Volume 42 Issue 07
Jul.  2014
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HUA De-run, CHEN Sheng-li, ZHOU Zheng, CHEN Ai-cheng, LIU Hong-bo, HUANG Qing, LU Xin-ning. Effect of support on catalytic performance for metathesis of butene to propene[J]. Journal of Fuel Chemistry and Technology, 2014, 42(07): 865-869.
Citation: HUA De-run, CHEN Sheng-li, ZHOU Zheng, CHEN Ai-cheng, LIU Hong-bo, HUANG Qing, LU Xin-ning. Effect of support on catalytic performance for metathesis of butene to propene[J]. Journal of Fuel Chemistry and Technology, 2014, 42(07): 865-869.

Effect of support on catalytic performance for metathesis of butene to propene

  • Received Date: 2013-11-27
  • Rev Recd Date: 2014-03-11
  • Publish Date: 2014-07-30
  • The catalysts with SBA-15, MCM-48, SiO2, and MTS-9 as supports were synthesized with 8% WO3, and their catalytic performance for metathesis of butene to propene were carried out. The conversion of butene is 30%~37% on the catalysts with SBA-15, MCM-48, and SiO2 as supports, and that of butene is 37%~42% on WO3/MTS-9 catalyst. The catalyst characterization results show that the catalytic activities depend on the acidic numbers of catalysts prepared and the distribution of tungstens on the supports used. As a result, the performance of 8% WO3/MTS-9 catalyst for the titled reaction is best.
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  • LIPPARD S J, GRUBBS R H. The olefin metathesis reaction[M]. Wiley, 1978.
    ELEUTERIO H S. Polymerization of cyclic olefins: US, 3074918. 1963-01-22.
    VAN SCHALKWYK C, VOSLOO H C M, BOTHA J M. An investigation into the activity of the in situ ruthenium(III). Chloride catalytic system for the metathesis of 1-octene[J]. J Mol Catal A: Chem, 2002, 190(1/2): 185-195.
    WANG Y, CHEN Q, YANG W, XIE Z, XU W, HUANG D. Effect of support nature on WO3/SiO2 structure and butene-1 metathesis[J]. Appl Catal A: Gen, 2003, 250(1): 25-37.
    TOPKA P, BALCAR H, RATHOUSKY J, ZILKOVA N, VERPOORT F, CEJKA J. Metathesis of 1-octene over MoO3 supported on mesoporous molecular sieves: The influence of the support architecture[J]. Microporous Mesoporous Mater, 2006, 96(1/3): 44-54.
    SPAMER A, DUBE T I, MOODLEY D J, DUBE T, REYNHARDT J, BOTHA J M, VOSLOO H C M. Application of a WO3/SiO2 catalyst in an industrial environment: Part II[J]. Appl Catal A: Gen, 2003, 255(2): 133-142.
    HUA D, CHEN S, YUAN G, WANG Y, ZHAO Q, WANG X, FU B. Metathesis of butene to propene and pentene over WO3/MTS-9[J]. Microporous Mesoporous Mater, 2011,143(2/3): 320-325.
    MITRA B, GAO X, WACHS I E, HIRT A M, DEO G. Characterization of supported rhenium oxide catalysts: Effect of loading, support and additives[J]. Phys Chem Chem Phys, 2001, 3(6): 1144-1152.
    BASRUR A G, PATWARDHAN S R, VYAS S N. Propene metathesis over silica-supported tungsten oxide catalyst-catalyst induction mechanism[J]. J Catal, 1991, 127(1): 86-95.
    VERPOORT F, BOSSUYT A R, VERDONCK L. Olefin metathesis catalyst. Part II. Activation and characteristics of a molecular tungsten unit on silica[J]. J Mol Catal A: Chem, 1995, 95(1): 75-82.
    LIU H, HUANG S, ZHANG L, LIU S, XIN W, XU L. The preparation of active WO3 catalysts for metathesis between ethene and 2-butene under moist atmosphere[J]. Catal Commun, 2009, 10(5): 544-548.
    HUANG S, LIU S, ZHU Q, ZHU X, XIN W, LIU H, FENG Z, LI C, XIE S, WANG Q, XU L. The effect of calcination time on the activity of WO3-Al2O3-HY catalysts for the metathesis reaction between ethene and 2-butene[J]. Appl Catal A: Gen, 2007, 323: 94-103.
