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Analysis and modeling of moisture sorption behavior for antimicrobial composite protein films

机译:抗菌复合蛋白膜吸湿行为的分析与建模

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The WPI-NaCas-GLY antimicrobial film takes full advantage of the controlled release of active or antimicrobial agents as well as demonstrates a great potential for functioning as an alternative biodegradable polymer in practical applications. The moisture sorption kinetics of the film as an important carrier of active agents was investigated at various relative humidities (RH). The results indicated that the moisture sorption characterization and procedure of this film can be described well by the empirical Peleg model with higher confidence and concordance. The model could predict the film's moisture content at any time (Mt), the time to reach any given level of R (tR), the equilibrium moisture at any RH condition (Me), and isotherm trend based upon experimental data and modeled constants k1, k2, a, b, c, and d without giving consideration to their physical meaning. The water vapor transmission rate of the WPI-NaCas-GLY antimicrobial film increased exponentially with increasing RH due to its hydrophilicity, which was primarily caused by the presence of glycerol in a higher content. The results also suggested that aw predominately affects the film's Me values compared with the temperature factor by fixed nonlinear multiple regression analyses..
机译:WPI-NaCas-GLY抗菌膜充分利用了活性剂或抗菌剂的控释优势,并在实际应用中显示出作为替代性可生物降解聚合物的巨大潜力。在各种相对湿度(RH)下研究了作为活性剂重要载体的薄膜的水分吸附动力学。结果表明,通过经验性的Peleg模型可以很好地描述薄膜的吸湿特性和过程,并具有较高的置信度和一致性。该模型可以根据实验数据和模型常数k1来预测薄膜在任何时间(Mt),达到任何给定R水平的时间(tR),在任何RH条件下的平衡水分(Me)以及等温线趋势。 ,k2,a,b,c和d而不考虑其物理含义。由于其亲水性,WPI-NaCas-GLY抗菌膜的水蒸气透过率随RH的增加呈指数增长,这主要是由于甘油含量较高所致。结果还表明,通过固定的非线性多元回归分析,与温度因素相比,aw主要影响薄膜的Me值。

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