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首页> 外文期刊>Polimery >Comparison of imidazolium and pyridinium ionic liquids as the media for triphasic ethylene polymerization in the presence of titanocene catalyst
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Comparison of imidazolium and pyridinium ionic liquids as the media for triphasic ethylene polymerization in the presence of titanocene catalyst

机译:钛茂催化剂存在下咪唑鎓和吡啶鎓离子液体作为三相乙烯聚合反应介质的比较

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摘要

Tetrachloroaluminate ionic liquids having 1-n-octyl-3-methylpyridinium [C8-β-mpy]~+ [AlCl4]~- or 1-n-octyl-4-methylpyridinium cation [C8-γ-mpy]~+[AlCl4]~-,respectively,were investigated in the biphasic ionic liquid/hexane mode ethylene polymerization as media of bis(cyclopentadienyl)ti-tanium(IV)dichloride (Cp2TiCl2) titanocene catalyst activated by AlEtCl2 alkylaluminum compound. The results were compared to those obtained with using 1-n-octyl-3-methylimidazolium tetrachloroaluminate ionic liquid ([C8-mim]~+[AlCl4]~-). It was found that the pyridinium ionic liquids enable to obtain better polyethylene (PE) yields in total than the imidazolium ionic liquids. The best results were obtained using [C8-γ-mpy]~+[AlCl4]~-,in which the alkyl substituents were in yara (γ) positions at the pyridinium cation. The considerable amount of PE formed in the ionic liquid phase,largely contaminated,was observed at higher activator/catalyst (Al/Ti) molar ratio. It results from the mass transfer limitation through the phases. This obstacle disappears at lower activator/catalyst molar ratio and polyethylene produced is easily transported into the hexane phase. The effects of Al/Ti ratio and polymeryzation time on the total PE yield were also studied. PE obtained in the biphasic ionic liquid/hexane mode reveals molecular characteristics similar to polyethylenes produced in the presence of both homogeneous (low molecular weight) or heterogeneous (broad molecular weight distribution) metallocene catalyst systems. Additionally,it shows some unique features,such as high crys-tallinity degree and bulk density.
机译:具有1-n-辛基-3-甲基吡啶鎓[C8-β-mpy]〜+ [AlCl4]〜-或1-n-辛基-4-甲基吡啶鎓阳离子[C8-γ-mpy]〜+ [AlCl4]的四氯铝酸盐离子液体分别在双相离子液体/己烷模式乙烯聚合反应中研究了以AlEtCl2烷基铝化合物活化的双(环戊二烯基)钛-四氯化钛(Cp2TiCl2)钛茂催化剂的介质。将结果与使用1-n-辛基-3-甲基咪唑鎓四氯铝酸盐离子液体([C8-mim]〜+ [AlCl4]〜-)所获得的结果进行比较。已经发现,吡啶鎓离子液体比咪唑鎓离子液体能够总地获得更好的聚乙烯(PE)收率。使用[C8-γ-mpy]〜+ [AlCl4]〜-可获得最佳结果,其中烷基取代基位于吡啶鎓阳离子的yara(γ)位置。在较高的活化剂/催化剂(Al / Ti)摩尔比下,在离子液相中形成了大量被严重污染的PE。这是由于各阶段的传质限制所致。在较低的活化剂/催化剂摩尔比下,该障碍消失,并且所产生的聚乙烯易于运输到己烷相中。还研究了Al / Ti比和聚合时间对PE总产量的影响。在两相离子液体/己烷模式下获得的PE的分子特性与在均相(低分子量)或非均相(宽分子量分布)茂金属催化剂体系存在下生产的聚乙烯相似。此外,它还具有一些独特的功能,例如高哭闹度和堆积密度。

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