Engineering
Models
100%
Energy Density
100%
Comparative Analysis
100%
Integrated Energy System
100%
Borohydride
66%
Dehydrogenation
50%
Energy Engineering
50%
Sodium
33%
Alternative Fuel
33%
High Energy
33%
Cooling Power
16%
Energy Integration
16%
Oil
16%
Limitations
16%
Proton-Exchange Membrane Fuel Cells
16%
Internal Combustion Engine
16%
Integrated System
16%
Solid Oxide Fuel Cell
16%
Research
16%
Power Converter
16%
Energy Conservation
16%
Performance
16%
Energy Efficiency
16%
Integration
16%
Provide Energy
16%
Gas Turbine
16%
Internals
16%
Input Value
16%
Zeros
16%
INIS
carriers
100%
hydrogen
100%
energy systems
100%
ships
100%
energy density
75%
energy
62%
borohydrides
50%
dehydrogenation
37%
alternative fuels
25%
sodium
25%
emission
12%
imports
12%
proton exchange membrane fuel cells
12%
power
12%
heat
12%
gas turbines
12%
cooling
12%
preheating
12%
energy efficiency
12%
values
12%
potassium
12%
burners
12%
waste heat
12%
oils
12%
resources
12%
internal combustion engines
12%
sofc
12%
performance
12%
Material Science
Energy Density
100%
Dehydrogenation
50%
Sodium
33%
Alternative Fuel
33%
Proton-Exchange Membrane Fuel Cells
16%
Diesel Oil
16%
Gas
16%
Potassium
16%
Keyphrases
Ship Integrated Energy System
100%
N-ethylcarbazole
33%
Marine Diesel Oil
16%
Internal Preheating
16%
Hydrogen Import
16%
Waste Heat Resource
16%
Chemical Engineering
Hydrogen
100%
Dehydrogenation
37%
Sodium
25%
Potassium
12%
Combustion
12%
Preheating
12%