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采用响应面法优化间歇微波-对流干燥。

Optimization of intermittent microwave-convective drying using response surface methodology.

机构信息

Department of Agricultural Machinery Engineering, Faculty of Agricultural Engineering and Technology, University of Tehran Karaj, Iran.

出版信息

Food Sci Nutr. 2015 Jul;3(4):331-41. doi: 10.1002/fsn3.224. Epub 2015 May 11.

Abstract

In this study, response surface methodology was used for optimization of intermittent microwave-convective air drying (IMWC) parameters with employing desirability function. Optimization factors were air temperature (40-80°C), air velocity (1-2 m/sec), pulse ratio) PR ((2-6), and microwave power (200-600 W) while responses were rehydration ratio, bulk density, total phenol content (TPC), color change, and energy consumption. Minimum color change, bulk density, energy consumption, maximum rehydration ratio, and TPC were assumed as criteria for optimizing drying conditions of apple slices in IMWC. The optimum values of process variables were 1.78 m/sec air velocity, 40°C air temperature, PR 4.48, and 600 W microwave power that characterized by maximum desirability function (0.792) using Design expert 8.0. The air temperature and microwave power had significant effect on total responses, but the role of air velocity can be ignored. Generally, the results indicated that it was possible to obtain a higher desirability value if the microwave power and temperature, respectively, increase and decrease.

摘要

在这项研究中,采用响应面法和适宜性函数对间歇微波对流空气干燥(IMWC)的参数进行优化。优化因素为空气温度(40-80°C)、空气速度(1-2 米/秒)、脉冲比(PR)(2-6)和微波功率(200-600 W),响应为复水比、堆密度、总酚含量(TPC)、颜色变化和能耗。假设颜色变化最小、堆密度最大、能耗最小、复水比最大和 TPC 最大为优化 IMWC 苹果片干燥条件的标准。使用 Design expert 8.0,过程变量的最佳值为 1.78 米/秒空气速度、40°C 空气温度、PR 4.48 和 600 W 微波功率,其适宜性函数最大(0.792)。空气温度和微波功率对总响应有显著影响,但空气速度的作用可以忽略不计。一般来说,如果分别增加和降低微波功率和温度,则有可能获得更高的适宜性值。

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