现代化工2024,Vol.44Issue(1) :188-193.DOI:10.16606/j.cnki.issn0253-4320.2024.01.034

新型球形高纯度介孔硅胶复合材料在茂金属聚乙烯催化剂中的应用

Application of novel spherical high-purity mesoporous silica gel composite material in metallocene catalysts for polyethylene

亢宇
现代化工2024,Vol.44Issue(1) :188-193.DOI:10.16606/j.cnki.issn0253-4320.2024.01.034

新型球形高纯度介孔硅胶复合材料在茂金属聚乙烯催化剂中的应用

Application of novel spherical high-purity mesoporous silica gel composite material in metallocene catalysts for polyethylene

亢宇1
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作者信息

  • 1. 中国石油化工股份有限公司北京化工研究院,北京 100013
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摘要

以工业原料水玻璃和硫酸为主要原料,通过球磨打浆技术、高效节能环保除杂质技术和具有尾气回收系统的离心喷雾干燥技术制备出2 种日产量12000 kg的用于聚乙烯催化剂的载体高纯度球形介孔硅胶复合材料.2 种复合材料在硅胶无序堆积孔中均拥有有序的介孔孔道且球体度均匀,二氧化硅纯度均在 99.5%以上.新型材料在负载聚乙烯催化剂后仍然保持良好微观形貌及其特有的介孔材料孔道结构.高压乙烯聚合小试试验结果表明,2 种催化剂对乙烯聚合的活性均高于工业用催化剂的活性,催化反应后得到的聚乙烯粉料的重要物性参数均优于工业用 948 硅胶粉料.

Abstract

Two kinds of high-purity spherical mesoporous silica gel composites with a daily output of 12 tons are produced with industrial sodium silicate and sulfuric acid as main raw materials,through the ball milling pulping technology,the high-efficiency energy-saving impurity removal technology and the centrifugal spray drying technology with waste gas recovery system.Both composites possess the ordered mesoporous channels in the disordered stacking pores of silica gel,the uniform sphericity and a silica purity above 99.5%.This novel material still maintains a good microstructure and unique mesoporous material pore structure after being loaded with the catalyst for polyethylene.It is indicated from the small-scale test for high-pressure ethylene polymerization that the activity of both catalysts for ethylene polymerization is higher than that of industrial catalysts.The important physical parameters of the polyethylene powder obtained over these catalysts are better than those obtained over industrial 948 silica gel.

关键词

介孔硅胶复合材料/茂金属乙烯聚合/除杂质技术

Key words

mesoporous silica gel composite material/ethylene polymerization over metallocene/impurity removal technology

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基金项目

中国石油化工股份有限公司项目(G6001-19ZS-0214)

出版年

2024
现代化工
中国化工信息中心

现代化工

CSTPCDCSCD北大核心
影响因子:0.553
ISSN:0253-4320
参考文献量17
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