While the formation and growth of soot particles has received much attention, the subsequent destruction of the particles is less well understood. Soot particles are destroyed though two parallel processes: oxidation and fragmentation. Oxidation is the removal of mass from particles due to chemical reactions with molecular oxygen and hydroxyl radicals. Fragmentation is the break-up of large aggregates into smaller aggregates. Here, a new model for fragmentation inspired by previous experimental investigations is proposed and formulated within the Hybrid Method of Moments (HMOM). With the formulation, the rate of particle loss due to oxidation is closed, resolving a long-standing problem with the Method of Moments. Less important, secondary ...
A detailed kinetic mechanism of aromatic growth and particulate formation is presented, and it is te...
A laser light scattering/extinction method has been used to examine the evolution of soot particles ...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...
While the formation and growth of soot particles has received much attention, the subsequent destruc...
In this study, three different oxidation-driven soot aggregate fragmentation models with 1:1, 2:1, a...
In this work soot oxidation induced-fragmentation is modeled by using a Multi-Sectional approach. Th...
The first goal of this thesis is to develop and validate a modeling tool into which fundamental comb...
A detailed kinetic mechanism of aromatic growth, particulate formation, and oxidation is presented a...
Increasingly comprehensive soot morphology data has allowed for valuation of advanced soot models. T...
Oxidation of carbonaceous materials in flames is a key phenomenon in determining the final emissio...
International audienceThe formation of soot in actual combustion systems involves several complex pr...
In this work, the role of volatile organic compounds (VOCs) in soot oxidation and fragmentation was ...
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the ...
A detailed kinetic mechanism is developed that includes aromatic growth and particulate formation. T...
In the present work a detailed kinetic soot model is applied to study the formation and oxidation of...
A detailed kinetic mechanism of aromatic growth and particulate formation is presented, and it is te...
A laser light scattering/extinction method has been used to examine the evolution of soot particles ...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...
While the formation and growth of soot particles has received much attention, the subsequent destruc...
In this study, three different oxidation-driven soot aggregate fragmentation models with 1:1, 2:1, a...
In this work soot oxidation induced-fragmentation is modeled by using a Multi-Sectional approach. Th...
The first goal of this thesis is to develop and validate a modeling tool into which fundamental comb...
A detailed kinetic mechanism of aromatic growth, particulate formation, and oxidation is presented a...
Increasingly comprehensive soot morphology data has allowed for valuation of advanced soot models. T...
Oxidation of carbonaceous materials in flames is a key phenomenon in determining the final emissio...
International audienceThe formation of soot in actual combustion systems involves several complex pr...
In this work, the role of volatile organic compounds (VOCs) in soot oxidation and fragmentation was ...
A detailed model of soot formation is proposed, which consists of a gas-phase kinetic model for the ...
A detailed kinetic mechanism is developed that includes aromatic growth and particulate formation. T...
In the present work a detailed kinetic soot model is applied to study the formation and oxidation of...
A detailed kinetic mechanism of aromatic growth and particulate formation is presented, and it is te...
A laser light scattering/extinction method has been used to examine the evolution of soot particles ...
A detailed kinetic mechanism of soot formation and oxidation is revised and extended to include temp...