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Preliminary Investigation of Non-isothermal Drying Kinetics of Wheat as Affected by Initial Moisture Content and Heating RateUsing Model-Fitting Technique

机译:初始水分含量影响的小麦非等温干燥动力学的初步研究及加热速率模型拟合技术

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In this study, one of the Mid-South available grain, i.e., wheat was dried using a thermogravimetric analyzer. The goal was to study the effects of initial moisture contents and heating rate on the drying kinetics under non-isothermal conditions. Three heating rates (2, 4, and 10°C/min) were used to determine the drying curves and the weight loss derivatives of wheat from initial moisture contents of 20.7, 16.8 and 13.2% w.b. Wheat was heated from room temperature of 30 to 170°C to allow a comparison between the drying kinetic parameters. The experimental moisture ratio data were fitted to the four models namely Page, Newton, Logarithmic and Henderson to determine the best-fit model. The goodness of fit criteria was used to determine the best-fitmodel.Heating rate and initial moisture content affected the activation energy required for drying wheat. Increasing the heating rate and drying time expedited the drying curve. The maximum activation energy of32.876 kJ/mol was achieved at the heating rate of10°C/min and the initial moisture content of 13.2% w.b. Conversely, the lowest activation energy of 14.760 kJ/molwas achieved at the heating rate of2°C/min and the initial moisture content of 20.7% w.b. Logarithmic and Henderson were the two models that best fit the entire drying curves. This study revealed that the energy required to dry wheat from 20.7% w.b. to an acceptable safe level could be minimized by reducing the heating rate.
机译:在这项研究中,使用热量分析仪干燥中南部可用谷物之一,即小麦。目标是在非等温条件下研究初始含水量和加热速率对干燥动力学的影响。三种加热速率(2,4和10℃/ min)用于确定初始水分含量的干燥曲线和小麦的重量损失衍生物20.7,16.8和13.2%w.b.小麦从30至170℃的室温加热,以允许干燥动力学参数之间的比较。实验湿度比数据适用于四个模型即页面,牛顿,对数和亨德森来确定最适合的模型。使用拟合标准的良好来确定最佳的FitModel.heating率和初始水分含量影响干燥小麦所需的活化能量。增加加热速率和干燥时间加快了干燥曲线。以10℃/ min的加热速率和13.2%W.B的初始水分含量为32.876kJ / mol的最大活化能量。相反,以2℃/ min的加热速率和20.7%W.b的初始水分含量,最低激活能量为14.760kJ / molwas。对数和亨德森是最适合整个干燥曲线的两种型号。该研究表明,在20.7%W.B中干燥小麦所需的能量。通过降低加热速率,可以最小化可接受的安全水平。

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