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MODELLING AND NUMERICAL SIMULATION OF WATER VAPOUR SORPTION KINETICS IN HUMIDITY REGULATING POLYPROPYLENE FILMS CONTAINING SODIUM CHLORIDE

机译:加湿调节含氯化钠聚丙烯薄膜中水蒸气吸收动力学的建模和数值模拟

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摘要

This study proposes a mathematical time-dependent model to examine the humidity sorption kinetics and the storage capacity of a porous packaging polymer material (PP) containing NaCl as hygroscopic substance. Water vapour pressure gradient was chosen as the principal driving force for the transport of water vapour in the film. Solving the diffusion equation numerically by the finite element method resulted in the evolution of water vapour contents inside humidity regulating film specimens calculated. The influence of the diffusion and the sorption coefficients of the polymer, and of the thickness and the NaCl content of the film on kinetics and capacity of the humidity regulating films could be determined. By comparison of the calculated amount of absorbed water vapour with experimental data, a good agreement between the predicted tendencies of the numerical and experimental results was found. The model was validated in a region of the salt's sorption isotherm above the deliquescence point of NaCl and significantly below the humidity at which the holes in PP are completely filled with water. The results permit to develop optimized humidity regulating films for individual food requirements. Application of this model could facilitate the development of these active films using different polymers and hygroscopic substances.
机译:这项研究提出了一个与时间有关的数学模型,以检验含有NaCl作为吸湿性物质的多孔包装聚合物材料(PP)的湿度吸附动力学和储存能力。选择水蒸气压力梯度作为膜中水蒸气传输的主要驱动力。用有限元方法对扩散方程进行数值求解,导致计算出的湿度调节膜样品内部的水蒸气含量发生了变化。可以确定聚合物的扩散和吸附系数,以及膜的厚度和NaCl含量对调湿膜的动力学和容量的影响。通过将计算得出的吸收水蒸气量与实验数据进行比较,发现了数值趋势和实验结果的预测趋势之间的良好一致性。在盐的吸附等温线高于NaCl的潮解点且明显低于PP的孔完全充满水的湿度下的区域中验证了该模型。结果允许开发针对个别食品需求的优化的湿度调节膜。该模型的应用可以促进使用不同的聚合物和吸湿性物质开发这些活性薄膜。

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