1 |
Effects of adding cyclohexane, n-hexane, ethanol, and 2,5-dimethylfuran to fuel on soot formation in laminar coflow n-heptane/iso-octane diffusion flame Chu HQ, Ya YC, Nie XK, Qiao F, Jiaqiang E Combustion and Flame, 225, 120, 2021 |
2 |
Laser-induced structural modifications of differently aged soot investigated by HRTEM Apicella B, Pre P, Rouzaud JN, Abrahamson J, Vander Wal RL, Ciajolo A, Tregrossi A, Russo C Combustion and Flame, 204, 13, 2019 |
3 |
Structure-reactivity study of model and Biodiesel soot in model DPF regeneration conditions Zhang HL, Pereira O, Legros G, Iojoiu EE, Galvez ME, Chen YQ, Da Costa P Fuel, 239, 373, 2019 |
4 |
Soot morphology and nanostructure in complex flame flow patterns via secondary particle surface growth Davis J, Tiwari K, Novosselov I Fuel, 245, 447, 2019 |
5 |
Particle formation during pressurized entrained flow gasification of wood powder: Effects of process conditions on chemical composition, nanostructure, and reactivity Wiinikka H, Toth P, Jansson K, Molinder R, Brostrom M, Sandstrom L, Lighty JS, Weiland F Combustion and Flame, 189, 240, 2018 |
6 |
The soot particle formation process inside the piston bowl of a small-bore diesel engine Zhang YL, Kim D, Rao LZ, Zhang RL, Kook S, Kim KS, Kweon CB Combustion and Flame, 185, 278, 2017 |
7 |
Effects of butanol isomers additions on soot nanostructure and reactivity in normal and inverse ethylene diffusion flames Ying YY, Liu D Fuel, 205, 109, 2017 |
8 |
Reactivity and structure of soot generated at varying biofuel content and engine operating parameters Ess MN, Bladt H, Muhlbauer W, Seher SI, Zollner C, Lorenz S, Bruggemann D, Nieken U, Ivleva NP, Niessner R Combustion and Flame, 163, 157, 2016 |
9 |
Analysis of the chemical features of particles generated from ethylene and ethylene/2,5 dimethyl furan flames Russo C, D'Anna A, Ciajolo A, Sirignano M Combustion and Flame, 167, 268, 2016 |
10 |
Partial premixing effects upon soot nanostructure Huang CH, Vander Wal RL Combustion and Flame, 168, 403, 2016 |