辽宁石油化工大学学报

辽宁石油化工大学学报 ›› 2013, Vol. 33 ›› Issue (4): 26-29.

• 石油化工 • 上一篇    下一篇

甲醇制丙烯反应中磷改性对HZSM-5催化剂的影响

赵琳,郭大光* ,李文深,李世松,林月明   

  1. (辽宁石油化工大学石油化工学院,辽宁抚顺113001
  • 收稿日期:2013-03-06 出版日期:2013-12-25 发布日期:2017-07-14
  • 作者简介:赵琳(1987-),男,辽宁抚顺市,在读硕士

Effect of PModification of HZSM5 Catalyst on the Methanol to Propylene Process

ZHAO LinGUO Daguang*, LI WenshenLI Shisong, LIN Yueming   

  1. School of Petrochemicai Engineering,Liaoning Shihua University,Fushun Liaoning 113001,China
  • Received:2013-03-06 Published:2013-12-25 Online:2017-07-14

摘要: 暋通过等体积浸渍法制备P改性HZSM灢5催化剂,考察了不同程度的P改性对HZSM灢5催化剂表征及
催化性能的影响。实验结果表明,P改性后的催化剂的强酸位明显减弱,弱酸位有所增强。在P质量分数为0%~
0.500%的范围内进行改性时,随着P质量分数的增加,P灢HZSM灢5催化剂的比表面积、微孔体积逐渐变小,平均孔径
增大。但催化剂骨架结构保持不变,结晶度几乎不发生改变。相对于P改性之前,催化剂的稳定性有了显著的提
高,丙烯的选择性明显增加。且当P的质量分数为0.250%时,丙烯选择性最高可达54.6%。

关键词: 磷 , HZSM-5改性 , 甲醇制丙烯 , 催化 , 比表面积

Abstract: Pmodified HZSM5 catalysts were prepared by impregnation and used in the reaction of methanol to propylene as the catalyst. The effect of different phosphorous precursor amount on their catalyst characterization and catalytic performance is investigated. The results show that the amount of strong acid sites of phosphorus modified catalysts decreased, while that of weak acid sites increased. The increase of P loading with the range of 0% and 0.5% leads to the decrease of specific surface area and micropore volume, the increase of average pore size as well. However, there is no change in the framework and crystallinity. Compared with HZSM5, the stability of P/HZSM5 catalyst has been significantly improved, and the selectivity to propylene was significantly increased. And when the mass fraction of P is 0.25%, Propylene selectivity could be up to 54.6%.

Key words: Phosphorus ,  HZSM5 modification , Methanol to propylene ,  Catalysis , Specific surface area

引用本文

赵琳,郭大光,李文深,李世松,林月明. 甲醇制丙烯反应中磷改性对HZSM-5催化剂的影响[J]. 辽宁石油化工大学学报, 2013, 33(4): 26-29.

ZHAO Lin, GUO Daguang, LI Wenshen, LI Shisong, LIN Yueming. Effect of PModification of HZSM5 Catalyst on the Methanol to Propylene Process[J]. Journal of Liaoning Petrochemical University, 2013, 33(4): 26-29.

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