Технические дисциплины и материаловедение
Sorbents
100%
Methanation
59%
Air
44%
Sorption
44%
Composite materials
38%
Catalysts
36%
Methane
34%
Carbon dioxide
34%
Aluminum oxide
25%
Temperature
24%
Alumina
21%
Aerogels
17%
Nickel
17%
Catalytic oxidation
17%
Chemisorption
16%
Adsorption
15%
Ionic liquids
15%
Silica gel
15%
Hydrogenation
13%
Hydrogen sulfide
13%
Desorption
13%
Activated carbon
13%
Amino acids
13%
Heat treatment
11%
Nanoparticles
10%
Impregnation
10%
Chemical activation
10%
X ray diffraction
9%
Renewable energy resources
8%
Carbon
8%
Lime
8%
Potassium
8%
Carbonates
7%
Potash
7%
Thermogravimetric analysis
7%
Nitrogen
7%
Ruthenium
6%
Sodium hydroxide
6%
X ray photoelectron spectroscopy
6%
Chemical analysis
6%
Scanning electron microscopy
5%
Thermal desorption
5%
Gasification
5%
Green Synthesis
5%
Atmospheric humidity
5%
Textures
5%
Hot Temperature
5%
Химические соединения
Sorbent
90%
Carbon Dioxide
46%
Composite Material
36%
Sorption
33%
Methane
29%
Flow
24%
Catalyst
17%
Chemisorption
16%
Humidity
15%
Glycinate
15%
1-Ethyl-3-Methylimidazolium
12%
Aerogel
11%
Hydrogen Sulfide
11%
Desorption
10%
Porosity
10%
Ionic Liquid
8%
Hydrogenation
8%
Mixture
7%
Gel
6%
Adsorption
6%
Gasification
6%
Crystalline Texture
6%
Energy
6%
Simulation
5%
Nanoparticle
5%
X-Ray Diffraction
5%
Oxidation Reaction
5%
Физика и астрономия
sorbents
50%
sorption
24%
carbon dioxide
22%
silica gel
14%
aerogels
13%
air
13%
composite materials
12%
amino acids
12%
humidity
12%
hydrogenation
12%
beds
10%
catalysts
10%
methane
10%
nickel
8%
air intakes
8%
reactors
8%
kinetics
8%
chemisorption
8%
synthesis
8%
gasification
7%
nanoparticles
7%
outlets
6%
curves
6%
liquids
5%
glycine
5%
desorption
5%