Environmental Physics in University of Tartu
Environmental Physics in University of Tartu
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Diurnal evolution of negative atmospheric ions above the boreal forest: from ground level to the free troposphere
Quiet New Particle Formation in the Atmosphere
Terpene emissions from boreal wetlands can initiate stronger atmospheric new particle formation than boreal forests
Molecular Composition of Oxygenated Organic Molecules and Their Contributions to Organic Aerosol in Beijing
The Synergistic Role of Sulfuric Acid, Bases, and Oxidized Organics Governing New-Particle Formation in Beijing
Is reducing new particle formation a plausible solution to mitigate particulate air pollution in Beijing and other Chinese megacities?
Role of iodine oxoacids in atmospheric aerosol nucleation
Particle growth with photochemical age from new particle formation to haze in the winter of Beijing, China
Refined classification and characterization of atmospheric new-particle formation events using air ions
The role of H2SO4-NH3 anion clusters in ion-induced aerosol nucleation mechanisms in the boreal forest
Observations of biogenic ion-induced cluster formation in the atmosphere
Influence of temperature on the molecular composition of ions and charged clusters during pure biogenic nucleation
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