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首页> 外文期刊>Journal of Applied Polymer Science >Study of the morphology and kinetics of novel Ziegler-Natta catalysts for propylene polymerization
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Study of the morphology and kinetics of novel Ziegler-Natta catalysts for propylene polymerization

机译:新型齐格勒-纳塔催化剂用于丙烯聚合的形态和动力学研究

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The morphological and kinetic characteristics of novel Ziegler-Natta catalysts were studied. Catalysts were prepared by Borealis Polymers Oy using a new synthesis technique (emulsion technology). Video microscopy was used to study the growth of single catalyst particles during polymerization in the gas and liquid phases. The distribution of single particle activity was very narrow in the catalyst without external support and was rather broad in the the silica-supported catalyst. Video microscopy of molten polymer particles allowed observation of the process and degree of fragmentation of the catalyst particles. A correlation between the activation period during the initial stage of polymerization and catalyst fragmentation was found. Fragmentation was faster and more uniform with the catalyst without external support than with the silica-supported catalyst. Scanning electron microscopy provided information on morphology evolution and shape replication of the catalyst particles. With the catalyst without external support, good shape replication was observed, and compact and spherical particles were formed. With the silica-supported catalyst, shape replication was poor, and nonspherical porous polymer particle were formed. Modeling of the kinetics of propylene polymerization was done using a simple three-step reaction scheme neglecting mass and heat transport effects. (c) 2005 Wiley Periodicals, Inc.
机译:研究了新型齐格勒-纳塔催化剂的形态和动力学特性。北欧化工使用新的合成技术(乳液技术)制备了催化剂。视频显微镜用于研究气相和液相聚合过程中单个催化剂颗粒的生长。在没有外部载体的催化剂中,单颗粒活性的分布非常窄,而在二氧化硅负载的催化剂中,则很宽。熔融聚合物颗粒的视频显微镜可以观察到催化剂颗粒的分解过程和程度。发现聚合初期的活化期与催化剂断裂之间的相关性。在没有外部载体的情况下,与在二氧化硅上负载的催化剂相比,碎裂更快,更均匀。扫描电子显微镜提供了有关催化剂颗粒的形态演变和形状复制的信息。使用没有外部载体的催化剂,观察到良好的形状复制,并且形成致密的球形颗粒。用二氧化硅负载的催化剂,形状复制差,并且形成了非球形的多孔聚合物颗粒。丙烯聚合动力学的模型是使用简单的三步反应方案完成的,该方案忽略了质量和热传递效应。 (c)2005年Wiley Periodicals,Inc.

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