During slagging combustion/gasification of solid fuels, particles move toward the film of slag covering the reactor walls, establishing a very complex multiphase particle–wall interaction. This study aims to improve the understanding of the different char–slag micromechanical interaction patterns which occur in the near-wall region, on the basis of the stickiness of both the wall layer and the impinging char particle. A 0.10 m-ID lab-scale cold entrained-flow reactor (length 0.1–0.6 m), optically accessible, and equipped with a nozzle whence molten wax is atomized into a mainstream of air, is used to mimic, at atmospheric conditions, the near-wall fate of char/ash particles in entrained-flow gasifiers. The flow and segregation patterns are ...
This paper reports on preliminary results of an experimental investigation aimed at the development ...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
During slagging combustion/gasification of solid fuels, particles move toward the film of slag cover...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
Particle–wall interaction is relevant to the performance of entrained-flow slagging gasifiers. Diffe...
This paper deals with near-wall particle segregation phenomena in entrained-flow slagging coal gasif...
Particle–wall interaction phenomena relevant to multiphase flow in entrained-flow slagging coal gasi...
Combustion and gasification under slagging conditions are key aspects of the design of modern entrai...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Understanding the phenomenology and proper design of slagging entrained-flow gasifiers requires the ...
Entrained-flow slagging coal gasifiers display large conversion efficiencies and small levels of unc...
This paper aimed at the development of a phenomenological model of the fate of coal/ash particles in...
This paper reports on preliminary results of an experimental investigation aimed at the development ...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
During slagging combustion/gasification of solid fuels, particles move toward the film of slag cover...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
The slagging conditions occurring during combustion/gasification of solid fuels play a key role in t...
Particle–wall interaction is relevant to the performance of entrained-flow slagging gasifiers. Diffe...
This paper deals with near-wall particle segregation phenomena in entrained-flow slagging coal gasif...
Particle–wall interaction phenomena relevant to multiphase flow in entrained-flow slagging coal gasi...
Combustion and gasification under slagging conditions are key aspects of the design of modern entrai...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Understanding the phenomenology and proper design of slagging entrained-flow gasifiers requires the ...
Entrained-flow slagging coal gasifiers display large conversion efficiencies and small levels of unc...
This paper aimed at the development of a phenomenological model of the fate of coal/ash particles in...
This paper reports on preliminary results of an experimental investigation aimed at the development ...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...
Entrained-flow gasifiers are characterized by operating conditions that promote ash migration/deposi...