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Moisture Desorption Studies on Polymer Hydrated and Vacuum Extruded Bentonite Clay Mat

机译:聚合物水合膨化膨润土粘土垫的水分解吸研究

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摘要

Moisture desorption observations from two bentonite clay mats subjected to ten environmental zones with individually different combinations of laboratory-controlled constant temperatures (between 20℃ and 40℃) and relative humidity (between 15% and 70%) are presented. These laboratory observations are compared with predictions from mathematical models, such as thin-layer drying equations and kinetic drying models proposed by Page, Wang and Singh, and Henderson and Pabis. The quality of fit of these models is assessed using standard error (SE) of estimate, relative percent of error, and coefficient of correlation. The Page model was found to better predict the drying kinetics of the bentonite clay mats for the simulated tropical climates. Critical study on the drying constant and moisture diffusion coefficient helps to assess the efficacy of a polymer to retain moisture and control desorption through water molecule bonding. This is further substantiated with the Guggenheim-Anderson-De Boer (GAB) desorption isotherm model which is presented.
机译:给出了两个膨润土粘土垫在十个环境区中的水分解吸观察结果,分别控制了实验室控制的恒定温度(20℃至40℃)和相对湿度(15%至70%)的组合。这些实验室的观察结果与数学模型的预测结果进行了比较,例如Page,Wang和Singh以及Henderson和Pabis提出的薄层干燥方程和动力学干燥模型。这些模型的拟合质量使用估计的标准误差(SE),相对误差百分比和相关系数进行评估。发现Page模型能更好地预测模拟热带气候下膨润土粘土垫的干燥动力学。对干燥常数和水分扩散系数的关键研究有助于评估聚合物保留水分并通过水分子键合控制解吸的功效。提出的古根海姆-安德森-德布尔(GAB)解吸等温线模型进一步证实了这一点。

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