INIS
additives
8%
air
12%
ammonia
8%
applications
30%
assessments
8%
atmospheric pressure
7%
calibration
10%
carbon
13%
carbon dioxide
40%
chains
13%
chemistry
24%
collisions
9%
comparative evaluations
29%
concentration
15%
contraction
9%
conversion
23%
copolymers
7%
cost
9%
data
15%
density
36%
deposition
17%
design
7%
devices
10%
dissociation
9%
economics
11%
economy
12%
efficiency
11%
electrons
16%
emission
18%
energy
22%
energy efficiency
10%
environment
7%
equilibrium
11%
evaluation
8%
films
11%
flames
23%
fluids
11%
fourier transformation
7%
gases
41%
heating
14%
hydrogen
19%
impurities
8%
increasing
15%
indoors
8%
industry
10%
investigations
7%
kinetics
27%
lasers
15%
low pressure
9%
mechanical properties
11%
methane
17%
microwave discharges
11%
microwave radiation
22%
mixtures
18%
modeling
24%
molecules
10%
oils
12%
optimization
8%
organic compounds
7%
oxidation
7%
oxygen
12%
packaging
19%
performance
22%
perovskites
9%
phosphorus
7%
plasma
100%
plastics
63%
polyethylenes
36%
polymers
19%
polyolefins
19%
polypropylene
19%
polyurethanes
8%
power
12%
power density
7%
processing
20%
production
16%
pyrolysis
21%
quenching
9%
range
10%
reaction kinetics
7%
reactors
23%
recycling
57%
reduction
9%
reviews
7%
simulation
26%
size
7%
solutions
12%
sorting
9%
spectroscopy
19%
stability
8%
streams
13%
surfaces
14%
synthesis
13%
thermoplastics
9%
transport
14%
tuning
9%
values
13%
volatility
7%
wastes
35%
yields
10%
Keyphrases
Atmospheric Pressure
6%
Calibration-free Laser-induced Breakdown Spectroscopy (CF-LIBS)
6%
Chemical Kinetics
7%
Chemical Recycling
7%
Circular Economy
10%
Circularity
6%
Co-deposition
5%
CO2 Conversion
11%
CO2 Plasma
5%
Condensation Products
6%
Degradation Behavior
6%
Detonation
5%
Diagnostic Study
6%
Dissociation
7%
Double Perovskite
6%
Electron Density
5%
Electron Temperature
5%
Energy Efficiency
12%
Energy Transfer
6%
Environmental Impact
6%
Eunomia
6%
Flame Retardant
15%
Flexible Plastics
6%
Fluid Modeling
7%
Fokker-Planck
6%
Fourier Transform Spectroscopy
6%
Gas Heating
13%
Gas Temperature
16%
High Temperature
5%
High-density Polyethylene
16%
Impurities
7%
Indoor Chemistry
5%
Low Pressure
9%
Low-density Polyethylene
7%
Magnum-PSI
6%
Material Flow Analysis
7%
Mechanical Properties
12%
Mechanical Recycling
28%
Methane Dry Reforming
7%
Microwave Discharge
11%
Microwave Plasma
23%
Mid-infrared
10%
Mixed Plastic Waste
6%
Morphological Properties
6%
Nitrogen Fixation
7%
Physicochemical Properties
6%
Plasma Analysis
6%
Plasma Catalysis
5%
Plasma Chemistry
6%
Plasma Reactor
10%
Plastic Circularity
7%
Plastic Packaging Waste
6%
Plastic Recycling
24%
Plastic Waste
8%
Plastic Waste Streams
8%
Polyethylene
8%
Polyethylene Blends
6%
Polyethylene Terephthalate
7%
Polyolefin Blends
6%
Polyolefins
15%
Polypropylene
19%
Post-consumer
11%
Power Density
6%
Pyrolysis
16%
Pyrolysis Oil
8%
Reactor
11%
Reactor Performance
7%
Recyclability
6%
Recycled Materials
5%
Recycling Process
12%
Recycling Rate
5%
Recycling Technology
8%
Rotational Temperature
5%
Supercontinuum
6%
Supercontinuum Source
7%
Systematic Comparison
6%
Thermo-oxidative Stability
5%
Thermoplastic Polyurethane
6%
Thermosets
5%
Uncertainty Quantification
6%
Vibrational Excitation
6%
Vibrational Kinetics
6%
Vibrational Temperature
9%
Volatile Organic Compounds
6%
Engineering
Atmospheric Aerosol
6%
Atmospheric Pressure
7%
Circularity
9%
CO2 Conversion
10%
Cross Section
6%
Density Polyethylene
12%
Dry Reforming
7%
Electric Field
5%
Electron Energy
5%
Energy Efficiency
10%
Gas Temperature
9%
Low Density Poly-Ethylene
11%
Material Flow Analysis
7%
Methane
13%
Microwave Plasma
11%
Nonequilibrium
12%
Plasma Reactor
9%
Plastic Recycling
8%
Polyolefin
19%
Polyurethan
5%
Power Density
6%
Pyrolysis
15%
Rate Constant
7%
Recyclate
6%
Recycled Material
5%
Recycling Process
12%
Recycling Rate
6%
Rotational
9%
Tokamak Device
6%
Uncertainty Quantification
6%