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kd's content
Model Fig. 8 and Fig. 9
- Ammonia synthesis by plasma catalysis in an atmospheric RF helium plasma
Ammonia synthesis by plasma catalysis in an atmospheric RF helium plasma
The in-plasma-catalytic synthesis of ammonia from nitrogen and hydrogen admixed to a helium RF plasma is studied with infrared absorption spectroscopy, optical emission spectroscopy, and through chemical kinetics modeling. Sandblasted glass is...
Animation EHD_x force
- Plasma and flow simulation of a surface barrier discharge used for gas conversion benchmarked by Schlieren imaging
Plasma and flow simulation of a surface barrier discharge used for gas conversion benchmarked by Schlieren imaging
Surface dielectric barrier discharges (sDBD) are efficient and scalable plasma sources for plasma-based gas conversion. One prominent feature of an sDBD in this application is its ionic wind, which exerts a force on the neutrals, thus leading to...
- 2x zip
Animation electron density
- Plasma and flow simulation of a surface barrier discharge used for gas conversion benchmarked by Schlieren imaging
SFB TR 87
The SFB-TR 87 combines the expertise in the areas of plasma physics / plasma technology, materials science / surface engineering and interfacial chemistry. On this basis, ternary or quaternary ceramic layer systems on metal substrates with...
Carbon2Chem
The project team analyses how emissions from steel production can be feasibly deployed. Steel mill gases created during steel production make a major contribution to the unpopular CO2 emissions. The project involving researchers at RUB aims to...
Controlled synthesis of NO in an Atmospheric Pressure Plasma by suppressing NO destruction channels by plasma catalysis
NO synthesis using plasma catalysis is analyzed in a parallel-plate atmospheric pressure RF plasma from N$_2$/O$_2$ admixed to helium exposed to Fe and Pt catalysts on a SiO$_2$ support. The NO$_x$ species are measured by Fourier-transform...
- 4x txt
FTIR data mixture variation different catalyst 120 deg
- Controlled synthesis of NO in an Atmospheric Pressure Plasma by suppressing NO destruction channels by plasma catalysis