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Modeling the Evolution of Crosslinked and Extractable Material in an Oil-Based Paint Model System

机译:用油基涂料模型系统建模交联及可萃取材料的演变

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The construction of mechanistic models for the autoxidation of fatty acid or ester substrates found in oil paint binders is a challenging undertaking due to the complexity of the large crosslinked species that form, and the small molecules that volatilize. Building models that capture this product diversity are made possible by automating the process of network generation. This work presents a microkinetic model for the autoxidation of ethyl linoleate catalyzed by cobalt(II) 2-ethyl hexanoate. The mechanism size was controlled by using a rate-based criterion to include the most kinetically relevant reactions from among the millions of possible reactions generated. The resulting model was solved and compared to experimental metrics. Quantities such as hexanal production and the consumption of unsaturated moieties were in good agreement with experiment. Finally, the model was used to explore the effect of the catalyst concentration and temperature on key measurables.
机译:油漆粘合剂中发现的脂肪酸或酯基材的自动氧化机械模型的构建是由于形成的大交联物种的复杂性和挥发的小分子的复杂性是一个挑战性的。 通过自动化网络生成过程实现捕获此产品多样性的建筑模型。 该工作介绍了钴(II)2-己酸钴催化催化的乙基Lienolede的自氧化微型模型。 通过使用基于速率的标准来控制机制尺寸,以包括来自产生的数百万可能的反应中的最重要的反应。 得到的模型得到解决并与实验指标进行比较。 己醛生产和不饱和部分的消耗等量与实验吻合良好。 最后,该模型用于探讨催化剂浓度和温度对关键可测量的影响。

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