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巴豆醛气相选择性加氢催化剂 被引量:3

Catalysts for Vapor-Phase Selective Hydrogenation of Crotonaldehyde to Crotyl Alcohol
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摘要 巴豆醛是α,β-不饱和醛中最具代表性的一类有机化合物,采用气相催化巴豆醛选择加氢制备巴豆醇符合原子经济和绿色化学要求,具有重要的工业应用和学术价值。本文综述了近十年国内外巴豆醛气相选择性加氢合成巴豆醇的负载型催化剂的研究成果,评述了贵金属催化剂(铂、金、铱、银、钯)和非贵金属催化剂(钴、铜)上巴豆醛选择性加氢性能,分析了活性组分、载体、助剂以及活性组分粒径对催化剂性能的影响,探讨了巴豆醛选择性加氢的反应机理和失活机理。最后,对气相巴豆醛选择性加氢催化剂所存在的问题进行总结,并对催化剂的发展趋势作出了展望。指出了非贵金属催化剂的巴豆醛选择性加氢性能因具有价廉易得等优势,将是该领域的研究方向之一。催化剂失活是巴豆醛气相选择性加氢工业化的最大障碍,因此研究和认识反应机理,解决催化剂失活问题是重点研究方向。 The vapor-phase selective hydrogenation of crotonaldehyde, a classical or, 13-unsaturated aldehyde, to crotyl alcohol over heterogeneous catalysts is an appealing green process of great importance from both industrial and academic points of view. This paper reviews the latest progresses of the heterogeneous catalysts for selective hydrogenation of crotonaldehyde to crotyl alcohol in the past ten years. Noble metal catalysts such as platinum, silver, gold and iridium and non-noble metal catalysts such as cobalt and copper employed for selective hydrogenation of crotonaldehyde are summarized. The parameters influencing the catalytic behaviors of the catalyst system such as active sites, metal particle size, support type, promoters are discussed. Also, catalyst deactivation and reaction mechanism are investigated. Finally, the current problems of the vapor-phase selective hydrogenation of erotonaldehyde are summarized and development trend of catalyst systems for this reaction is proposed. It is pointed out that the vapor-phase selective hydrogenation of crotonaldehyde over non-noble metal catalysts will be a main research direction because its much lower cost compared to the noble metal catalysts. As the catalyst deactivation is the main obstacle for this reaction, the research should be focused on the understanding of the reaction and deactivation mechanism.
出处 《化学进展》 SCIE CAS CSCD 北大核心 2012年第1期17-30,共14页 Progress in Chemistry
基金 国家自然科学基金项目(No.21173194) 浙江省自然科学基金项目(No.Y4100300)资助
关键词 巴豆醛 巴豆醇 固相催化剂 选择性加氢 crotonaldehyde crotyl alcohol heterogeneous catalysts selective hydrogenation
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参考文献92

  • 1Mertens P G N, Cuypers F, Vandezande P, Ye X P, Verpoort F, Vankelecom I F J, De Vos D E. Appl. Catal. A: Gen. , 2007, 325:130--139.
  • 2Maki-Arvela P, H6jek J, Salmi T, Murzin D Y. Appl. Catal. A: Gen. , 2005, 292:1--49.
  • 3Grass M E, Rioux R M, Somorjai G A. Catal. Lett. , 2009, 128: 1--8.
  • 4Englisch M, Jentys A, Lercher J A. J. Catal. , 1997, 166: 25-- 35.
  • 5Mohr C, Hofmeister H, Radnik J, Claus P. J. Am. Chem. Soc. , 2003, 125:1905--1911.
  • 6Ponec V. Appl. Catal. A: Gen. , 1997, 149:27--48.
  • 7Delbecq F, Sautet P. Catal. Lett. , 1994, 28:89--98.
  • 8Reyes P, Rojas H, Fierro J L G. J. Mol. Catal. A: Chem. , 2003, 203:203--211.
  • 9黄朋勉,刘自力,郑淼,谢先梅.巴豆醛选择性加氢制巴豆醇催化剂的研究进展[J].工业催化,2003,11(6):27-30. 被引量:5
  • 10Gebauer-Henke E, Grams J, Szubiakiewicz E, Farbotko J, Touroude R, Rynkowski J. J. Catal. , 2007, 250:195--208.

