MgC12 as a support for the polymerization catalyst of propylene was prepared by dissolving it in ethanol and by recrystallizing it in n-decane media with vacuum drying. This support was modified by adding ethylbenzoate as an electron-donor, by treating it with triethylaluminium (TEA), and/or by impr
The effect of alcohol treatment in the preparation of MgCl2 support by a recrystallization method on the catalytic activity and isotactic index for propylene polymerization
β Scribed by Jeong Hwan Choi; Jin Suk Chung; Ho Woo Shin; In Kyu Song; Wha Young Lee
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 553 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0014-3057
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β¦ Synopsis
An MgCI, catalyst support for propylene polymerization was prepared by dissolving MgCI, in ethanol and/or I-propanol and recrystallizing it in an n-decane medium with vacuum drying. This support was modified by adding di-n-butyl phthalate as an internal electron donor, and subsequently TiCl, was impregnated on the modified support. The prepared support and the catalyst were characterized by GC, HPLC, SEM, and N,-BET surface analyser. Propylene was polymerized with the catalyst and triethylaluminium in the presence or absence of ethyl benzoate, and the effect of alcohol treatment on the catalytic activity and isotactic index (1.1.) was examined. It was found that the propanol-treated catalyst showed a better performance than the ethanol-treated catalyst, owing to different amounts of remaining organic compounds.
When the amounts of remaining alcohols were the same, it was also revealed that propanol was effective in enhancing the 1.1. and ethanol was effective in enhancing the catalytic activity.
π SIMILAR VOLUMES
The effects of triethers as internal donors on the activity and stereoselectivity of MgCl 2 -supported Ziegler-Natta type catalysts in the propylene polymerization were studied. In particular, we prepared and fully characterized some procatalysts of the type d-MgCl 2 /ID/TiCl 4 , where ID are intern
## Abstract Summary: A new procedure was developed to support [(ArNο£ΎC(Me))~2~C~5~H~3~N]FeCl~2~ (Arο£Ύ2,4,6βtrimethylphenyl) on spherical MgCl~2~ for ethylene polymerization. The resultant catalysts showed ten times higher activity of the corresponding catalyst in homogeneous catalysis. The morphologi