Seasonal snowpacks accumulate impurities derived from atmospheric aerosols and trace gases throughout the winter and release them during snowmelt. Previous field and laboratory studies have shown that a snowpack can lose up to 80% of the soluble ion burden in the first 20% of the melt, an event commonly known as an ionic pulse. Other studies have concluded that particulate impurities (e.g., black carbon (BC)) concentrate in surface layers during melt which can have important implications for snowpack albedo. However, model and field studies have indicated that meltwater scavenging efficiency of BC in melting snowpacks is still an area of uncertainty. To quantify BC melt dynamics and the release of soluble impurities, we collected and analyz...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon (BC) ...
Snow and glacier melt water contribute water resources to a fifth of Earth’s population.Snow melt pr...
The vast majority of surface water resources in the semi-arid western United States start as winter ...
Seasonal snowpacks accumulate impurities derived from atmospheric aerosols and trace gases throughou...
Modeling studies show that the darkening of snow and ice by black carbon deposition is a major facto...
Characterizing black carbon (BC) concentrations in the seasonal snowpack is of interest because BC d...
Black carbon (BC) is an aerosol material produced by incomplete combustion of fossil fuels and bioma...
Climatic effects of black carbon (BC) deposition on snow have been proposed to result from reduced s...
Assessing the potential for black carbon (BC) and dust deposition to reduce albedo and accelerate gl...
Assessing the potential for black carbon (BC) and dust deposition to reduce albedo and accelerate gl...
[1] We apply our Snow, Ice, and Aerosol Radiative (SNICAR) model, coupled to a general circulation m...
Key Points: • First ever measurements with a high‐accuracy single‐particle soot photometer of bla...
Black carbon (BC) is a significant forcing agent in the Arctic, but substantial uncertainty remains ...
We apply our Snow, Ice, and Aerosol Radiative (SNICAR) model, coupled to a general circulation model...
Thesis (Master's)--University of Washington, 2014Commonly found light-absorbing particulates (LAPs) ...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon (BC) ...
Snow and glacier melt water contribute water resources to a fifth of Earth’s population.Snow melt pr...
The vast majority of surface water resources in the semi-arid western United States start as winter ...
Seasonal snowpacks accumulate impurities derived from atmospheric aerosols and trace gases throughou...
Modeling studies show that the darkening of snow and ice by black carbon deposition is a major facto...
Characterizing black carbon (BC) concentrations in the seasonal snowpack is of interest because BC d...
Black carbon (BC) is an aerosol material produced by incomplete combustion of fossil fuels and bioma...
Climatic effects of black carbon (BC) deposition on snow have been proposed to result from reduced s...
Assessing the potential for black carbon (BC) and dust deposition to reduce albedo and accelerate gl...
Assessing the potential for black carbon (BC) and dust deposition to reduce albedo and accelerate gl...
[1] We apply our Snow, Ice, and Aerosol Radiative (SNICAR) model, coupled to a general circulation m...
Key Points: • First ever measurements with a high‐accuracy single‐particle soot photometer of bla...
Black carbon (BC) is a significant forcing agent in the Arctic, but substantial uncertainty remains ...
We apply our Snow, Ice, and Aerosol Radiative (SNICAR) model, coupled to a general circulation model...
Thesis (Master's)--University of Washington, 2014Commonly found light-absorbing particulates (LAPs) ...
A Mt. Everest ice core spanning 1860–2000 AD and analyzed at high resolution for black carbon (BC) ...
Snow and glacier melt water contribute water resources to a fifth of Earth’s population.Snow melt pr...
The vast majority of surface water resources in the semi-arid western United States start as winter ...