A compact experimental setup that integrates laser-induced incandescence (LII) and one-angle elastic light scattering (1A-ELS) to measure the size of polydisperse soot aggregates is described. A 532 nm laser and a detection angle of 35 degrees were employed, which provided sensitivity for aggregate radius of gyrations (R g) of R g 200 nm. Both lognormal and self-preserving distribution functions are compared with width parameters derived from both aggregation theory and transmission electron microscopy (TEM) measurements. Using these distributions, mean aggregate sizes derived from the scattering measurements are compared. The LII+1A-ELS technique is validated with a two-angle elastic light scattering (2A-ELS) approach with an additional de...
International audienceIt is well established that soot particles are harmful to the environment and ...
Laser-induced incandescence (LII) is a versatile technique for quantitative soot measurements in fla...
A major shortcoming of LII is its inability to measure soot aggregate properties. Elastic light scat...
Laser-induced incandescence, LII, is a laser-diagnostic technique that can be used to measure the vo...
Time-Resolved Laser-Induced Incandescence (TR-LII) uses a high-energy laser pulse to detect airborne...
Soot is very harmful to the human health, which has drawn increasing attention. It has been shown th...
Laser-induced incandescence (LII) is a powerful and robust optical method for in situ determination ...
National audienceIn-situ laser-based measurement of soot size distribution is a complex task, especi...
A new combination of soot diagnostics employing two-angle elastic light scattering and laser-induced...
AbstractWe have used a Single-Particle Soot Photometer (SP2) to measure time-resolved laser-induced ...
This work investigates the capability of multi-angle light scattering to determine polydisperse aggr...
ii Author’s Declaration I hereby declare that I am the sole author of this thesis. This is a true co...
Measurements of soot properties by means of laser-induced incandescence (LII) and combined scatterin...
International audienceInformation about the polydispersity of soot can in principle be gained from t...
Laser-induced incandescence (LII) as a diagnostic technique is based on rapid heating of soot partic...
International audienceIt is well established that soot particles are harmful to the environment and ...
Laser-induced incandescence (LII) is a versatile technique for quantitative soot measurements in fla...
A major shortcoming of LII is its inability to measure soot aggregate properties. Elastic light scat...
Laser-induced incandescence, LII, is a laser-diagnostic technique that can be used to measure the vo...
Time-Resolved Laser-Induced Incandescence (TR-LII) uses a high-energy laser pulse to detect airborne...
Soot is very harmful to the human health, which has drawn increasing attention. It has been shown th...
Laser-induced incandescence (LII) is a powerful and robust optical method for in situ determination ...
National audienceIn-situ laser-based measurement of soot size distribution is a complex task, especi...
A new combination of soot diagnostics employing two-angle elastic light scattering and laser-induced...
AbstractWe have used a Single-Particle Soot Photometer (SP2) to measure time-resolved laser-induced ...
This work investigates the capability of multi-angle light scattering to determine polydisperse aggr...
ii Author’s Declaration I hereby declare that I am the sole author of this thesis. This is a true co...
Measurements of soot properties by means of laser-induced incandescence (LII) and combined scatterin...
International audienceInformation about the polydispersity of soot can in principle be gained from t...
Laser-induced incandescence (LII) as a diagnostic technique is based on rapid heating of soot partic...
International audienceIt is well established that soot particles are harmful to the environment and ...
Laser-induced incandescence (LII) is a versatile technique for quantitative soot measurements in fla...
A major shortcoming of LII is its inability to measure soot aggregate properties. Elastic light scat...