Soot morphology evolution in the flame. Left: mean aggregate size D p

Soot morphology evolution in the flame. Left: mean aggregate size D p

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Representative TEM images showing the evolution of soot morphology in

Biofuel Combustion Generated Particles Analysis

Effect of methane addition to ethylene on the morphology and size distribution of soot in a laminar co-flow diffusion flame - ScienceDirect

Experimental study on soot formation and primary particle size in oxy-combustion ethylene diffusion flames under CO2 substitution for N2 - ScienceDirect

AMT - Importance of size representation and morphology in modelling optical properties of black carbon: comparison between laboratory measurements and model simulations

CO emission versus engine load. IMEP: indicated mean effective

Maria BOTERO, Professor, PhD Chemical Engineering

Full article: Understanding soot particle size evolution in laminar ethylene/air diffusion flames using novel soot coalescence models