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Polyethylene with Reverse Co-monomer Incorporation: From an Industrial Serendipitous Discovery to Fundamental Understanding

机译:聚乙烯与反向共聚单体的结合:从工业偶然发现到基本理解

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摘要

A triethylaluminium(TEAl)-modified Phillips ethylene polymerisation Cr/Ti/SiO2 catalyst has been developed with two distinct active regions positioned respectively in the inner core and outer shell of the catalyst particle. DRIFTS, EPR, UV-Vis-NIR DRS, STXM, SEM-EDX and GPC-IR studies revealed that the catalyst produces simultaneously two different polymers, i.e., low molecular weight linear-chain polyethylene in the Ti-abundant catalyst particle shell and high molecular weight short-chain branched polyethylene in the Ti-scarce catalyst particle core. Co-monomers for the short-chain branched polymer were generated in situ within the TEAl-impregnated confined space of the Ti-scarce catalyst particle core in close proximity to the active sites that produced the high molecular weight polymer. These results demonstrate that the catalyst particle architecture directly affects polymer composition, offering the perspective of making high-performance polyethylene from a single reactor system using this modified Phillips catalyst.
机译:已经开发了三乙基铝(TEAl)改性的Phillips乙烯聚合Cr / Ti / SiO2催化剂,其两个不同的活性区域分别位于催化剂颗粒的内芯和外壳中。 DRIFTS,EPR,UV-Vis-NIR DRS,STXM,SEM-EDX和GPC-IR研究表明,该催化剂可同时生成两种不同的聚合物,即Ti含量丰富的催化剂颗粒壳中的低分子量线性链状聚乙烯和高分子量的Ti稀有催化剂颗粒核中的低分子量支链聚乙烯。短链支化聚合物的共聚单体是在Ti稀有催化剂颗粒核的TEAl浸渍的密闭空间中,紧邻产生高分子量聚合物的活性位点原位生成的。这些结果表明,催化剂颗粒的结构直接影响聚合物的组成,为使用这种改性的菲利普斯催化剂从单一反应器系统制备高性能聚乙烯提供了前景。

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