工业催化
工業催化
공업최화
INDUSTRIAL CATALYSIS
2014年
10期
747-750
,共4页
王登飞%王立明%孙宏伟%郭峰%杜威
王登飛%王立明%孫宏偉%郭峰%杜威
왕등비%왕립명%손굉위%곽봉%두위
催化剂工程%铬系催化剂%聚乙烯%聚合
催化劑工程%鉻繫催化劑%聚乙烯%聚閤
최화제공정%락계최화제%취을희%취합
catalyst engineering%chromium based catalyst%polyethylene%polymerization
铬系乙烯聚合催化剂是近年来烯烃聚合催化剂的研究热点。与其他类型催化剂相比,铬系催化剂生产的聚乙烯产品分子量分布宽、分子量高,且聚合物中含有少量的长支链。但由于铬系催化剂的高毒性、引发诱导期长和分子量控制难度大等缺点,通常利用钛和铝对其进行改性。对近年来国外新型高效铬系乙烯聚合催化的研究进展进行重点综述,讨论近年来乙烯聚合用高效铬系催化剂的品种和国内外研发现状。我国铬系催化剂的设计与合成起步较晚,进步较快,尽快在现有工业装置上实现催化剂的国产化具有重要意义。
鉻繫乙烯聚閤催化劑是近年來烯烴聚閤催化劑的研究熱點。與其他類型催化劑相比,鉻繫催化劑生產的聚乙烯產品分子量分佈寬、分子量高,且聚閤物中含有少量的長支鏈。但由于鉻繫催化劑的高毒性、引髮誘導期長和分子量控製難度大等缺點,通常利用鈦和鋁對其進行改性。對近年來國外新型高效鉻繫乙烯聚閤催化的研究進展進行重點綜述,討論近年來乙烯聚閤用高效鉻繫催化劑的品種和國內外研髮現狀。我國鉻繫催化劑的設計與閤成起步較晚,進步較快,儘快在現有工業裝置上實現催化劑的國產化具有重要意義。
락계을희취합최화제시근년래희경취합최화제적연구열점。여기타류형최화제상비,락계최화제생산적취을희산품분자량분포관、분자량고,차취합물중함유소량적장지련。단유우락계최화제적고독성、인발유도기장화분자량공제난도대등결점,통상이용태화려대기진행개성。대근년래국외신형고효락계을희취합최화적연구진전진행중점종술,토론근년래을희취합용고효락계최화제적품충화국내외연발현상。아국락계최화제적설계여합성기보교만,진보교쾌,진쾌재현유공업장치상실현최화제적국산화구유중요의의。
Chromium based catalysts for ethylene polymerization have been research hotspots of olefins polymerization in recent years. Compared with other types of catalysts,the product polyethylene with broad molecular weight distribution,high molecular weight and a small amount of long chain branches are obtained over chromium based catalysts. The high toxicity,long induction period and difficult control of molecular weight of traditional chromium based catalysts limited their further developments,so some modification for chromium based catalysts with titanium and aluminum was carried out to improve their properties. In this paper,the latest progress in novel chromium based catalysts for ethylene polymerization at home and abroad was reviewed. Though the design and preparation of chromium based catalyst were introduced into China for a short time,the research progress in chromium based catalysts for polyethylene production was achieved rapidly. The chromium based catalysts will continue to play an important role in polyethylene industry and it is very urgent to realize the demestic production of chromium based catalysts in the near future.