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首页> 外文期刊>Modelling and simulation in engineering >Mathematical Modeling of Moisture Sorption Isotherms and Determination of Isosteric Heats of Sorption ofZiziphusLeaves
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Mathematical Modeling of Moisture Sorption Isotherms and Determination of Isosteric Heats of Sorption ofZiziphusLeaves

机译:枣叶水分吸附等温线的数学建模和等渗吸附热的确定

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摘要

Desorption and adsorption equilibrium moisture isotherms ofZiziphus spina-christileaves were determined using the gravimetric-static method at 30, 40, and 50°C for water activity(aw)ranging from 0.057 to 0.898. At a givenaw, the results show that the moisture content decreases with increasing temperature. A hysteresis effect was observed. The experimental data of sorption were fitted by eight models (GAB, BET, Henderson-Thompson, modified-Chung Pfost, Halsey, Oswin, Peleg, and Adam and Shove). After evaluating the models according to several criteria, the Peleg and Oswin models were found to be the most suitable for describing the sorption curves. The net isosteric heats of desorption and adsorption ofZiziphus spina-christileaves were calculated by applying the Clausius-Clapeyron equation to the sorption isotherms and an expression for predicting these thermodynamic properties was given.
机译:用重量-静力法在30、40和50°C下测定刺枣(Ziziphus spina-christileaves)的解吸和吸附平衡水分等温线,水分活度(aw)为0.057至0.898。在给定的温度下,结果表明水分含量随温度升高而降低。观察到磁滞效应。吸附实验数据由八个模型拟合(GAB,BET,Henderson-Thompson,改良的Chun Pfost,Halsey,Oswin,Peleg和Adam和Shove)。根据几个标准评估模型后,发现Peleg和Oswin模型最适合描述吸附曲线。通过将Clausius-Clapeyron方程应用于吸附等温线,计算了Ziziphus spina-christileaves解吸和吸附的净等规热,并给出了预测这些热力学性质的表达式。

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