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Modeling Equilibrium Behavior of Nylon 6, Nylon 6,6 and Nylon 6/6,6 Copolymer

机译:尼龙6,尼龙6,6和尼龙6 / 6,6共聚物的建模平衡行为

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摘要

Nylon 6 and nylon 6,6 reaction equilibria depend in a complex way on water concentration and temperature. For example, data sets from six research groups reveal that the apparent equilibrium constant for polycondensation increases with water at low water concentrations, reaches a maximum, and then decreases as the water concentration rises further. In this article, semi-empirical expressions are proposed to describe the experimentally observed equilibrium behavior for the five main reactions that occur during nylon 6 and nylon 6,6 polymerization. Nine side reactions involving amidine ends, cyclopentanone ends, and hydrated carboxyl ends are used to develop expressions that account for the influence of both water and temperature on these equilibrium constants. Excellent fit to the data, over the entire range of the available nylon 6 and nylon 6,6 literature data, suggests that the proposed equations will be helpful for modeling reaction equilibria for nylon 6/6,6 copolymerization.
机译:尼龙6和尼龙6,6反应平衡依赖于水浓度和温度的复杂方法。例如,来自六个研究组的数据集揭示了缩聚的表观平衡常数在低水浓度下水中增加,达到最大值,然后随着水浓度进一步升高而降低。在本文中,提出了半实验表达式来描述在尼龙6和尼龙6,6聚合期间发生的五个主要反应的实验观察到的平衡行为。涉及脒末端,环戊酮末端和水合羧基末端的九个副反应用于开发表达,其考虑水和温度对这些平衡常数的影响。优异地适合数据,在可用的尼龙6和尼龙6,6文献数据的整个范围内,表明所提出的方程将有助于对尼龙6 / 6,6共聚的反应均衡建模。

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