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Drying and heat transfer behavior of banana undergoing combined low-pressure superheated steam and far-infrared radiation drying

机译:低压过热蒸汽与远红外辐射干燥相结合的香蕉的干燥和传热行为

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摘要

The present study aimed at investigating the use of a drying system combining the concept of already proven low-pressure superheated steam drying and far-infrared radiation (LPSSD–FIR) for banana. The effects of various operating parameters, i.e., drying medium temperature and pressure, on the drying kinetics and heat transfer behavior of banana as well as the energy consumption of the process were investigated and discussed. Comparison was also made with similar sets of data obtained from the system with combined far-infrared radiation and vacuum drying (VACUUM–FIR) and the system using only low-pressure superheated steam drying (LPSSD). The results showed that LPSSD–FIR and VACUUM–FIR took shorter drying time compared to LPSSD at all drying conditions. In terms of the specific energy consumption, it was observed that the specific energy consumption of the vacuum pump was much higher than that of the far-infrared radiator or electric heater. It was also found that the specific energy consumption of LPSSD–FIR and VACUUM–FIR were lower than that of LPSSD at all drying conditions. Based on the drying rates and the specific energy consumption of all tested processes, LPSSD–FIR at 90 °C and 7 kPa was suggested.
机译:本研究旨在研究结合香蕉已被证明的低压过热蒸汽干燥和远红外辐射(LPSSD–FIR)概念的干燥系统的使用。研究并讨论了各种操作参数(即干燥介质的温度和压力)对香蕉的干燥动力学和传热行为以及过程能耗的影响。还比较了从结合了远红外辐射和真空干燥(VACUUM-FIR)的系统以及仅使用低压过热蒸汽干燥(LPSSD)的系统获得的类似数据集。结果表明,在所有干燥条件下,LPSSD–FIR和VACUUM–FIR的干燥时间均比LPSSD短。在比能量消耗方面,观察到真空泵的比能量消耗远高于远红外辐射器或电加热器的比能量消耗。还发现,在所有干燥条件下,LPSSD–FIR和VACUUM–FIR的单位能耗均低于LPSSD。根据所有测试过程的干燥速率和比能耗,建议在90°C和7 kPa下使用LPSSD–FIR。

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