Propylene polymerization with catalysts containing divalent titanium

被引:0
作者
Albizzati, E
Giannini, U
Balbontin, G
Camurati, I
Chadwick, JC
DallOcco, T
Dubitsky, Y
Calimberti, M
Morini, G
Maldotti, A
机构
[1] MONTELL POLYOLEFINS,CTR RIC G NATTA,I-44100 FERRARA,ITALY
[2] UNIV FERRARA,I-44100 FERRARA,ITALY
关键词
propylene polymerization; titanium oxidation state; hydrogen activation; catalyst decay;
D O I
暂无
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The behavior in propylene polymerization of divalent titanium compounds of type [eta(6)-areneTiAl(2)Cl(8)], both as such and supported on activated MgCl2, has been studied and compared to that of the simple catalyst MgCl2/TiCl4. Triethylaluminium was used as cocatalyst. The Ti-arene complexes were active both in the presence and in the absence of hydrogen, in contrast to earlier reports that divalent titanium species are active for ethylene but not for propylene polymerization. C-13-NMR analysis of low molecular weight polymer fractions indicated that the hydrogen activation effect observed for the MgCl2-supported catalysts should be ascribed to reactivation of 2,1-inserted (''dormant'') sites via chain transfer, rather than to (re)generation of active trivalent Ti via oxidative addition of hydrogen to divalent species. Decay in activity during polymerization was observed with both catalysts, indicating that for MgCl2/TiCl4 catalysts decay is not necessarily due to overreduction of Ti to the divalent state during polymerization. In ethylene polymerization both catalysts exhibited an acceleration rather than a decay profile. It is suggested that the observed decay in activity during propylene polymerization may be due to the formation of clustered species that are too hindered for propylene but that allow ethylene polymerization. (C) 1997 John Wiley & Sons, Inc.
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页码:2645 / 2652
页数:8
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