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首页> 外文期刊>Emirates Journal of Food and Agriculture >Shrinkage modeling, drying kinetics and quality assessment of carrot cubes dried in a two stage spouted bed drying process
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Shrinkage modeling, drying kinetics and quality assessment of carrot cubes dried in a two stage spouted bed drying process

机译:两级喷射床干燥过程中胡萝卜立方体干燥动力学和质量评估

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A relatively easy to apply mathematical model based on the second Fick’s law inserting a correction factor α  to describe drying kinetics of unblanched carrot cubes in a two stage drying process considering shrinkage, using a semipilot spout bed dryer for the first stage and a lab scale spout fluidized bed dryer for the second stage was successfully developed. Drying of the carrot cubes was done at three drying temperatures 60, 70 and 80°C. It was possible to keep air velocity constant in each drying stage 1.65 m/s at the first stage and 0.68m/s and 1.35m/s in the annulus and spout respectively in the second stage. Effective moisture coefficients obtained 0.821 to 1.02 x 10-9 m2/s for the first drying stage and 0.262 to 0.481 x10-9 m2/s for the second drying stage were according to the published data for carrots in this kind of dryer considering shrinkage. The model fitted accurately the experimental drying with SEE of 0.122 to 0.210 when shrinkage was considered and α correction factor was inserted compared to SEE of 1.002 to 1.263 when shrinkage was neglected. Also residual analysis of models confirmed the adequacy of the model to predict drying kinetics.  Quality parameters obtained β-Carotene retention (80±5.4%), peroxidase residual activity (30-35%), pectin methyl esterase residual activity (83-95%) and rehydration ratio (4.5-5.3 water absorbed/kg dried solids) resulted similar to the ones reported in the literature and except for β-Carotene retention they all showed dependence with drying temperature.   
机译:一种相对容易应用的数学模型,基于第二Fick的定律,插入校正因子α,以描述在考虑收缩的两个阶段干燥过程中,在两级干燥过程中描述未分支胡萝卜立方体的干燥动力学,使用半管嘴床烘干机进行第一阶段和实验室刻度喷口第二阶段的流化床干燥器已成功开发。在三种干燥温度60,70和80℃下干燥胡萝卜立方体。在第二阶段分别在第一阶段和0.68m / s和0.68m / s和1.35m / s的每个干燥阶段和1.35m / s中保持空气速度恒定。对于第一种干燥阶段,获得的有效水分系数为0.821至1.02×10 -9m 2 / s,第二种干燥阶段为0.262至0.481×10 -9m2 / s,根据考虑收缩的干燥机中的胡萝卜的已发表数据。当考虑收缩率并且在忽略收缩时,将α校正因子插入α校正因子时,拟合型号为0.122至0.210的实验干燥。忽略了1.002至1.263。还对模型的残留分析证实了模型的充分性来预测干燥动力学。质量参数获得β-胡萝卜素保留(80±5.4%),过氧化物酶残留活性(30-35%),果胶甲酯残留活性(83-95%)和再水合比(4.5-5.3吸水/ kg干燥固体)产生类似于文献中报道的那些,除了β-胡萝卜素保留,它们都显示出与干燥温度的依赖性。

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