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Prof Tao Wu
Dean of Faculty of Science and Engineering
Department of Chemical and Environmental Engineering
China Beacons Institute
Advanced Energy and Environmental Materials & Technologies Research Group
Email
tao.wu
nottingham.edu
cn
,
Tao.Wu
nottingham.edu
cn
h-index
6556
Citations
45
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
1997 …
2024
Research activity per year
Overview
Fingerprint
Network
Projects
(13)
Research output
(217)
Prizes
(7)
Similar Profiles
(3)
Supervised Work
(26)
Fingerprint
Dive into the research topics where Tao Wu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Adsorbent
43%
Adsorption
38%
Ash Fusion
39%
Bio-dimethyl Ether
25%
Bio-oil
27%
Biomass Blends
30%
Biomass Gasification
24%
Biomass Pyrolysis
38%
Biomass-coal Blends
30%
Char Morphology
37%
Co-firing
57%
Co-gasification
42%
Co-processing
27%
CO2 Adsorption
35%
Co3O4
22%
Coal Blend
26%
Coal Char
24%
Coal-fired Power Plant
25%
Combustion
40%
Conventional Pyrolysis
27%
Density Functional Theory
42%
Drop Tube Furnace
25%
Elemental Mercury
35%
Entrained Flow Gasifier
25%
Environmental Impact
29%
Ethylene
28%
Graphene
31%
Hg0 Capture
37%
High Efficiency
56%
HKUST-1
35%
Hydrogen Production
33%
Ignition
24%
Image Analysis Technique
31%
Lignocellulose
26%
Lignocellulosic Composition
26%
Low Temperature
40%
Macromixing
25%
Metal Oxide
24%
Microwave Heating
25%
Microwave Pyrolysis
87%
Microwave-assisted
34%
Mixing Process
25%
Molybdenite
66%
MoS2 Nanosheets
42%
Oat Straw
23%
Oil Shale
25%
Pyrolysis
33%
Synergistic Effect
49%
Syngas
26%
Thermogravimetric Analysis
25%
Engineering
Activation Energy
32%
Adsorption
53%
Adsorption Capacity
16%
Ash Sample
25%
Biomass Pyrolysis
22%
Carbon Deposition
23%
Carbonaceous Material
25%
Char Burnout
20%
Char Combustion
20%
Char Particle
18%
Co-Processing
17%
Coal Blend
21%
Coal Particle
15%
Coal Sample
26%
Combustion
23%
Drop Tube Furnace
34%
Energy Engineering
100%
Energy Harvesting
20%
Engineering
25%
Environmental Impact
29%
Flame Stability
16%
Fuel Blend
20%
Gasification
59%
Gasifiers
41%
Graphene
37%
Heating Rate
15%
Hemicellulose
16%
Hydrogen Production
20%
Ignition
41%
Ignition Temperature
19%
Image Analysis
53%
Internals
17%
Isothermal
16%
Kinetic Model
20%
Kinetic Study
15%
Lignocellulosics
55%
Low-Temperature
31%
Microwave Pyrolysis
16%
Molybdenum Disulfide
28%
Oil Shale
25%
Organic Solar Cells
20%
Polyurethan
20%
Power Generation
25%
Processing Parameter
20%
Programmed Temperature
19%
Pulverised Coal
18%
Pyrolysis
30%
Synergistic Effect
40%
Thermal Behavior
20%
Thermal Processing
22%