10-4500 MHz), temperatures (25-85 A degrees C), moisture contents (3-27 % w.b.), and three salty levels (moisture content 15 % w.b.) were measured by an open-ended coaxial-line probe and network analyzer. The results showed that the permittivities of non-salted pistachio kernel samples were dependent on moisture content, temperature of samples, and frequency of the applied electric field. Both dielectric constant and loss factor increased with increasing temperature and moisture content. The rate of increase was greater at higher temperature and moisture levels than at lower levels, especially in low frequencies. Dielectric loss factor increased with increasing salty levels of pistachio kernel samples, but dielectric constants were not significantly affected. Quadratic polynomial equations were developed to relate dielectric properties of the non-salted samples to temperature and moisture at four specific frequencies with R-2 > 0.978. Penetration depth decreased with increasing frequency, moisture content, temperature, and salty levels. It is likely that low frequencies, such as RF, may provide potential large-scale industrial drying applications for pistachio nuts with acceptable uniformity and throughputs.
机译:开心果的常规热风干燥导致高能耗和低产品质量。要开发基于微波(MW)和射频(RF)能量,开心果仁样品在不同频率(10-4500 MHz),温度(25-85 A摄氏度),水分含量(3-使用开放式同轴探针和网络分析仪测量了27%wb的盐含量和三个含盐量(水分含量为15%wb)。结果表明,无盐开心果仁样品的介电常数取决于水分含量,样品温度和施加电场的频率。介电常数和损耗因子均随温度和水分含量的增加而增加。在较高温度和湿度的情况下,增加的速度大于较低水平的增加速度,特别是在低频情况下。开心果仁样品的咸度增加,介电损耗因子增加,但介电常数并未受到明显影响。建立了二次多项式方程,以将非盐化样品的介电特性与R-2> 0.978的四个特定频率下的温度和湿度联系起来。渗透深度随频率,水分含量,温度和含盐量的增加而降低。低频(例如RF)可能为开心果提供具有可接受的均匀性和吞吐量的潜在大规模工业干燥应用。

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