Chemistry
Steam Reforming
100%
Procedure
93%
Methane
70%
Sorption
68%
Packed Bed Reactor
60%
Reaction Temperature
54%
Reactor
49%
Purity
47%
Pressure
43%
Equilibrium
40%
Reforming Reaction
39%
Sorbent
30%
Catalyst
29%
Carbon Dioxide
28%
Water Gas Shift
26%
Fuel
23%
Chemical Kinetics Characteristics
21%
Oxidation Reaction
21%
Gas
19%
Reduction
17%
Solid
16%
Thermal Plasma
15%
Kinetic Study
12%
Blast Furnace
12%
Mixture
12%
Flow
12%
Application
11%
Rate
11%
Water Type
11%
Simulation
10%
Carbon
10%
Diffusion
10%
Catalysis
10%
Phase Composition
10%
Hydrogen
9%
Syngas Generation
9%
Decomposition
8%
Oxidation-Reduction
8%
Chemical Reaction Product
8%
Attenuated Total Reflection
7%
Mass Transfer
7%
Dioxygen
7%
Copper(II) Oxide
6%
Calcium(0)
6%
Hydrocarbon
5%
Syngas
5%
Engineering
Catalyst
37%
Models
34%
Production
32%
Temperature
26%
Steam Reforming
22%
Chemical Looping
22%
Hydrogen Production
20%
Stages
15%
Yields
14%
Carbon Ratio
14%
Carbon Capture
13%
Nuclear Reactor
13%
Reduction
12%
Chemical Looping Reforming
12%
Blast Furnace
12%
Furnace Gas
12%
Performance
11%
Applications
11%
Simulation Result
10%
Mass Flow
10%
Mass Transfer
10%
Reduced Pressure
10%
Steam
9%
Steel Mill
9%
Pressure Steam
8%
Fuel
7%
Good Agreement
7%
Axial Direction
7%
Flow Rate
7%
Small Scale
7%
Syngas
7%
Mixture
7%
Oxygen Carrier
6%
Hydrogen Gas
6%
Molar Ratio
6%
Rich Stream
6%
Cycles
6%
Inlet Gas
6%
Optimal Operating Condition
5%
Equilibrium Data
5%
Momentum Balance Equation
5%
Mass Balance Equation
5%
Operating Temperature
5%
Energy Balance Equation
5%
Low Pressure
5%
Producer Gas
5%
End-Users
5%
Feed Pressure
5%
Response Surface Method
5%
Physics
Model
54%
Sorption
52%
Temperature
43%
Pressure
28%
Value
21%
Steam
18%
Methane
15%
Chemical Equilibrium
15%
Mass Flow
15%
Fuel
13%
Gases
13%
Water
11%
Utilization
10%
Plugs
10%
Kinetics
10%
Ratios
10%
Simulation
10%
Diffusivity
10%
Independent Variables
10%
Solid State
9%
Performance
9%
Hydrogen
7%
Dielectric Barrier Discharge
7%
Carbon Dioxide
7%
Flow Velocity
7%
Oxidation
7%
High Temperature
6%
Gas Mixture
5%
Hydrocarbon
5%
Decomposition
5%
Lithium
5%
Response Surface Methodology
5%
Operating Temperature
5%
Media
5%
Behavior
5%