Light-absorbing impurities (LAIs, e.g. black carbon (BC), organic carbon (OC), mineral dust (MD)) deposited on snow cover reduce albedo and accelerate its melting. Northern Xinjiang (NX) is an arid and semi-arid inland region, where snowmelt leads to frequent floods that have been a serious threat to local ecological security. There is still a lack of quantitative assessments of the effects of LAIs on snowmelt in the region. This study investigates spatial variations of LAIs in snow and its effect on snow albedo, radiative forcing (RF) and snowmelt across NX. Results showed that concentrations of BC, OC (only water-insoluble OC), MD ranged from 32 to 8841 ng g(-1), 77 to 8568 ng g(-1) and 0.46 to 236 mu g g(-1) respectively. Weather Researc...
Using field observation, we perform radiative transfer calculations on snowpacks in the Arctic, Chin...
Light-absorbing impurities (LAIs) deposited in snow have the potential to substantially affect the ...
Abstract We estimate the snow albedo forcing and direct radiative forcing (DRF) of black carbon (BC)...
Light-absorbing impurities (LAIs, e.g. black carbon (BC), organic carbon (OC), mineral dust (MD)) de...
Black carbon (BC) particles in snow can significantly reduce the snow albedo and enhance the absorpt...
Snow cover plays a key role for sustaining ecology and society in mountainous regions. Light-absorbi...
Light‐absorbing impurities (LAIs) in snow of the southeastern Tibetan Plateau (TP) and their climati...
Light-absorbing impurities (LAIs) in surface snow and snow pits together with LAIs’ concentrations a...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...
The amount of black carbon (BC) on snow surface can significantly reduce snow surface albedo in the ...
Black carbon (BC), also known as soot, has been identified as the second most important anthropogeni...
Black carbon (BC) in snow in the Himalayas has recently attracted considerable interest due to its i...
In the Tibetan Plateau, the black carbon (BC) concentration in surface snow and snow pits has receiv...
Thesis (Master's)--University of Washington, 2014Commonly found light-absorbing particulates (LAPs) ...
International audienceBlack carbon (BC) in snow in the Himalayas has recently attracted considerable...
Using field observation, we perform radiative transfer calculations on snowpacks in the Arctic, Chin...
Light-absorbing impurities (LAIs) deposited in snow have the potential to substantially affect the ...
Abstract We estimate the snow albedo forcing and direct radiative forcing (DRF) of black carbon (BC)...
Light-absorbing impurities (LAIs, e.g. black carbon (BC), organic carbon (OC), mineral dust (MD)) de...
Black carbon (BC) particles in snow can significantly reduce the snow albedo and enhance the absorpt...
Snow cover plays a key role for sustaining ecology and society in mountainous regions. Light-absorbi...
Light‐absorbing impurities (LAIs) in snow of the southeastern Tibetan Plateau (TP) and their climati...
Light-absorbing impurities (LAIs) in surface snow and snow pits together with LAIs’ concentrations a...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...
The amount of black carbon (BC) on snow surface can significantly reduce snow surface albedo in the ...
Black carbon (BC), also known as soot, has been identified as the second most important anthropogeni...
Black carbon (BC) in snow in the Himalayas has recently attracted considerable interest due to its i...
In the Tibetan Plateau, the black carbon (BC) concentration in surface snow and snow pits has receiv...
Thesis (Master's)--University of Washington, 2014Commonly found light-absorbing particulates (LAPs) ...
International audienceBlack carbon (BC) in snow in the Himalayas has recently attracted considerable...
Using field observation, we perform radiative transfer calculations on snowpacks in the Arctic, Chin...
Light-absorbing impurities (LAIs) deposited in snow have the potential to substantially affect the ...
Abstract We estimate the snow albedo forcing and direct radiative forcing (DRF) of black carbon (BC)...