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Modeling dehydration and rehydration of cooked soybeans subjected to combined microwave-hot-air drying

机译:微波热风干燥组合煮熟大豆的脱水和再水合作用

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摘要

Pre-cooked soybeans were subjected to convective hot-air, microwave and combined microwave-hot-air dehydration. Three microwave levels (210, 300, 560 W) and three air temperatures (160, 180, 200 pC) were examined. Drying kinetics, rehydration kinetics and colour change were investigated relative to microwave level and air temperature. Combined microwave-hot-air drying decreased the drying time required when compared to drying with either hot-air or microwave energy alone. Predictive models were developed to describe dehydration and rehydration kinetics. Dehydration rate, rehydration rate and total colour change of rehydrated product generally increased with microwave level and air temperature. Within the studied range, optimal drying occurred for the lowest levels of both microwave and air temperature studied, i.e. microwave power=210 W, air temperature=160 pC. Industrial relevance: Application of microwave energy simultaneously with convective hot-air drying to pre-cooked soybeans was up to four times faster when compared to convective drying alone, and up to twice as fast when compared to microwave drying alone. Rehydration time for soybeans subjected to combined microwave-hot-air drying was 50-60% less than for legumes subjected to either convective or microwave drying alone. Therefore, application of combined microwave-hot-air drying to pre-cooked soybeans resulted in significant saving in process time, while also producing a dehydrated product with fast rehydration properties.
机译:预先煮熟的大豆进行对流热空气,微波和组合的微波 - 热空气脱水。检查三个微波水平(210,300,560 W)和三个空气温度(160,180,200 pc)。相对于微波水平和空气温度研究干燥动力学,再水化动力学和颜色变化。与单独使用热空气或微波能量的干燥相比,混合微波炉热风干燥减少了所需的干燥时间。开发了预测模型以描述脱水和再水化动力学。再水化产品的脱水速率,再水化速率和总色彩变化通常随微波水平和空气温度而增加。在研究范围内,最佳干燥发生,用于测量的微波和空气温度的最低水平,即微波功率= 210W,气温= 160pc。工业相关性:与单独的对流干燥相比,将微波能量与对流热风干燥同时使用与预煮的大豆相比,速度快4倍,并且与单独的微波干燥相比,速度高达两倍。对于单独对流或微波干燥的豆类进行微波热风干燥的大豆的再水化时间为50-60%。因此,将微波热风干燥的组合到预煮沸的大豆中的应用导致工艺时间显着节省,同时还生产具有快速再水化性能的脱水产物。

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