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Drying kinetics model and physical properties of herb Pandanus leaf

机译:露兜树叶片干燥动力学模型及物理性质

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The objectives of this research were to study drying kinetic of Pandanus leaf for herbal tea by hot air (HA) convection, infrared (IR) radiation and combined HA and IR heat sources (HA+IR). The thin-layer drying kinetics equation of Pandanus leaf was mathematical simulated for all three drying strategies. Determination of physical quality and specific energy consumption (SEC) were carried on. The experiments were carried out under the conditions of infrared radiation power of 1,000 W and drying temperature ranges between 45 and 65°C. The hot air flow rate was fixed at 1.0–1.2 m/s. Initial moisture content of Pandanus leaf was range of 400 to 600% dry-basis and the final moisture content was between 8 and 12% dry-basis. The experimental results showed that the drying rate using combined HA+IR was faster than drying using HA and IR, respectively. The simulated data using empirical Logarithmic model for all heating methods had a good relation to the experimental data. According to the liquid diffusion following Fick''s law, the effective diffusion coefficient was depended on drying temperature and drying method. Evaluation of SEC showed that SEC of IR drying was lower than drying with HA and combined HA+IR, respectively. The SEC with all three heat sources was in ranges of 8.33–17.70 MJ/kg.H2O evaporated. The SEC is decreased with increase of drying temperature. For product quality analysis, percentage of rehydration and the colorness value (CIE lab) of dried using HA, IR and combined HA+IR are significantly different (p≤0.05).
机译:这项研究的目的是通过热空气(HA)对流,红外(IR)辐射以及HA和IR热源(HA + IR)的组合来研究露兜树叶凉茶的干燥动力学。对这三种干燥策略,露兜树叶片的薄层干燥动力学方程进行了数学模拟。进行了物理质量和比能耗(SEC)的确定。实验在1,000 W的红外辐射功率和45至65°C的干燥温度范围内进行。热风流速固定为1.0-1.2 m / s。露兜树叶片的初始水分含量为400至600%干基,最终水分含量为8%至12%干基。实验结果表明,使用HA + IR组合的干燥速度分别快于使用HA和IR的干燥速度。使用经验对数模型对所有加热方法进行的模拟数据与实验数据有很好的关系。根据遵循菲克定律的液体扩散,有效扩散系数取决于干燥温度和干燥方法。 SEC的评估表明,IR干燥的SEC分别低于HA和结合HA + IR的干燥。三种热源的SEC均在8.33-17.70 MJ / kg.H 2 O蒸发的范围内。随着干燥温度的升高,SEC降低。对于产品质量分析,使用HA,IR和组合的HA + IR干燥后的复水百分比和色度值(CIE实验室)存在显着差异(p≤0.05)。

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