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Determination of Isosteric Heat and Entropy of Sorption of Air Dried Sheet Rubber using Artificial Neural Network Approach

机译:人工神经网络方法测定空气干燥板胶体吸附熵的测定

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Equilibrium moisture contents (EMC) of air dried sheet(ADS) rubber were determined by commonly gravimetric-static method with saturated salt solution among surrounding temperatures of 40-70°C correlated to water activity (a_w) ranges between 0.10 and 0.9. The experimental results was analyzed by 5 commonly EMC model. The results showed that equilibrium moisture content of ADS rubber decreased with increase of surrounding temperature at constant water activity and the simulated data using Chung-Pfost model has a good relation to experimental data with R~2, RMSE and X~2 equal 0.9565, 0.0235 and 0.0006, respectively. However some physical property of ADS rubber sample affects to evaluate EMC modeling. Due to avoid this effect, thus the aim of this research work was to determine EMC value by using Artificial neural network (ANN) method and also evaluate the isosteric heat of sorption by following the Clausius - Clapeyron equation. The results showed that simulated results using ANN approach has relatively high accuracy compared to common EMC model. Finally determination of isosteric heat of sorption and entropy of sorption of ADS rubber were carried on. The results stated that the enthalpy and entropy of heat sorption was power function and polynomial function of moisture content respectively. These two parameters of ADS rubber can be used for prediction suitable storage condition and drying condition for ADS rubber drying in the near future work.
机译:通过常见的重量静态法测定空气干燥板(ADS)橡胶的平衡水分含量(ADS)橡胶的饱和盐溶液40-70℃的饱和盐溶液与水活性(A_W)之间的饱和盐溶液0.10和0.9之间。通过5常见的EMC模型分析了实验结果。结果表明,随着恒水分活动的周围温度的增加,ADS橡胶的平衡水分含量降低,使用Chung-PFOST模型的模拟数据与R〜2,RMSE和X〜2等于0.9565,0.0235的模拟数据具有良好的实验数据关系。和0.0006分别。然而,ADS橡胶样品的一些物理性质会影响评估EMC建模。由于避免这种效果,因此该研究工作的目的是通过使用人工神经网络(ANN)方法来确定EMC值,并且还通过沿CLAUSIUS-Clapeyron方程评估吸附的旁边热量。结果表明,与常见的EMC模型相比,使用ANN方法的模拟结果具有相对高的精度。最后测定吸附的粘接剂和吸附熵的熵。结果表明,热吸附的焓和熵分别是水分含量的功率函数和多项式函数。 ADS橡胶的这两个参数可用于在近期工作中的ADS橡胶干燥的预测合适的储存条件和干燥条件。

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