Atmospheric aging appears to alter physical and chemical properties of mineral dust aerosol and thus its role as reactive surface in the troposphere. Yet, previous studies in the atmosphere have mainly focused on the pristine surfaces of mineral dust aerosol, and the reactivity of aged mineral dust toward atmospheric trace gases is poorly recognized. This work presents the first laboratory investigation of heterogeneous reactions of gaseous hydrogen peroxide (H2O2), an important atmospheric oxidant, on the surfaces of HNO3 and SO2-processed calcium carbonate particles as surrogates of atmospheric mineral dust aged by acidic trace gases. It is found that the processing of the calcium carbonate particles with HNO3 and SO2 has a strong impact ...
With increasing NO2 concentration in the troposphere, the importance of NO2 reaction with mineral du...
Mineral dust, one of the most abundant aerosols by mass in the atmosphere, may have a lasting but to...
International audienceThis study presents the first laboratory observation of HNO3 uptake by airborn...
Atmospheric aging and processing appears to alter physical and chemical properties of mineral dust a...
Recent studies have shown that heterogeneous reactions of hydrogen peroxide (H2O2) on aerosol surfac...
Heterogeneous reaction of SO2 on mineral dust seems to be an important sink for SO2. However, kineti...
Heterogeneous reactions of mineral dust aerosol with trace gases in the atmosphere could directly an...
Heterogeneous reaction of SO<sub>2</sub> on mineral dust seems to be an important sink for SO<sub>2<...
Hydrogen peroxide (H2O2) and organic peroxides play important roles in the cycle of oxidants and the...
Hydrogen peroxide (H2O2) is an important atmospheric oxidant that can serve as a sensitive indicator...
Heterogeneous reaction of NO2 on the surface of mineral dust particles could change the chemical com...
Heterogeneous oxidation of oxygenated volatile organic compounds (OVOCs) serves as an important sink...
Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) and organic peroxides play important roles in the cyc...
Mineral dust, one of the most abundant aerosols by mass in the atmosphere, may have a lasting but to...
A considerable amount of mineral dust is circulating in the atmosphere. The chemistry of mineral dus...
With increasing NO2 concentration in the troposphere, the importance of NO2 reaction with mineral du...
Mineral dust, one of the most abundant aerosols by mass in the atmosphere, may have a lasting but to...
International audienceThis study presents the first laboratory observation of HNO3 uptake by airborn...
Atmospheric aging and processing appears to alter physical and chemical properties of mineral dust a...
Recent studies have shown that heterogeneous reactions of hydrogen peroxide (H2O2) on aerosol surfac...
Heterogeneous reaction of SO2 on mineral dust seems to be an important sink for SO2. However, kineti...
Heterogeneous reactions of mineral dust aerosol with trace gases in the atmosphere could directly an...
Heterogeneous reaction of SO<sub>2</sub> on mineral dust seems to be an important sink for SO<sub>2<...
Hydrogen peroxide (H2O2) and organic peroxides play important roles in the cycle of oxidants and the...
Hydrogen peroxide (H2O2) is an important atmospheric oxidant that can serve as a sensitive indicator...
Heterogeneous reaction of NO2 on the surface of mineral dust particles could change the chemical com...
Heterogeneous oxidation of oxygenated volatile organic compounds (OVOCs) serves as an important sink...
Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) and organic peroxides play important roles in the cyc...
Mineral dust, one of the most abundant aerosols by mass in the atmosphere, may have a lasting but to...
A considerable amount of mineral dust is circulating in the atmosphere. The chemistry of mineral dus...
With increasing NO2 concentration in the troposphere, the importance of NO2 reaction with mineral du...
Mineral dust, one of the most abundant aerosols by mass in the atmosphere, may have a lasting but to...
International audienceThis study presents the first laboratory observation of HNO3 uptake by airborn...