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首页> 外文期刊>Journal of Food Science and Technology >Performance of a convective, infrared and combined infrared- convective heated conveyor-belt dryer
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Performance of a convective, infrared and combined infrared- convective heated conveyor-belt dryer

机译:对流,红外和红外对流加热输送带式干燥机的性能

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摘要

A conveyor-belt dryer was developed using a combined infrared and hot air heating system that can be used in the drying of fruits and vegetables. The drying system having two chambers was fitted with infrared radiation heaters and through-flow hot air was provided from a convective heating system. The system was designed to operate under either infrared radiation and cold air (IR-CA) settings of 2000 W/m(2) with forced ambient air at 30 A degrees C and air flow of 0.6 m/s or combined infrared and hot air convection (IR-HA) dryer setting with infrared intensity set at 2000 W/m(2) and hot at 60 A degrees C being blown through the dryer at a velocity of 0.6 m/s or hot air convection (HA) at an air temperature of 60 A degrees C and air flow velocity 0.6 m/s but without infrared heating. Apple slices dried under the different dryer settings were evaluated for quality and energy requirements. It was found that drying of apple (Golden Delicious) slices took place in the falling rate drying period and no constant rate period of drying was observed under any of the test conditions. The IR-HA setting was 57.5 and 39.1 % faster than IR-CA and HA setting, respectively. Specific energy consumption was lower and thermal efficiency was higher for the IR-HA setting when compared to both IR-CA and HA settings. The rehydration ratio, shrinkage and colour properties of apples dried under IR-HA conditions were better than for either IR-CA or HA.
机译:传送带式干燥机是使用红外和热风加热系统共同开发的,可用于水果和蔬菜的干燥。具有两个腔室的干燥系统装有红外辐射加热器,并由对流加热系统提供通流热空气。该系统设计为在2000 W / m(2)的红外辐射和冷空气(IR-CA)设置下运行,并在30 A摄氏度的强制环境空气和0.6 m / s的气流下或将红外和热空气混合对流(IR-HA)干燥机设置,红外强度设置为2000 W / m(2),热为60 A摄氏度,以0.6 m / s的速度吹过干燥机,或在空气中以热空气对流(HA)温度为60 A摄氏度,空气流速为0.6 m / s,但没有红外加热。评价了在不同干燥机设置下干燥的苹果片的质量和能量需求。发现在降速干燥期间苹果片的干燥发生,并且在任何试验条件下均未观察到恒定的干燥速度。 IR-HA设置分别比IR-CA和HA设置快57.5和39.1%。与IR-CA和HA设置相比,IR-HA设置的单位能耗更低,热效率更高。在IR-HA条件下干燥的苹果的补水率,收缩率和色泽特性均优于IR-CA或HA。

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