The purpose of this work is to develop a low-cost and high-performance catalyst for the selective catalytic hydrogenation of acetylene to ethylene. Non-precious metals Cu and Ni were selected as active ingredients for this study. Using ZSM-12 as a carrier, Cu-Ni bimetallic catalysts of CuNix/ZSM-12 (x = 5, 7, 9, 11) with different Ni/Cu ratios were prepared by incipient wetness impregnation method. The total Cu and Ni loading were 2 wt%. Under the optimal reaction conditions, the acetylene conversion was 100%, and the ethylene selectivity was 82.48%. The CuNi7/ZSM-12 prepared in this work exhibits good performance in the semi-hydrogenation of acetylene to ethylene with low cost and has potential for industrial application
Silica-supported, bimetallic palladium-copper catalysts were prepared in solution under mild conditi...
The most selective Pd-Zn surfaces for the selective hydrogenation of acetylene to ethylene were rece...
The two structural modifications of Cu<sub>60</sub>Pd<sub>40</sub> were synthesized as bulk powders ...
Semi-hydrogenation of acetylene in an ethylene-rich stream is an industrially important process. Rec...
A series of modified Ni-Zn bimetallic catalysts were prepared by depositing different kinds of 4 wt%...
Supported Au catalysts have been reported to exhibit high ethylene selectivity in the hydrogenation ...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
A series of diatomite supported Cu/Ni bimetallic catalysts were prepared using the co-impregnation m...
Metallic nickel is known to be an active, but not a selective hydrogenation catalyst. On the other ...
Semi-hydrogenation of alkynes has industrial and academic relevance on a large scale. To increase th...
The selective semi-hydrogenation of terminal alkynes was efficiently performed, under mild reaction ...
Semi-hydrogenation of alkynes has industrial and academic relevance on a large scale. To increase th...
Bimetallic NiAu catalysts have garnered broad interest for a variety of reactions including automoti...
The two structural modifications of Cu60Pd40 were synthesized as bulk powders and tested as unsuppor...
Bimetallic and monometallic catalysts including Cu and/or Fe species were prepared by a co-precipita...
Silica-supported, bimetallic palladium-copper catalysts were prepared in solution under mild conditi...
The most selective Pd-Zn surfaces for the selective hydrogenation of acetylene to ethylene were rece...
The two structural modifications of Cu<sub>60</sub>Pd<sub>40</sub> were synthesized as bulk powders ...
Semi-hydrogenation of acetylene in an ethylene-rich stream is an industrially important process. Rec...
A series of modified Ni-Zn bimetallic catalysts were prepared by depositing different kinds of 4 wt%...
Supported Au catalysts have been reported to exhibit high ethylene selectivity in the hydrogenation ...
Selective hydrogenation of acetylene to ethylene is an industrially important reaction. Pd-based cat...
A series of diatomite supported Cu/Ni bimetallic catalysts were prepared using the co-impregnation m...
Metallic nickel is known to be an active, but not a selective hydrogenation catalyst. On the other ...
Semi-hydrogenation of alkynes has industrial and academic relevance on a large scale. To increase th...
The selective semi-hydrogenation of terminal alkynes was efficiently performed, under mild reaction ...
Semi-hydrogenation of alkynes has industrial and academic relevance on a large scale. To increase th...
Bimetallic NiAu catalysts have garnered broad interest for a variety of reactions including automoti...
The two structural modifications of Cu60Pd40 were synthesized as bulk powders and tested as unsuppor...
Bimetallic and monometallic catalysts including Cu and/or Fe species were prepared by a co-precipita...
Silica-supported, bimetallic palladium-copper catalysts were prepared in solution under mild conditi...
The most selective Pd-Zn surfaces for the selective hydrogenation of acetylene to ethylene were rece...
The two structural modifications of Cu<sub>60</sub>Pd<sub>40</sub> were synthesized as bulk powders ...