Predicting tropospheric cloud formation and subsequent nutrient deposition relies on understanding the sources and processes affecting aerosol constituents of the atmosphere that are preserved in cloud water. However, this challenge is difficult to address quantitatively based on the sole use of bulk chemical properties. Nitrogenous aerosols, mainly ammonium (NH4+) and nitrate (NO3-), play a particularly important role in tropospheric cloud formation. While dry and wet (mainly rainfall) deposition of NH4+ and NO(3)(- )are regularly assessed, cloud water deposition is often underappreciated. Here we collected cloud water samples at the summit of Mt. Tai (1545 m above sea level) in eastern China during a long-lasting biomass burning (BB) even...
While dry and rain deposition of nitrate (NO3−) and ammonium (NH4+) are regularly assessed, fog depo...
The characterization of N isotopes in NO(3) is an effective method to determine NO(3) sources and NO...
The rise of ammonia emissions in Asia is predicted to increase radiative cooling and air pollution p...
Nitrogen-containing species are major components in atmospheric aerosols. However, little is known a...
Nitrate, as one of the major components of tropospheric aerosols, plays a crucial role in winter haz...
To constrain sources of anthropogenic nitrogen (N) deposition is critical for effective reduction of...
National Science Council, Taiwan; National Natural Science Foundation of China [NSFC 2014CB953702, 4...
Due to the intense release of reactive nitrogen (Nr) from anthropogenic activity, the source layout ...
Nitrogen oxides (NO<sub><i>x</i></sub>, including NO and NO<sub>2</sub>) play an important role in t...
Emission of reactive nitrogen species has a major impact on atmospheric chemistry, ecosystem and hum...
Nitrogen isotope (δ15N) has been employed to differentiate major sources of atmospheric N. However, ...
Atmospheric fine-particle (PM 2 . 5 ) pollution is fre- quently associated with the formation of par...
The reduction of ammonia (NH<sub>3</sub>) emissions is urgently needed due to its role in aerosol nu...
While dry and rain deposition of nitrate (NO3-) and ammonium (NH4+) are regularly assessed, fog depo...
During events of particle pollution, especially at springtime, ammonium nitrate (NH4NO3) often displ...
While dry and rain deposition of nitrate (NO3−) and ammonium (NH4+) are regularly assessed, fog depo...
The characterization of N isotopes in NO(3) is an effective method to determine NO(3) sources and NO...
The rise of ammonia emissions in Asia is predicted to increase radiative cooling and air pollution p...
Nitrogen-containing species are major components in atmospheric aerosols. However, little is known a...
Nitrate, as one of the major components of tropospheric aerosols, plays a crucial role in winter haz...
To constrain sources of anthropogenic nitrogen (N) deposition is critical for effective reduction of...
National Science Council, Taiwan; National Natural Science Foundation of China [NSFC 2014CB953702, 4...
Due to the intense release of reactive nitrogen (Nr) from anthropogenic activity, the source layout ...
Nitrogen oxides (NO<sub><i>x</i></sub>, including NO and NO<sub>2</sub>) play an important role in t...
Emission of reactive nitrogen species has a major impact on atmospheric chemistry, ecosystem and hum...
Nitrogen isotope (δ15N) has been employed to differentiate major sources of atmospheric N. However, ...
Atmospheric fine-particle (PM 2 . 5 ) pollution is fre- quently associated with the formation of par...
The reduction of ammonia (NH<sub>3</sub>) emissions is urgently needed due to its role in aerosol nu...
While dry and rain deposition of nitrate (NO3-) and ammonium (NH4+) are regularly assessed, fog depo...
During events of particle pollution, especially at springtime, ammonium nitrate (NH4NO3) often displ...
While dry and rain deposition of nitrate (NO3−) and ammonium (NH4+) are regularly assessed, fog depo...
The characterization of N isotopes in NO(3) is an effective method to determine NO(3) sources and NO...
The rise of ammonia emissions in Asia is predicted to increase radiative cooling and air pollution p...