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欧姆预干燥番茄酱。

Ohmic pre-drying of tomato paste.

机构信息

1Department of Agricultural Machinery Mechanics, Faculty of Agriculture, Ilam University, Ilam, Iran.

出版信息

Food Sci Technol Int. 2014 Apr;20(3):193-204. doi: 10.1177/1082013213480360. Epub 2013 Jun 6.

Abstract

In this study, the effects of ohmic pre-drying technique on moisture ratio, drying rate, drying time, specific energy consumption, drying efficiency, and effective moisture diffusivity of tomato paste were investigated. Pre-drying experiments were carried out in an ohmic laboratory dryer at voltage gradient levels of 6, 8, 10, 12, 14, and 16 V/cm and oven at 105  and 1.0 m/s air velocity (control sample). Pre-drying was accomplished till the moisture content of the tomato paste reduced from initial moisture content of 90% (w.b.) to a safer level of 70% (w.b.). The ohmic pre-drying reduced the drying time of tomato paste by 80-97%, compared with the hot air drying. Pre-drying took place mainly in warming up, constant rate, and falling rate periods. Six available moisture-ratio models were fitted to the pre-drying data. The results showed that the Midilli et al. model is the most appropriate model for pre-drying behavior of tomato paste. The effective moisture diffusivity varied from 5.39 × 10(-8) to 3.91 × 10(-7)m(2)/s with an activation energy of 2.082 (V/g.cm). Both specific energy consumption and drying efficiency were considerably enhanced by increasing voltage gradient. It was found that the specific energy consumption and drying efficiency varied from 3.72 to 2.29 MJ/kg water and 67.8 to 83.8%, respectively.

摘要

在这项研究中,研究了欧姆预干燥技术对番茄酱的水分比、干燥速率、干燥时间、比能耗、干燥效率和有效水分扩散系数的影响。在欧姆实验室干燥器中进行了预干燥实验,电压梯度水平分别为 6、8、10、12、14 和 16 V/cm,烘箱温度为 105℃,空气流速为 1.0 m/s(对照样品)。预干燥是在将番茄酱的初始水分含量从 90%(湿基)降低到更安全的 70%(湿基)的过程中完成的。与热风干燥相比,欧姆预干燥将番茄酱的干燥时间缩短了 80-97%。预干燥主要发生在升温、恒速和降速阶段。对预干燥数据拟合了六种可用的水分比模型。结果表明,Midilli 等人的模型最适合番茄酱的预干燥行为。有效水分扩散系数在 5.39×10(-8)至 3.91×10(-7)m(2)/s 之间变化,活化能为 2.082(V/g.cm)。通过增加电压梯度,可以显著提高比能耗和干燥效率。发现比能耗和干燥效率分别在 3.72 至 2.29 MJ/kg 水和 67.8 至 83.8%之间变化。

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