CO2-Hydrogenation to Methanol over CuO/ZnO Based Infiltration Composite Catalyst Spheres

被引:0
|
作者
Fritsch, Carl [1 ]
Dornseiffer, Juergen [2 ]
Blankenstein, Jule [1 ]
Noyong, Michael [3 ]
Groteklaes, Christian [1 ]
Simon, Ulrich [3 ]
机构
[1] RWTH Aachen Univ FiW, Res Inst Water Management & Climate Future, Environm & Proc Engn UVT, Kackertstr 15-17, D-52072 Aachen, Germany
[2] Forsch Zentrum Julich, Inst Energy & Climate Res Mat Synth & Proc IEK 1, Wilhelm Johnen Str, D-52428 Julich, Germany
[3] Rhein Westfal TH Aachen, Inst Inorgan Chem IAC, Landoltweg 1a, D-52074 Aachen, Germany
关键词
methanol synthesis; RWGS; incipient wetness impregnation method; CO2; hydrogenation; CO2; HYDROGENATION; CARBON-DIOXIDE; SELECTIVITY; ALUMINA; SUPPORT; SURFACE; SITES;
D O I
10.1002/cctc.202400731
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
Multiple active component catalysts for efficient conversion of CO2 to Methanol (MeOH) are synthesized through coating gamma-Al2O3 carrier spheres by incipient wetness impregnation method (IWI). The well-known bimetallic Copper Oxide/Zinc Oxide (CuO/ZnO)is promoted in three steps, first by Cerium Oxide (CeO2), then additionally with Zirconium Oxide (ZrO2) and finally with Calcium Oxide (CaO) resulting in four carrier catalysts with high surface area and catalyst pore volume. Quaternary and quinary carrier catalysts promoted with moderate CeO2, ZrO2 in the quaternary (20 % CZCZ) and additionally with CaO (20 % CZCZC) in the quinary catalysts demonstrate high CO2-conversion ratios (16.2 % and 18.7 %) and space time yields (0.51 and 0.47 gMeOH h(-1) gCatalyst(-1)) at 5 MPa and 250 degrees C. The high conversion ratios (XCO2) and good methanol space-time-yields (STYMeOH) are attributed to enhanced copper dispersion and several multi metal oxide component interactions essential to enhance CO2-activation and -conversion through the catalytic systems as well as very high overall surface area. Compared to related studies, the carrier catalysts show superior conversion rates, proving the effectiveness of the introduced multi-component carrier catalyst and extending the understanding of infiltrate composites as possible large-scale application alternatives to precipitated MeOH catalyst systems.
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页数:14
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