Large-scale glaciers in the Third Pole are experiencing significant thinning and retreat, partly due to the increased deposition of black carbon (BC) and mineral dust (MD). At present, BC is generally considered a more important contributing factor than MD to glacier melting. Based on a deep analysis of published data, the relative contribution of MD versus BC to snow/ice melting increases rapidly, because BC is more likely than MD to be discharged during the melting process. As a result, the contribution of MD to glacier melting is comparable to or even higher than that of BC when the glacier surface appears as aged snow and bare ice. The importance of MD to glacier melting must therefore be emphasized in the water tower of Asia
The black carbon (BC) deposition on the ice core at Muztagh Ata Mountain, northern Tibetan Plateau, ...
The post-depositional enrichment of black soot in snow-pack was investigated by measuring the redist...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon (BC) ...
Sources and implications of black carbon (BC) and mineral dust (MD) on two glaciers on the central T...
In snow and ice, light-absorbing particles (LAN), such as black carbon (BC) and dust, accelerate the...
In snow and ice, light-absorbing particles (LAPs), such as black carbon (BC) and dust, accelerate th...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon ...
In the Tibetan Plateau, the black carbon (BC) concentration in surface snow and snow pits has receiv...
A large change in albedo has a significant effect on glacier ablation. Atmospheric aerosols - e. g. ...
Deposited mineral dust and black carbon are known to reduce the albedo of snow and enhance melt. Her...
Light-absorbing impurities in snow and ice control glacier melt as shortwave radiation represents th...
Black carbon (BC) deposited on snow and glacier surfaces can reduce albedo and lead to accelerated m...
Black carbon (BC) deposited on snow and glacier surfaces can reduce albedo and lead to accelerated m...
Snow cover plays a key role for sustaining ecology and society in mountainous regions. Light-absorbi...
The black carbon (BC) deposition on the ice core at Muztagh Ata Mountain, northern Tibetan Plateau, ...
The post-depositional enrichment of black soot in snow-pack was investigated by measuring the redist...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon (BC) ...
Sources and implications of black carbon (BC) and mineral dust (MD) on two glaciers on the central T...
In snow and ice, light-absorbing particles (LAN), such as black carbon (BC) and dust, accelerate the...
In snow and ice, light-absorbing particles (LAPs), such as black carbon (BC) and dust, accelerate th...
Black carbon (BC) and dust deposited on snow and glacier surfaces can reduce the surface albedo, acc...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon ...
In the Tibetan Plateau, the black carbon (BC) concentration in surface snow and snow pits has receiv...
A large change in albedo has a significant effect on glacier ablation. Atmospheric aerosols - e. g. ...
Deposited mineral dust and black carbon are known to reduce the albedo of snow and enhance melt. Her...
Light-absorbing impurities in snow and ice control glacier melt as shortwave radiation represents th...
Black carbon (BC) deposited on snow and glacier surfaces can reduce albedo and lead to accelerated m...
Black carbon (BC) deposited on snow and glacier surfaces can reduce albedo and lead to accelerated m...
Snow cover plays a key role for sustaining ecology and society in mountainous regions. Light-absorbi...
The black carbon (BC) deposition on the ice core at Muztagh Ata Mountain, northern Tibetan Plateau, ...
The post-depositional enrichment of black soot in snow-pack was investigated by measuring the redist...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon (BC) ...