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催化裂化C_4烃催化转化增产丙烯
引用本文:张刘军,徐春明,高金森.催化裂化C_4烃催化转化增产丙烯[J].石油化工,2005,34(8):714-718.
作者姓名:张刘军  徐春明  高金森
作者单位:中国石油大学(北京)重质油国家重点实验室,北京,102249
摘    要:在小型固定流化床实验装置上,考察了4种有代表性的催化裂化C4烃在普通催化裂化催化剂上增产丙烯的反应规律,并对普通催化剂以及加入助剂时丙烯收率的变化进行了初步探索。实验结果表明,C4烃在反应温度为400~600℃内的催化转化,主要遵循正碳离子反应机理,C4烃部分催化转化生成丙烯;C4烃中的烷烃几乎不参加反应;低温对异丁烯和正丁烯转化有利,高温对2-丁烯转化有利;异丁烯的最佳反应温度为450℃左右;加入质量分数10%的LCC-A增产丙烯助剂,丙烯收率和芳烃收率分别提高到10%左右。

关 键 词:碳四烃  催化裂化  丙烯  催化转化
文章编号:1000-8144(2005)08-0714-05
修稿时间:2005年2月24日

Catalytic Conversion of Catalytic Cracking C4 Hydrocarbon to Propylene
Zhang Liujun,Xu Chunming,Gao Jinsen.Catalytic Conversion of Catalytic Cracking C4 Hydrocarbon to Propylene[J].Petrochemical Technology,2005,34(8):714-718.
Authors:Zhang Liujun  Xu Chunming  Gao Jinsen
Abstract:Reaction behaviors of propylene production by catalytic conversion of C_4 hydrocarbon from different Fluidized Catalytic Conversion(FCC)plants in a confined fluidized bed reactor were investigated.Effects of various kinds of catalysts with additive on propylene yield were observed.In temperature range of 400—600℃,reactions of butene mainly conformed carbonium ion mechanism,butane basically did not participate reaction and optimal reaction temperature of isobutylene was 450℃.Reaction temperature below 500℃ was advantageous to conversion of isobutene and 1-butene,and reaction temperature above 500℃ was advantageous to conversion of 2-butylene.When LCC-A additive was added to catalyst,yields of propylene and aromatics would be up to about 10%,respectively.
Keywords:C_4 hydrocarbon  catalytic cracking  propylene  catalysis  conversion
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