    HUANG S, LIU S, XIN W, BAI J, XIE S, WANG Q, XU L. Metathesis of ethene and 2-butene to propene on W/Al2O3-HY catalysts with different HY contents[J]. J Mol Catal A: Chem, 2005, 226(1): 61-68.
    BALCAR H, MISHRA D, MARCEAU E, CARRIER X, ZILKOVA N, BASTI Z. Molybdenum oxide catalysts for metathesis of higher 1-alkenes via supporting MoO2(acetylacetonate)2 and MoO2(glycolate)2 on SBA-15 mesoporous molecular sieves[J]. Appl Catal A: Gen, 2009, 359(1/2): 129-135.
    HAMTIL R, ZILKOVA N, BALCAR H, CEJKA J. Rhenium oxide supported on organized mesoporous alumina-A highly active and versatile catalyst for alkene, diene, and cycloalkene metathesis[J]. Appl Catal A: Gen, 2006, 302(2): 193-200.
    TAKASHI O, TOORU O, TSUNEHIRO T, TAKASHI Y, MAKOTO O. A new heterogeneous olefin metathesis catalyst composed of rhenium oxide and mesoporous alumina[J]. Microporous Mesoporous Mater, 2004, 74(1/3): 93-103.
    OOKOSHI T, ONAKA A M. A remarkable Mo catalyst for olefin metathesis hexagonal mesoporous silica-supported molybdenum oxide (MoO3/HMS)[J]. Chem Commun, 1998, (21): 2399-2400.
    MOODLEY D J, VAN SCHALKWYK C, SPAMER A, BOTHA J M, DATYE A K. Coke formation on WO3/SiO2 metathesis catalysts[J]. Appl Catal A: Gen, 2007, 318: 155-159.
    VAN SCHALKWYK C, SPAMER A, MOODLEY D J, DUBE T, REYNHARDT J, BOTHA J M, VOSLOO H CM. Factors that could influence the activity of a WO3/SiO2 catalyst: Part III[J]. Appl Catal A: Gen, 2003, 255(2): 143-152.
    DEBECKER D P, HAUWAERT D, STOYANOVA M, BARKSCHAT A, RODEMERCK U, GAIGNEAUX E M. Opposite effect of Al on the performances of MoO3/SiO2-Al2O3 catalysts in the metathesis and in the partial oxidation of propene[J]. Appl Catal A: Gen, 2011, 391(1/2): 75-78.
    SAYARI A. Novel synthesis of high-quality MCM-48 Silica[J]. J Am Chem Soc, 2000, 122(27): 6504-6505.
    ZHAO D, SUN J, LI Q, STUCKY G D. Morphological control of highly ordered mesoporous silica SBA-15[J]. Chem Mater, 2000, 12(2): 275-279.
    MIYAZAWA K, INAGAKI S. Control of the microporosity within the pore walls of ordered mesoporous silica SBA-15[J]. Chem Commun, 2000, (21): 2121-2122.
    CARLO L, SILVIA B, ADRIANO Z, GILBERTO A, GIANLUIGI M, GUIDO S. Ti location in the MFI framework of Ti-Silicalite-1: A neutron powder diffraction study[J]. J Am Chem Soc, 2001, 123(10): 2204-2212.
    EIMER G A, DíAZ I, SASTRE E, CASUSCELLI S G, CRIVELLO M E, HERRERO E R, PEREZ-PARIENTE J. Mesoporous titanosilicates synthesized from TS-1 precursors with enhanced catalytic activity in the α-pinene selective oxidation[J]. Appl Catal A: Gen, 2008, 343(1/2): 77-86.
    HARMSE L, SCHALKWYK C, STEEN E. On the product formation in 1-butene metathesis over supported tungsten catalysts[J]. Catal Lett, 2010, 137(3/4): 123-131.
    DU S K, MARLENE OSTROMECKI, WACHS I E. Surface structures of supported tungsten oxide catalysts under dehydrated conditions[J]. J Mol Catal A: Chem, 1996, 106(1/2): 93-102.
    RAMíREZ J, GUTIÉRREZ-ALEJANDRE A. Characterization and hydrodesulfurization activity of W-based catalysts supported on Al2O3-TiO2 mixed oxides[J]. J Catal, 1997, 170(1): 108-122.
    BALCAR H, CEJKA A J. Mesoprous molecular sieves as supports for metathesis catalysts[J]. Metathesis Chem, 2007, 243: 151-166.
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