Skip to main navigation
Skip to search
Skip to main content
National Laboratory of the Rockies Hub Home
Search content at National Laboratory of the Rockies
Hub Home
Researcher Profiles
Research Output
Research Organizations
Awards & Honors
Activities
Anh To
Researcher IV-Chemical Engineering
,
Catalytic Carbon Transformation and Scale-Up Center
Bioenergy Research Topic
https://orcid.org/0000-0002-1594-1730
Email
Anh.To
nlr
gov
2019
2026
Research Activity per Year
Overview
Fingerprint
Network
Research Output
(35)
Activities
(1)
Awards & Honors
(3)
Similar Profiles
(10)
Fingerprint
Dive into the research topics where Anh To is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Chemical Engineering
Carbon Dioxide
100%
Methanol
74%
Carbon Dioxide Capture
35%
Hydrogenation
34%
Zeolite Catalyst
24%
Transition Metal
22%
Dehydrogenation
22%
Nanoparticle
19%
Desorption
18%
CO2 Conversion
18%
Olefin to Paraffin Ratio
17%
Olefin
14%
Techno-economic Analysis
14%
Production of Methanol
12%
Hexane
11%
Phenol
8%
Aromatic Hydrocarbon
8%
Zeolite
7%
Ion Exchange
7%
Hydrocarbon Products
6%
Pyrolysis
6%
Ketone
5%
CO Selectivity
5%
Condensation Reaction
5%
Hydrodeoxygenation
5%
Butene
5%
Catalytic Cracking
5%
Copper Catalysts
5%
Physisorption
5%
Temperature Programmed Desorption
5%
Alkali Metal
5%
Carbon Formation
5%
Catalytic Fast Pyrolysis
5%
Composite Catalyst
5%
Aldehyde
5%
Packed Bed Reactor
5%
Propylene
5%
Carbon Dioxide Utilization
5%
Hydrocarbon
5%
Hydrogen
5%
Methanol Synthesis
5%
Engineering
Carbon Capture
75%
Carbon Dioxide Capture
25%
Polyoxymethylene
22%
End Group
19%
Hydrogenation
16%
CO2 Conversion
16%
Methane
16%
Life Cycle Assessment
13%
Syngas
12%
Renewables
11%
Renewable Diesel
11%
Nanoparticles
11%
Multiscale
11%
Direct Conversion
11%
CO2 Hydrogenation
11%
Flux Density
9%
Conversion Process
9%
Production of Methanol
8%
Diesel Fuel
8%
Energy Requirement
8%
Flue Gas
7%
Single Reactor
7%
Gas Streams
7%
Design of Experiments
7%
Pretreatment
6%
Low Heating Value
5%
Low Energy Density
5%
Bio-Oil
5%
Molybdenum Carbide
5%
Engine Efficiency
5%
Antiknock Rating
5%
Flow Reactor
5%
Fast Pyrolysis
5%
Oxygen Content
5%
Boiling Point
5%
Alkene
5%
Hot Spot
5%
Packed Bed
5%
Life Cycle Impact Assessment
5%
Carbon Dioxide Utilization
5%
Parametric Study
5%
Adsorption Capacity
5%
Carbon capture and utilization
5%
Atmospheric Pressure
5%
Carbon Capture and Storage
5%
Source Point
5%
Chemistry
Dimethyl Ether
32%
Octane
28%
Methanol
15%
Nanoparticle
15%
Alkene
13%
Molybdenum
11%
Calorific Value
11%
Syngas
11%
Transition Metal Carbide
11%
Dehydrogenation
9%
Pool
8%
acetalization
8%
Carbon Monoxide
8%
Hydrogenation
7%
Cresol
6%
Diesel Fuel
6%
Catalyst Design
5%
Depolymerization
5%
Gallium
5%
Anisole
5%
Hydrodeoxygenation
5%
Boiling Point
5%
Binding Site
5%
Arene
5%
Tert-Butylamine
5%
Carbon Dioxide
5%
coke
5%
Glucan
5%
Dimethoxymethane
5%
Reaction Parameter
5%
Statistical Design
5%
Chemistry
5%