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两段提升管催化裂解多产丙烯研究
引用本文:李春义,袁起民,陈小博,杨朝合,山红红,张建芳.两段提升管催化裂解多产丙烯研究[J].中国石油大学学报(自然科学版),2007,31(1):118-121.
作者姓名:李春义  袁起民  陈小博  杨朝合  山红红  张建芳
作者单位:中国石油大学,重质油国家重点实验室,山东,东营,257061
基金项目:中国石油天然气股份有限公司重点资助项目
摘    要:在分析两段提升管催化裂化特点的基础上,提出了重油两段催化裂解多产丙烯兼顾汽油和柴油生产的技术思路,以大庆常渣为原料,采用专门研制的LTB-2催化剂,在提升管反应装置上进行了实验。结果表明,在实验条件下,大庆常渣经两段提升管催化裂解反应,在丙烯收率达到22%的情况下,干气收率只有5.37%,总液收率仍然可以超过82%,并且汽油的烯烃含量低、芳烃含量高,为高辛烷值汽油调和组分;生成的柴油密度在890kg/m3左右,计算十六烷值在30左右,与通常的催化柴油性质相当。重油经两段提升管催化裂解,可在多产丙烯的同时,兼顾汽油和柴油的生产。

关 键 词:两段提升管  催化裂解  丙烯
修稿时间:2006-10-09

Maximizing yield of propylene by two-stage riser catalytic pyrolysis of heavy oil
LI Chun-yi,YUAN Qi-min,CHEN Xiao-bo,YANG Chao-he,SHAN Hong-hong,ZHANG Jian-fang.Maximizing yield of propylene by two-stage riser catalytic pyrolysis of heavy oil[J].Journal of China University of Petroleum,2007,31(1):118-121.
Authors:LI Chun-yi  YUAN Qi-min  CHEN Xiao-bo  YANG Chao-he  SHAN Hong-hong  ZHANG Jian-fang
Affiliation:State Key Laboratory of Heavy Oil Processing in China University of Petroleum, Dongying 257061, Shandong Province, China
Abstract:The characteristics of the two-stage riser catalytic cracking that strengthen the catalysis to reduce the yield of dry gas are favorable for maximizing propylene yield of heavy oil pyrolysis.The experimental results show that using the special catalyst of LTB-2,the yield of propylene reaches 22%,the yield of the dry gas is only 5.37% and the total liquid yield is more than 82% when the first stage riser is fed with Daqing atmospheric residue and the second is fed with the mixture of the gasoline and the remaining heavy oil from the first-stage reaction.The gasoline from the second stage contains less than 24% olefins and more than 50% aromatics,and is high octane number component.The density and calculated cetane number of the diesel are 890 kg/m3 and about 30 respectively.These properties are also acceptable.Thus,the technology of two-stage riser catalytic pyrolysis of heavy oil can maximize propylene yield without the cost of light oil quality.
Keywords:two-stage riser  catalytic pyrolysis  propylene
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