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Keyword [Coke resistance]
Result: 1 - 19 | Page: 1 of 1
1.
Theoretical And Experimental Studies On The Catalytic Conversion Of CO
2
2.
The Preparation Of Highly Active And Coke Resistant Ni-based Catalysts For Methane Reforming For Hydrogen Production
3.
Preparing Novel And High Performance Ni-based Catalytic Materials: Study On Their Application For CH
4
Reforming
4.
Novel,Active And Coke Resistant Pyrochlore-Supported Ni Catalysts For CH
4
Reforming For H
2
Production
5.
Ni Supported On Pyrochlores For CH
4
Reforming For H
2
Production: On The Effects Of A And B Site Replacement
6.
Coke Resistant Perovskite-supported Ni Catalysts With High Efficiency For CH
4
Reforming For Hydrogen Production
7.
Study On Coke-resistance Of Coated Ni Catalyst For Dry Reforming Of Methane
8.
Controlled Synthesis Of Ni@Al
2
O
3
Core Shell Catalyst For Dry Reforming Of Methane For Hydrogen Production
9.
Application Of Low Concentration CBM To Solid Oxide Fuel Cells With Nickel-based Anodes
10.
High Catalytic Activity And Stability Of Ni/Ce
x
Zr
1-x
O
2
/MSU-H For CH
4
/CO
2
Dry Reforming Reaction
11.
Ni-based Catalysts Treated By Low Temperature Plasma For Propane Steam Reforming For Hydrogen Production
12.
Coke Resistant La
2
O
3
Supported Ni Catalysts With High Efficiency For Methane Dry Reforming For Hydrogen Production
13.
Ni Supported On Pyrochlores For CH
4
Reforming To Produce Hydrogen:The Effects Of Ni-Supports Interaction On The Reactivity
14.
Study On Mechanism Of Catalytic Reforming Of Methane Over Modified Nickel Based Carbon Fibers
15.
Construction Of High-Efficiency Nickel-Iron Catalyst System And Its Methane Dry Reforming Performance Tailoring
16.
Synthesis Of Cold Plasma Surface-Modified Nickel-Based Catalysts And Study On The Stability Of Reforming Reactions
17.
Ni Supported On LaBO
3
(B=Al,Cr,Fe) Perovskite For CH
4
Reforming To Produce Hydrogen
18.
Preparation Of Highly Coke-resistant Nickel-iron Alloy Catalysts For Dry Reforming Of Methane
19.
Surface Modification And Kinetic Study Of Ni-based Mesoporous Catalyst For CH
4
/CO
2
Reforming
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