1 - 9 |
Laboratory verification of a new high flow differential mobility particle sizer, and field measurements in Hyytiala Kangasluoma J, Ahonen LR, Laurila TM, Cai RL, Enroth J, Mazon SB, Korhonen F, Aalto PP, Kulmala M, Attoui M, Petaja T |
10 - 16 |
An improved atomizer with high output of nanoparticles Tang M, Chen SC, Pui DYH |
17 - 29 |
Optimizing aerodynamic lenses for single-particle imaging Roth N, Awel S, Horke DA, Kupper J |
30 - 40 |
Characteristics of tire wear particles generated in a laboratory simulation of tire/road contact conditions Park I, Kim H, Lee S |
41 - 53 |
The impact of voltage and flow on the electrostatic soot sensor and the implications for its use as a diesel particulate filter monitor Maricq MM, Bilby D |
54 - 67 |
Performance of personal electrostatic bioaerosol sampler (PEBS) when collecting airborne microorganisms Han TT, Thomas NM, Mainelis G |
68 - 82 |
Modeling the formation of traditional and non-traditional secondary organic aerosols from in-use, on-road gasoline and diesel vehicles exhaust Esmaeilirad S, Hosseini V |
83 - 94 |
Particle precipitation by bipolar corona discharge ion winds Dau VT, Dinh TX, Tran CD, Terebessy T, Duc TC, Bui TT |
95 - 111 |
Particle nucleation-accumulation mode trade-off: A second diesel dilemma? Reijnders J, Boot M, de Goey P |
112 - 121 |
Effect of shielding gas temperature on the welding fume particle formation: Theoretical model Vishnyakov VI, Kiro SA, Oprya MV, Ennan AA |
122 - 132 |
Relationship between laser light scattering and physical properties of airborne pollen Matsuda S, Kawashima S |
133 - 145 |
A numerical study of electric force effects on detachment and deposition of particles due to a falling disk Malekian D, Sajadi B, Ahmadi G, Pirhadi M |
146 - 159 |
Simulation of nanoparticle panetration through mesh screens using a hybrid lattice-Boltzmann Lagrangian method and comparison with experiments Lin KC, Tsai JS |