Ag- and Cu-Promoted Mesoporous Ta-SiO2 Catalysts Prepared by Non-Hydrolytic Sol-Gel for the Conversion of Ethanol to Butadiene

被引:15
|
作者
Dochain, Denis D. [1 ]
Styskalik, Ales [1 ,2 ,3 ]
Debecker, Damien P. [1 ]
机构
[1] Univ Catholique Louvain UCLouvain, Inst Condensed Matter & Nanosci, Pl Louis Pasteur 1, B-1348 Louvain La Neuve, Belgium
[2] Masaryk Univ, Dept Chem, Kotlarska 2, CZ-61137 Brno, Czech Republic
[3] Masaryk Univ, CEITEC MU, Kamenice 5, CZ-62500 Brno, Czech Republic
基金
欧盟地平线“2020”;
关键词
Mesoporous metallosilicate; tantalum oxide; bioethanol; bifunctional catalysts; dehydration; dehydrogenation; MIXED-OXIDE CATALYSTS; HETEROGENEOUS CATALYSTS; 1,3-BUTADIENE; EPOXIDATION; BIOMASS; ELIMINATION; METATHESIS; OXIDATION; ROUTES; XPS;
D O I
10.3390/catal9110920
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The direct catalytic conversion of bioethanol to butadiene, also known as the Lebedev process, is one of the most promising solution to replace the petro-based production of this important bulk chemical. Considering the intricate reaction mechanism-where a combination of acid-catalyzed dehydration reactions and metal-catalyzed dehydrogenation have to take place simultaneously-tailor-made bifunctional catalysts are required. We propose to use non-hydrolytic sol-gel (NHSG) chemistry to prepare mesoporous Ta-SiO2 materials which are further promoted by Ag via impregnation. An acetamide elimination route is presented, starting from silicon tetraacetate and pentakis(dimethylamido)tantalum(V), in the presence of a Pluronic surfactant. The catalysts display advantageous texture, with specific surface area in the 600-1000 m(2) g(-1) range, large pore volume (0.6-1.0 mL g(-1)), an average pore diameter of 4 nm and only a small contribution from micropores. Using an array of characterization techniques, we show that NHSG allows achieving a high degree of dispersion of tantalum, mainly incorporated as single sites in the silica matrix. The presence of these monomeric TaOx active sites is responsible for the much higher dehydration ability, as compared to the corresponding catalyst prepared by impregnation of Ta onto a pristine silica support. We attempt to optimize the butadiene yield by changing the relative proportion of Ta and Ag and by tuning the space velocity. We also demonstrate that Ag or Cu can be introduced directly in one step, during the NHSG process. Copper doping is shown to be much more efficient than silver doping to guide the reaction towards the production of butadiene.
引用
收藏
页数:14
相关论文
共 47 条
  • [21] Conversion of ethanol to butadiene over mesoporous In2O3-promoted MgO-SiO2 catalysts
    Szabo, Blanka
    Novodarszki, Gyula
    May, Zoltan
    Valyon, Jozsef
    Hancsok, Jeno
    Barthos, Robert
    MOLECULAR CATALYSIS, 2020, 491
  • [22] Gas phase dehydration of glycerol to acrolein over WO3-based catalysts prepared by non-hydrolytic sol-gel synthesis
    Nadji, L.
    Masso, A.
    Delgado, D.
    Issaadi, R.
    Rodriguez-Aguado, E.
    Rodriguez-Castellon, E.
    Lopez Nieto, J. M.
    RSC ADVANCES, 2018, 8 (24) : 13344 - 13352
  • [23] WO3-based catalysts prepared by non-hydrolytic sol-gel for the production of propene by cross-metathesis of ethene and 2-butene
    Maksasithorn, Surasa
    Praserthdam, Piyasan
    Suriye, Kongkiat
    Devillers, Michel
    Debecker, Damien P.
    APPLIED CATALYSIS A-GENERAL, 2014, 488 : 200 - 207
  • [24] Lithium insertion properties of mesoporous nanocrystalline TiO2 and TiO2-V2O5 microspheres prepared by non-hydrolytic sol-gel
    Escamilla-Perez, A. M.
    Louvain, N.
    Kaschowitz, M.
    Freunberger, S.
    Fontaine, O.
    Boury, B.
    Brun, N.
    Mutin, P. H.
    JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 2016, 79 (02) : 270 - 278
  • [25] Epoxy-based hybrids using TiO2 nanoparticles prepared via a non-hydrolytic sol-gel route
    Kobayashi, Manabu
    Saito, Hitomi
    Boury, Bruno
    Matsukawa, Kimihiro
    Sugahara, Yoshiyuki
    APPLIED ORGANOMETALLIC CHEMISTRY, 2013, 27 (11) : 673 - 677
  • [26] Ex Situ and Operando Studies on the Role of Copper in Cu-Promoted SiO2-MgO Catalysts for the Lebedev Ethanol-to-Butadiene Process
    Angelici, Carlo
    Meirer, Florian
    van der Eerden, Ad M. J.
    Schaink, Herrick L.
    Goryachev, Andrey
    Hofmann, Jan P.
    Hensen, Emiel J. M.
    Weckhuysen, Bert M.
    Bruijnincx, Pieter C. A.
    ACS CATALYSIS, 2015, 5 (10): : 6005 - 6015
  • [27] Non-hydrolytic sol-gel synthesis of amine-functionalized silica: Template- and catalyst-free preparation of mesoporous catalysts for CO2 valorization
    Bui, Thai Q.
    Pokorny, Tomas
    Machac, Petr
    Moravec, Zdenek
    Bergerova, Eva Domincova
    Styskalik, Ales
    MICROPOROUS AND MESOPOROUS MATERIALS, 2025, 381
  • [28] Cu/SiO2 Catalysts Prepared by the Sol-Gel Method for Hydrogenation of Dimethyl Oxalate to Ethylene Glycol
    Lin Ling
    Pan Pengbin
    Zhou Zhangfeng
    Li Zhaoji
    Yang Jinxia
    Sun Minling
    Yao Yuangen
    CHINESE JOURNAL OF CATALYSIS, 2011, 32 (06) : 957 - 969
  • [29] Acetic Anhydride as an Oxygen Donor in the Non-Hydrolytic Sol-Gel Synthesis of Mesoporous TiO2 with High Electrochemical Lithium Storage Performances
    Wang, Yanhui
    Kim, Sanghoon
    Louvain, Nicolas
    Alauzun, Johan G.
    Mutin, P. Hubert
    CHEMISTRY-A EUROPEAN JOURNAL, 2019, 25 (18) : 4767 - 4774
  • [30] Pd-Ag/SiO2 sol-gel catalysts designed for selective conversion of chlorinated alkanes into alkenes
    Heinrichs, B
    Delhez, P
    Schoebrechts, JP
    Pirard, JP
    PREPARATION OF CATALYSTS VII, 1998, 118 : 707 - 716