二级参考文献126

  • 1闫宗兰,罗孟飞,谢冠群,黄炜,谢云龙.Ce_xPr_(1-x)O_(2-δ)复合氧化物的XRD和Raman表征[J].无机化学学报,2005,21(3):425-428. 被引量:6
  • 2刘自力,黄朋勉.Fe对肉桂醛选择性加氢为肉桂醇的Co/γ-Al_2O_3催化剂的改性研究[J].精细化工,2005,22(6):447-450. 被引量:13
  • 3白崎高保 藤堂尚之.催化剂制造[M].北京:石油工业出版社,1981..
  • 4Haruta M, Yamada N, Kobayashi T, Iijima S. J Catal, 1989, 115:301.
  • 5Jia J F, Haraki K, Kondo J N, Domen K, Tamaru K. J Phys Chem B, 2000, 104:11153.
  • 6Choudhary T V, Sivadinarayana C, Datye A K, Kumar D, Goodman D W. Catal Lett, 2003, 86:1.
  • 7Okumura M, Akita T, Haruta M. Catal Today, 2002, 74: 265.
  • 8Zhang X, Shi H, Xu B Q. Angew Chem, lnt Ed, 2005, 44: 7132.
  • 9Zhang X, Shi H, Xu B Q. Catal Today, 2007, 122:330.
  • 10Hugon A, Delannoy L, Louis C. Gold Bull, 2008, 41:127.

共引文献40

同被引文献58

  • 1蔡小海,刘英骏,刘智巍,谢有畅.NiO的单层分散态及其载体效应[J].物理化学学报,1994,10(1):15-18. 被引量:10
  • 2周亚明,沈伟,徐华龙,胡蕙,项一非.糠醛常压气相催化加氢制糠醇[J].石油化工,1997,26(1):4-7. 被引量:28
  • 3任世彪,邱金恒,王春燕,许波连,范以宁,陈懿.镍盐前体对Ni/γ-Al_2O_3催化剂催化加氢活性的影响[J].催化学报,2007,28(7):651-656. 被引量:26
  • 4Xiao Hong,Bo Li,Yuejuan Wang,Jiqing Lu,Gengshen Hu,Mengfei Luo.Stable Ir/SiO 2 catalyst for selective hydrogenation of crotonaldehyde[J].Applied Surface Science.2013
  • 5Lin Zhu,Geng-Shen Hu,Ji-Qing Lu,Guan-Qun Xie,Ping Chen,Meng-Fei Luo.Effects of Ir content on selective hydrogenation of crotonaldehyde over Ir/ZrO 2 catalysts[J].Catalysis Communications.2012
  • 6Ping Chen,Ji-Qing Lu,Guan-Qun Xie,Geng-Shen Hu,Lin Zhu,Liang-Feng Luo,Wei-Xin Huang,Meng-Fei Luo.Effect of reduction temperature on selective hydrogenation of crotonaldehyde over Ir/TiO 2 catalysts[J].Applied Catalysis A General.2012
  • 7Keita Taniya,Hiroki Jinno,Masahiro Kishida,Yuichi Ichihashi,Satoru Nishiyama.Preparation of Sn-modified silica-coated Pt catalysts: A new Pt<ce:glyph name="sbnd"/>Sn bimetallic model catalyst for selective hydrogenation of crotonaldehyde[J].Journal of Catalysis.2012
  • 8Zeinhom M. El-Bahy,Ahmed I. Hanafy,Mohamed M. Ibrahim,Masakazu Anpo.In situ FTIR studies of CO oxidation over Fe-free and Fe-promoted PtY catalysts: Effect of water vapor addition[J].Journal of Molecular Catalysis A Chemical.2011(1)
  • 9Xiao-Xia Wang,Hai-Ying Zheng,Xi-Jing Liu,Guan-Qun Xie,Ji-Qing Lu,Ling-Yun Jin,Meng-Fei Luo.Effects of NaCl on Pt/ZrO 2 catalysts for selective hydrogenation of crotonaldehyde[J].Applied Catalysis A General.2010(1)
  • 10Wansheng Zhang,Yanqiang Huang,Junhu Wang,Kuo Liu,Xiaodong Wang,Aiqin Wang,Tao Zhang.IrFeO x /SiO 2 —A highly active catalyst for preferential CO oxidation in H 2[J].International Journal of Hydrogen Energy.2009(7)

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