Atmospheric measurements showed rapid sulfate formation during severe haze episodes in China, with fine particulate matter (PM) consisting of a multi-component mixture that is dominated by organic species. Several recent studies using the thermodynamic model estimated the particle acidity and sulfate production rate, by treating the PM exclusively as a mixture of inorganic salts dominated by ammonium sulfate and neglecting the effects of organic compounds. Noticeably, the estimated pH and sulfate formation rate during pollution periods in China were highly conflicting among the previous studies. Here we show that a particle mixture of inorganic salts adopted by the previous studies does not represent a suitable model system and that the aci...
Fine-particle pollution associated with winter haze threatens the health of more than 400 million pe...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Atmospheric measurements showed rapid sulfate formation during severe haze episodes in China, with ...
Aerosol acidity plays an important role in atmospheric chemistry. China emits large amounts of SO2, ...
High levels of ammonia (NH3) have been suggested to elevate ambient particle pH levels to near neutr...
High levels of ammonia (NH3) have been suggested to elevate ambient particle pH levels to near neutr...
Sulfate aerosols exert profound impacts on human and ecosystem health, weather, and climate, but the...
Sulfate aerosols exert profound impacts on human and ecosystem health, weather, and climate, but the...
Although the anthropogenic emissions of SO2 have decreased significantly in China, the decrease in S...
Understanding the mechanism of haze formation is crucial for the development of deliberate pollution...
Discerning mechanisms of sulfate formation during fine-particle pollution (referred to as haze herea...
In recent years in a few Chinese megacities, fog events lasting one to a few days have been frequent...
Discerning mechanisms of sulfate formation during fine-particle pollution (referred to as haze herea...
Fine-particle pollution associated with winter haze threatens the health of more than 400 million pe...
Fine-particle pollution associated with winter haze threatens the health of more than 400 million pe...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Atmospheric measurements showed rapid sulfate formation during severe haze episodes in China, with ...
Aerosol acidity plays an important role in atmospheric chemistry. China emits large amounts of SO2, ...
High levels of ammonia (NH3) have been suggested to elevate ambient particle pH levels to near neutr...
High levels of ammonia (NH3) have been suggested to elevate ambient particle pH levels to near neutr...
Sulfate aerosols exert profound impacts on human and ecosystem health, weather, and climate, but the...
Sulfate aerosols exert profound impacts on human and ecosystem health, weather, and climate, but the...
Although the anthropogenic emissions of SO2 have decreased significantly in China, the decrease in S...
Understanding the mechanism of haze formation is crucial for the development of deliberate pollution...
Discerning mechanisms of sulfate formation during fine-particle pollution (referred to as haze herea...
In recent years in a few Chinese megacities, fog events lasting one to a few days have been frequent...
Discerning mechanisms of sulfate formation during fine-particle pollution (referred to as haze herea...
Fine-particle pollution associated with winter haze threatens the health of more than 400 million pe...
Fine-particle pollution associated with winter haze threatens the health of more than 400 million pe...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...
Sulfate, nitrate and ammonium are the most abundant secondary inorganic aerosols (SIA) in atmospheri...