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Keyword [Impregnation method]
Result: 21 - 40 | Page: 2 of 8
21.
Study Of Synthesis And Performance Of Immobilized Ionic Liquid Used For CO
2
/N
2
Separation
22.
Study Of A New Nickel Vapor Phase Benzene Hydrogenation Catalyst
23.
The Effect Of Additives On The Structure And Properties Of Catalyst For Syngas Methanation
24.
Synthesis Of2-Methyl-4-Methoxyaniline From O-Nitrotoluene Using Acidic Ionic Liquid And PT/C As Catalyst System
25.
Controlled Synthesis And Catalytic Hydrogenation Performance Of Supported Platinum-based Catalysts
26.
Preliminary Study On The Preparation Of SiO
2
/Al
2
O
3
-Cu Interpenetrating Phase Composites
27.
Effect Of Impregnation Method And Precipitation Method On The Performance Of Ag-based Catalysts Doped With CeO
2
or Fe For One-step Synthesis Of Indole
28.
Researches On Zn-Mn-Cu Sorbent Loaded On Semi-coke Prepared By Ultrasound-assisted High-pressure Impregnation Method And Its Desulfurization And Regeneration
29.
Study On Synthesis Of Anthraquinone From O-benzoylbenzoic Acid Over Phosphotungstic Acid Catalyst
30.
The Diethanolamine Catalytic Dehydrogenation Of Iminodiacetic Acid Catalyst And Process Research,
31.
CuO/CeO
2
Prepared By Impregnation Method And Its Catalytic Activity For CO Oxidation
32.
Preparation And Catalytic Performance Of Pd-Cu-Cl
x
/Al
2
O
3
For Low Temperature CO Oxidation
33.
Effect Of Preparation Method On Catalytic Performance Of Pd-Cu/APT For Low-temperature CO Oxidation
34.
Construction And Catalytic Properties Of Nano-copper Base Catalysts
35.
Synthesis Of Activated Carbon Immobilized Ionic Liquid And CO
2
Adsorption Properties
36.
Study Of Catalytic Conversion Of Methane To Synthesis Gas Reaction Process
37.
The Preparation Of The Hydrogen Carrier Methylcyclohexane's Dehydrogenation Catalyst Ni-Cu/γ-Al
2
O
3
And Its Reaction Performance
38.
Phosphate Modification Of Nano Tio <sub> 2 </ Sub> Photoelectrochemical Properties Of Research
39.
Pt Nanoparticles Supported On Dispersed Alumina Coated Inside Mesoporous Materials And Its Catalytic Application
40.
Selective Catalytic Reduction Of No
X
By NH
3
Over Mn/ZSM-5 Based Catalysts And Reation Mechanism Study
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