화학공학소재연구정보센터
Journal of Aerosol Science, Vol.88, 159-181, 2015
Effects of aggregate morphology and size on laser-induced incandescence and scattering from black carbon (mature soot)
We have used a Single-Particle Soot Photometer (SP2) to measure time-resolved laser-induced incandescence (LII) and laser scatter from combustion-generated mature soot with a fractal dimension of 1.88 extracted from a burner. We have also made measurements on restructured mature-soot particles with a fractal dimension of 2.3-2A. We reproduced the LII and laser scatter temporal profiles with an energy- and mass balance model, which accounted for heating of particles passed through a CW-laser beam over laser particle interaction times of 10 is, The results demonstrate a strong influence of aggregate size and morphology on LII and scattering signals. Conductive cooling competes with absorptive heating on these time scales; the effects are reduced with increasing aggregate size and fractal dimension. These effects can lead to a significant delay in the onset of the LII signal and may explain an apparent low bias in the SP2 measurements for small particle sizes, particularly for fresh, mature soot. The results also reveal significant perturbations to the measured scattering signal from LII interference and suggest rapid expansion of the aggregates during sublimation. (C) 2015 The Authors. Published by Elsevier Ltd.