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Description not entered.
Person:
Year: 2002
Type: Document
Source: FRAMES
Topic(s): Emissions and Smoke, Fire Behavior
Region(s): Unknown
Keywords: aerosols, trace gas emissions, biomass burning

[no description entered]
Person:
Year: 2001
Type: Document
Source: TTRS
Topic(s): Emissions and Smoke, Fire Effects, Fuels, Prescribed Fire
Region(s): California, Great Basin, Northwest, International
Keywords: Abies amabilis, Abies procera, aerosols, air quality, biomass, Chamaecyparis lawsoniana, chemical compounds, chemistry, coniferous forests, conifers, fire management, forest management, fuel types, hydrocarbons, litter, Mexico, Oregon, particulates, Picea sitchensis, Pinus contorta, Pinus engelmannii, Pinus monticola, Pinus ponderosa, Pinus strobus, Pseudotsuga menziesii, sampling, Sequoia sempervirens, smoke effects, smoke management, temperate forests, Tsuga mertensiana, vegetation surveys

Emissions from wildland fires strongly influence tropospheric chemistry and climate. Fires emit high levels of trace gases, including semi-volatile and volatile organic compounds (S/VOCs); and primary (directly emitted) particulate matter (PM). During plume evolution, S/VOCs…
Person: Barsanti
Year: 2020
Type: Media
Source: FRAMES
Topic(s): Climate, Emissions and Smoke, Fire Occurrence, Fuels, Models, Monitoring and Inventory
Region(s): California
Keywords: air quality, health impacts, PM - particulate matter, C - carbon, organic carbon, PM2.5, wildfires, POC - Particulate Organic compound, health effects, climate effects, emission factors, fuel consumption, NMOC - nonmethane organic compounds, chemistry, gas chromatography, FIREX - Fire Influence on Regional and Global Environments Experiment, NEIVA - Nextgen Emissions InVentory expansion of Akagi

A high-intensity wildfire burnt through a dry Eucalyptus forest in south-eastern Australia that had been fuel reduced with fire 3 months prior, presenting a unique opportunity to measure the effects of fuel reduction (FR) on forest carbon and greenhouse gas (GHG) emissions from…
Person:
Year: 2014
Type: Document
Source: FRAMES, TTRS
Topic(s): Emissions and Smoke, Fire Behavior, Fire Effects, Fuels, Hazard and Risk
Region(s): International
Keywords: charcoal, fuel reduction, biomass, greenhouse gases, Australia, emission factors, C - carbon, modified combustion action, fine fuels, fire hazard reduction, fire intensity, fuel accumulation, heavy fuels, surface fuels, wildfires, air quality, ground cover, litter, shrubs, size classes, snags, understory vegetation, eucalyptus, Victoria, fire management, forest management, fuel management, sclerophyll forests

The production of pyrogenic carbon (PyC; a continuum of organic carbon (C) ranging from partially charred biomass and charcoal to soot) is a widely acknowledged C sink, with the latest estimates indicating that ~ 50% of the PyC produced by vegetation fires potentially sequesters…
Person:
Year: 2016
Type: Document
Source: TTRS
Topic(s): Climate, Emissions and Smoke, Fire Ecology, Fire Effects
Region(s): International
Keywords: wildfires, C - carbon, charcoal, organic matter, fire management, biochar, black carbon, carbon accounting, carbon emissions, carbon sequestration, charcoal, DOC - dissolved organic carbon, erosion, PyOM - pyrogenic organic matter, wildfire, dissolved black carbon, SOM - soil organic matter, forest soils, boreal forest, climate change, macroscopic charcoal, temperate forest, Marine-Sediments, emission factors, Fresh Charcoal

In this air quality assessment, aerial photo attributes and an emissions inventory approach were used to estimate smoke production over time for the Deschutes, Grand Ronde, Methow, Pend Oreille, Wenatchee, and Yakima river basins in eastern Oregon and eastern Washington.…
Person:
Year: 1994
Type: Document
Source: FRAMES, TTRS
Topic(s): Emissions and Smoke, Fuels, Hazard and Risk, Mapping, Models, Planning, Prescribed Fire
Region(s): Northwest
Keywords: air quality, forest health, FERA - Fire and Environmental Research Applications Team, eastern Oregon, eastern Washington, PM10 emissions, Deschutes River Basin, Grand Ronde River Basin, Methow River Basin, Pend Oreille River Basin, Wenatchee River Basin, Yakima River Basin, wildfires, smoke production, vegetation mapping, aerial photo interpretation, current fuel loading, CONSUME, photo series, emission factors, fuel moisture, fuel consumption, emission production, historical fuel loading

The Fire and Environmental Research Applications (FERA) Team has developed an online tutorial package that teaches land managers how to use the Natural Fuels Photo Series, Consume v 3.0, Fuel Characteristic Classification System (FCCS), and Fire Emissions Production Simulator (…
Person:
Year:
Type: Website
Source: FRAMES
Topic(s): Emissions and Smoke, Fire Behavior, Fuels, Models, Outreach, Planning, Prescribed Fire, Regulations and Legislation, Weather
Region(s): Alaska, California, Eastern, Great Basin, Hawaii, Northern Rockies, Northwest, Rocky Mountain, Southern, Southwest, National
Keywords: air quality, CONSUME, duff consumption, FEPS - Fire Emissions Production Simulator, FOFEM - First Order Fire Effects Model, FCCS - Fuel Characteristic Classification System, fuel moisture, PM2.5, training, woody fuel consumption, air pollution, broadcast burning, CH4 - methane, CO2 - carbon dioxide, CO - carbon monoxide, emission factor, emission rate, flaming combustion, PM - particulate matter, plume rise, residual combustion, smoldering combustion, transport wind speed, tutorial