首页> 外文期刊>Journal of Applied Polymer Science >Modeling of industrial nylon-6,6 polycondensation process in a twin-screw extruder reactor. I. Phenomenological model and parameter adjusting
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Modeling of industrial nylon-6,6 polycondensation process in a twin-screw extruder reactor. I. Phenomenological model and parameter adjusting

机译:双螺杆挤出机反应器中工业尼龙-6,6缩聚过程的建模。一,现象学模型与参数调整

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This article describes a mathematical model for the finishing stage of nylon-6,6 polycondensation in a twin-screw extruder reactor. In the model, the extruder is conceptually divided into two regions. The first one is the partially filled degassing zone, which is operated under low pressure and where the evaporation of water from the polymer takes place. The rate of evaporation is considered to depend on an overall mass transfer coefficient and is limited by the water-polymer physical equilibrium. In the second region, which is fully filled, the polymer flow is assumed to be plug-flow and, in this region, the reversible polycondensation reaction occurs, as well as degradation reactions. A comparison with experimental data obtained in an industrial plant shows fairly good agreement with model predictions after optimal fitting of the rate coefficients. (C) 1998 John Wiley & Sons, Inc. [References: 28]
机译:本文描述了双螺杆挤出机反应器中尼龙-6,6缩聚反应完成阶段的数学模型。在模型中,挤出机在概念上分为两个区域。第一个是部分填充的脱气区,该脱气区在低压下运行,在该处发生水从聚合物中蒸发。蒸发速率被认为取决于总的传质系数,并且受水-聚合物物理平衡的限制。在完全充满的第二区域中,假定聚合物流为活塞流,并且在该区域中,发生可逆的缩聚反应以及降解反应。与工业工厂中获得的实验数据进行的比较表明,在最优拟合速率系数后,与模型预测相当吻合。 (C)1998 John Wiley&Sons,Inc. [参考:28]

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