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Effect of N
3
-
species on selective acetylene hydrogenation over Pd/SAC catalysts
Maocong Hu,
Xianqin Wang
Chemical and Materials Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
15
Scopus citations
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Dive into the research topics of 'Effect of N
3
-
species on selective acetylene hydrogenation over Pd/SAC catalysts'. Together they form a unique fingerprint.
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Engineering & Materials Science
Acetylene
100%
Hydrogenation
93%
Sodium Azide
80%
Catalysts
62%
Ethylene
33%
Adsorption
30%
Hydrogen
25%
Oligomerization
18%
Temperature programmed desorption
16%
Chemisorption
16%
Acidity
14%
Infrared spectroscopy
14%
Catalyst supports
14%
Impregnation
12%
Impurities
10%
Temperature
8%
Tuning
8%
Chemical Compounds
Acetylene
67%
Hydrogenation
54%
Catalyst
30%
Catalyst Surface Area
16%
Hydrogen
16%
Adsorption
15%
Lewis Base
11%
Oligomerization
10%
Reduction
9%
Chemisorption
9%
Impregnation
9%
Amount
9%
Desorption
8%
IR Spectroscopy
7%
Pore
6%