期刊文献+

丙烷脱氢PtSn/Al_2O_3催化剂积炭行为研究 被引量:3

Study on the coke formation behavior on PtSn/Al_2O_3 propane dehydrogenation catalyst
下载PDF
导出
摘要 通过HRTEM、XRD、FT-IR、Raman、^(13)C NM R、NH_3-TPD、DTG及元素分析等表征手段,研究了丙烷脱氢PtSn催化剂积炭性质及其对催化剂结构的影响,分析了催化剂的积炭失活过程。结果表明,积炭覆盖活性位并堵塞催化剂孔道是催化剂失活主要因素;与新鲜催化剂相比,催化剂积炭完全失活后,Pt颗粒粒径并没有明显变化;完全失活时,XRD谱图出现了无定形石墨炭的衍射峰;随着积炭量的增加,焦的石墨化程度越高,芳构化程度加深,难以消除的炭增多,再生难度加大。提出丙烷在Pt活性位深度脱氢形成积炭并向载体转移的历程,认为更为稳定的C_(24)H_(12)是积炭前驱体。 The nature and effect of coke formation on PtSn dehydrogenation catalyst were investigated by various technologies,such as HRTEM,XRD,FT-IR,Raman,^(13)C NMR,NH_3-TPD,DTG and ultimate analysis.The deactivation process of the catalyst was also discussed.The results showed that the catalyst deactivation was mainly caused by deposited carbon,which covered active sites and blocked the pores of the catalyst.The diffraction peaks of the amorphous graphite carbon were observed in the XRD patterns of the fully deactivated catalyst.Furthermore,the degree of aromatization and graphitization of coke formed in the catalyst were enhanced.It was difficult to regenerate the deactivated catalyst through coke elimination.It is proposed that the carbon deposit proceeded on the Pt active site by propane deep dehydrogenation and the deposited carbon could transfer to the surface of the support.The coke precursor is probably C_(24)H_(12) when the coke content was accumulated to a certain degree.
出处 《燃料化学学报》 EI CAS CSCD 北大核心 2017年第9期1130-1136,共7页 Journal of Fuel Chemistry and Technology
基金 辽宁石油化工大学引进人才科研基金(1100130102)资助~~
关键词 积炭 失活 PtSn催化剂 芳构化 石墨化 coke deactivation dehydrogenation catalysts aromatization graphitization
  • 相关文献

参考文献2

二级参考文献14

  • 1张涛,臧璟龄,胡爱华,林励吾.锂对于γ-Al_2O_3表面酸中心的调变作用及其积炭性能的影响[J].Chinese Journal of Catalysis,1990,11(5):341-347. 被引量:21
  • 2林励吾,Appl Catal,1990年,67卷,11页
  • 3徐竹生,催化学报,1986年,7卷,3期,231页
  • 4徐竹生,催化学报,1980年,1卷,4期,261页
  • 5团体著者
  • 6Praserthdam P, Mongkhonsi T, Kunatippapong S, et al. Determination of coke deposition on metal active sites of propane dehydrogenation catalysts [J]. Stud Appl Math, 1997, 111: 153-158.
  • 7Santhosh Kumar M, Holmen A, Chen D. The influence of pore geometry of Pt containing ZSM-5, Beta and SBA-15 catalysts on dehydrogenation of propane [J]. Micropor Mesopor Mater, 2009, 126(1-2): 152-158.
  • 8Larsson M, Huhen M, Blekkan E A, et al. The effect of reaction conditions and time on stream on the coke formed during propane dehydrogenation[J]. J Catal, 1996, 164(1): 44-53.
  • 9Yang J, Stansberry P G, Zondlo J W, et al. Characteristics and carbonization behaviors of coal extracts [J]. FuelProcess Technol, 2002, 79(3): 207-215.
  • 10Eisenbach D, Gallei E. Infrared spectroscopic investiga- tions relating to coke formation on zeolites (1): Adsorption of hexene-1 and n-hexane on zeolites of type Y[J].J Cat'd, 1979, 56(3): 377-389.

共引文献14

同被引文献8

引证文献3

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部