Black carbon (BC) particles in snow can significantly reduce the snow albedo and enhance the absorption of solar radiation, with important impacts on climate and the hydrological cycle. A field campaign was carried out to measure the BC content in seasonal snow in Qinghai and Xinjiang provinces of western China, in January and February 2012. 284 snow samples were collected at 38 sites, 6 in Qinghai and 32 in Xinjiang. The observational results at the sites in Xinjiang, where the absorbing impurities in snow are dominated by BC particles, are reported in this work. The BC mass fractions in seasonal snow across northern Xinjiang have a median value of ⇠70 ng g1, much lower than those in northeast China. The estimated concentration of BC at th...
Black carbon (BC) aerosol at high altitudes of the Qinghai-Tibetan Plateau has potential effects on ...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon ...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...
Light-absorbing impurities (LAIs, e.g. black carbon (BC), organic carbon (OC), mineral dust (MD)) de...
The amount of black carbon (BC) on snow surface can significantly reduce snow surface albedo in the ...
In Beijing, the probability of snowfall is decreasing as a result of global warming. At the same tim...
In the Tibetan Plateau, the black carbon (BC) concentration in surface snow and snow pits has receiv...
Snow cover plays a key role for sustaining ecology and society in mountainous regions. Light-absorbi...
Black carbon (BC) in snow in the Himalayas has recently attracted considerable interest due to its i...
International audienceBlack carbon (BC) in snow in the Himalayas has recently attracted considerable...
The Tenth Symposium on Polar Science/Ordinary sessions: [OM] Polar Meteorology and Glaciology, Thu. ...
Light-absorbing aerosol - particularly elemental carbon (EC) - while mixed with snow and ice is an i...
Short-lived climate forcers have been proven important both for the climate and human health. In par...
Black carbon (BC) aerosol at high altitudes of the Qinghai-Tibetan Plateau has potential effects on ...
Black carbon (BC) is one of the most important climate pollutants due to its strong positive radiati...
Black carbon (BC) aerosol at high altitudes of the Qinghai-Tibetan Plateau has potential effects on ...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon ...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...
Light-absorbing impurities (LAIs, e.g. black carbon (BC), organic carbon (OC), mineral dust (MD)) de...
The amount of black carbon (BC) on snow surface can significantly reduce snow surface albedo in the ...
In Beijing, the probability of snowfall is decreasing as a result of global warming. At the same tim...
In the Tibetan Plateau, the black carbon (BC) concentration in surface snow and snow pits has receiv...
Snow cover plays a key role for sustaining ecology and society in mountainous regions. Light-absorbi...
Black carbon (BC) in snow in the Himalayas has recently attracted considerable interest due to its i...
International audienceBlack carbon (BC) in snow in the Himalayas has recently attracted considerable...
The Tenth Symposium on Polar Science/Ordinary sessions: [OM] Polar Meteorology and Glaciology, Thu. ...
Light-absorbing aerosol - particularly elemental carbon (EC) - while mixed with snow and ice is an i...
Short-lived climate forcers have been proven important both for the climate and human health. In par...
Black carbon (BC) aerosol at high altitudes of the Qinghai-Tibetan Plateau has potential effects on ...
Black carbon (BC) is one of the most important climate pollutants due to its strong positive radiati...
Black carbon (BC) aerosol at high altitudes of the Qinghai-Tibetan Plateau has potential effects on ...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon ...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...