Interest in understanding gas-to-particle phase transformation in several disciplines such as at-mospheric sciences, material synthesis, and combustion has led to the development of several distinct instruments that can measure the particle size distributions down to the sizes of large molecules and molecular clusters, at which the initial particle formation and growth takes place. These instruments, which include the condensation particle counter battery, a variety of electrical mobility spectrometers and the particle size magnifier, have been usually characterized in lab-oratory experiments using carefully prepared calibration aerosols. They are then applied, alone or in combination, to study the gas-to-particle transition in experiments ...
International audienceScanning Mobility Particle Sizer (SMPS) is a high resolution nanoparticle sizi...
Rapid measurement of submicron particle size distributions enables the characterization of aerosols ...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...
Measurements of aerosol particles and clusters smaller than 3 nm in diameter are performed by many g...
Modern techniques used for particle sizing in the 0.1 to 1 μm transition range are based on diffe...
Number size distributions of airborne particles are relevant to a number of fields including atmosph...
The measurement of particle number size distributions is one of the most important tasks describing ...
The aim of this study was to establish traceable number concentration measurements of airborne parti...
We evaluated a newly developed Portable Aerosol Collector and Spectrometer (PACS) in the laboratory....
The number of experiments characterizing sub-3 nm aerosol particle dynamics has increased significan...
Differential mobility particle size spectrometers (DMPSs)are widely used to measure the aerosol numb...
The most important parameters describing the atmospheric new particle formation process are the part...
When studying new particle formation, the uncertainty in determining the "true" nucleation rate is c...
Several different types of measurements of particle size and concentration were compared during the ...
International audienceScanning Mobility Particle Sizer (SMPS) is a high resolution nanoparticle sizi...
Rapid measurement of submicron particle size distributions enables the characterization of aerosols ...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...
Measurements of aerosol particles and clusters smaller than 3 nm in diameter are performed by many g...
Modern techniques used for particle sizing in the 0.1 to 1 μm transition range are based on diffe...
Number size distributions of airborne particles are relevant to a number of fields including atmosph...
The measurement of particle number size distributions is one of the most important tasks describing ...
The aim of this study was to establish traceable number concentration measurements of airborne parti...
We evaluated a newly developed Portable Aerosol Collector and Spectrometer (PACS) in the laboratory....
The number of experiments characterizing sub-3 nm aerosol particle dynamics has increased significan...
Differential mobility particle size spectrometers (DMPSs)are widely used to measure the aerosol numb...
The most important parameters describing the atmospheric new particle formation process are the part...
When studying new particle formation, the uncertainty in determining the "true" nucleation rate is c...
Several different types of measurements of particle size and concentration were compared during the ...
International audienceScanning Mobility Particle Sizer (SMPS) is a high resolution nanoparticle sizi...
Rapid measurement of submicron particle size distributions enables the characterization of aerosols ...
Aerosol science and technology enable continual advances in material synthesis and atmospheric pollu...