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Modeling the effects of micromixing and start‐up procedures on bulk copolymerization and copolymer in a tubular reactor

机译:模拟微混合和启动程序对管式反应器中本体共聚和共聚物的影响

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AbstractThe combined effects of micromixing and start‐up procedures on free radical, bulk copolymerization of styrene and acrylonitrile in an isothermal, premixed‐feed tubular reactor have been theoretically analyzed. An axial dispersion model, which takes into account the entire range of backmixing, froms the basis of this analysis. Model predictions show that the overall conversion decreases with the increase of initial styrene content in the reactor, and is not affected by the degree of micromixing. However, for the nonazeotropic feed, the copolymer composition distribution becomes wider with the increase of initial acrylonitrile content in the reactor. For the azeotropic feed, broadening occurs with the decrease of initial acrylonitrile content in the reactor. Average copolymer composition is not affected either by micromixing or start‐up proc
机译:摘要从理论上分析了微混合和启动程序对等温预混合进料管式反应器中苯乙烯和丙烯腈的自由基、本体共聚反应的综合影响。轴向色散模型,该模型考虑了整个回混范围,这是该分析的基础。模型预测表明,整体转化率随着反应器内初始苯乙烯含量的增加而降低,不受微混合程度的影响。然而,对于非共沸性进料,共聚物组成分布随着反应器中初始丙烯腈含量的增加而变宽。对于共沸进料,随着反应器中初始丙烯腈含量的降低而发生展宽。平均共聚物组成不受微混合或启动过程的影响

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