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New emulsion polymerization tubular reactor with internal angular baffles: Reaction temperature effect

机译:新型带内角隔板的乳液聚合管式反应器:反应温度效应

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摘要

Deterministic models of physicochemical, mathematical, and Computational sciences were used for modeling and simulation of emulsion homopolymerization process of styrene with baffles into tubular reactor (TR) as static mixer. Modeling and Simulation were approximate to steady state, cylindrical one-dimensional model, fully developed laminar plug flow, and they were solved with finite volume method and programmed with Fortran language. Also, the Smith-Ewart model was considered to estimate the monomer conversion and Arrhenius chemical kinetics was considered as laminar finite-rate model to compute chemical source. The experimental-inductive and mathematical-deductive methods were applied for obtaining mass balance results and properties characterization. The objective is to model, to simulate, and to analyze the emulsion polymerization reactor performance with internal-inclined angular baffles, and to compare with continuous TR in variable reaction temperature. The predictions were validated with experimental results for the isothermic and TR, with a good concordance. The results in no isothermal conditions without and with baffles were better than in isothermal conditions Without and with baffles in relation to the desired properties. (c) 2006 Wiley Periodicals, Inc.
机译:使用物理化学,数学和计算科学的确定性模型对苯乙烯与挡板的乳液均聚过程作为静态混合器的管式​​反应器(TR)进行建模和仿真。建模和仿真近似于稳态,圆柱一维模型,充分发展的层流塞流,并通过有限体积法进行求解,并使用Fortran语言进行编程。此外,考虑使用Smith-Ewart模型来估计单体转化率,并将Arrhenius化学动力学视为层流有限速率模型来计算化学源。应用实验归纳法和数学推论法获得质量平衡结果和性质表征。目的是建模,模拟和分析带有内倾斜角挡板的乳液聚合反应器性能,并与在可变反应温度下的连续TR进行比较。等温线和TR的实验结果验证了这些预测,并具有良好的一致性。就所期望的性能而言,在没有和有挡板的情况下,等温条件下的结果要比没有和有挡板的等温条件下的结果更好。 (c)2006年Wiley Periodicals,Inc.

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