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Drying Rates of Thin Layer Rough Rice Drying Using Infrared Radiation

机译:红外辐射干燥薄层粗糙水稻干燥率

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Rice drying with infrared radiation has been investigated during recent years and showed promising potential with improved quality and energy efficiency. However, due to limited penetration capability of infrared radiation, thin layer drying may be used in infrared dryer design. The objective of this study was to study the moisture removal characteristics of thin layer rough rice heated by infrared radiation and cooled with various methods, including natural cooling, forced air cooling and vacuum cooling. The rewetted rough rice samples with four different moisture contents, 16.7, 20.5, 23.6 and 25.7 % (wb), were dried with four different radiation intensities, 3616, 4023, 4685, and 5348 W/m2, for four exposure times, 30, 60, 90, and 120 s. The achieved grain temperatures ranged from 35.1 deg C to 68.4 deg C under the tested heating conditions. The vacuum and forced air cooling methods had more moisture removal than the natural cooling. The total moisture removal reached to 3.2, 3.5, and 3.8 percentage points for the rice heated to the temperature of 63.5 deg C achieved with the infrared intensity of 5348 W/m2 and heating time of 120 s and followed by the natural cooling for 40 min, forced air cooling for 5 min and vacuum cooling for 10 min, respectively. It was concluded that infrared radiation thin layer drying of rough rice followed by cooling could be an effective approach to design infrared rice dryer for improving the drying rates and reducing energy consumption.
机译:近年来研究了红外辐射的水稻干燥,并显示出具有更高质量和能源效率的有希望的潜力。然而,由于红外辐射的渗透能力有限,薄层干燥可用于红外干燥器设计。本研究的目的是研究通过红外辐射加热的薄层粗糙水稻的水分去除特性,并用各种方法冷却,包括天然冷却,强制空气冷却和真空冷却。用四种不同的水分含量为16.7,20.5,23.6和25.7%(WB)的再浸润粗糙的水稻样品用四种不同的辐射强度,3616,4023,4685和5348W / m 2干燥,进行四次曝光时间,30, 60,90和120秒。在测试的加热条件下,达到的颗粒温度范围为35.1℃至68.4℃。真空和强制空气冷却方法比天然冷却更多的水分去除。达到3.2,3.5和3.8个百分点的总水分去加热到63.5℃的温度,用红外强度为5348 w / m 2和120秒的加热时间,然后是自然冷却40分钟,强制空气冷却5分钟,分别真空冷却10分钟。结论是,粗糙水稻的红外辐射薄层干燥,然后冷却可以是设计红外水稻干燥器以改善干燥率和降低能量消耗的有效方法。

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