Forest Fire Impacts on Carbon Uptake, Storage, and Emission: The Role of Burn Severity in the Eastern Cascades, Oregon
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Daniel C. Donato | Beverly E. Law | B. Law | D. Donato | Jonathan G. Martin | G. Meigs | John L. Campbell | Garrett W. Meigs | Jonathan G Martin | J. Campbell
[1] Van Wagner. The Line Intersect Method in Forest Fuel Sampling , 1968 .
[2] R. Ottmar,et al. Fuel mass and stand structure after post-fire logging of a severely burned ponderosa pine forest in northeastern Oregon , 2007 .
[3] R. K. Hermann,et al. Root biomass studies in forest ecosystems , 1977, Pedobiologia.
[4] J. Rotella,et al. Snag longevity in relation to wildfire and postfire salvage logging , 2006 .
[5] K. C. Swedberg. A Transition Coniferous Forest in the Cascade Mountains of Northern Oregon , 1973 .
[6] B. Law,et al. Interannual variation in soil CO2 efflux and the response of root respiration to climate and canopy gas exchange in mature ponderosa pine , 2008 .
[7] A. I. Gitelman,et al. Variability in net primary production and carbon storage in biomass across Oregon forests—an assessment integrating data from forest inventories, intensive sites, and remote sensing , 2005 .
[8] M. Turner,et al. Landscape Patterns of Sapling Density, Leaf Area, and Aboveground Net Primary Production in Postfire Lodgepole Pine Forests, Yellowstone National Park (USA) , 2004, Ecosystems.
[9] David P. Roy,et al. Remote sensing of fire severity: assessing the performance of the normalized burn ratio , 2006, IEEE Geoscience and Remote Sensing Letters.
[10] C. Wirth,et al. Reconciling Carbon-cycle Concepts, Terminology, and Methods , 2006, Ecosystems.
[11] W. Romme,et al. The Interaction of Fire, Fuels, and Climate across Rocky Mountain Forests , 2004 .
[12] C. Daly,et al. A knowledge-based approach to the statistical mapping of climate , 2002 .
[13] R. Hall,et al. Using Landsat data to assess fire and burn severity in the North American boreal forest region: an overview and summary of results , 2008 .
[14] Jon E. Keeley,et al. Ecological effects of large fires on US landscapes: benefit or catastrophe? , 2008, International Journal of Wildland Fire.
[15] Michael G. Ryan,et al. Seasonal and annual respiration of a ponderosa pine ecosystem , 1999 .
[16] Mark E Harmon,et al. Forest fuel reduction alters fire severity and long-term carbon storage in three Pacific Northwest ecosystems. , 2009, Ecological applications : a publication of the Ecological Society of America.
[17] G. P. Zimmerman,et al. The first state of the carbon cycle report (SOCCR): The North American carbon budget and implications for the global carbon cycle. , 2007 .
[18] Alan B. Berg,et al. Snag Characteristics and Dynamics in Douglas-Fir Forests, Western Oregon , 1980 .
[19] A. McGuire,et al. Assessing the response of area burned to changing climate in western boreal North America using a Multivariate Adaptive Regression Splines (MARS) approach , 2009 .
[20] B. Law,et al. Dynamics of carbon stocks in soils and detritus across chronosequences of different forest types in the Pacific Northwest, USA , 2004 .
[21] R. Soeriaatmadja. Fire history of the ponderosa pine forests of the Warm Springs Indian Reservation, Oregon , 1965 .
[22] B. Law,et al. Pyrogenic carbon emission from a large wildfire in Oregon, United States , 2007 .
[23] T. Spies,et al. Reburn severity in managed and unmanaged vegetation in a large wildfire , 2007, Proceedings of the National Academy of Sciences.
[24] C. Gough,et al. The legacy of harvest and fire on ecosystem carbon storage in a north temperate forest , 2007 .
[25] Werner A. Kurz,et al. Risk of natural disturbances makes future contribution of Canada's forests to the global carbon cycle highly uncertain , 2008, Proceedings of the National Academy of Sciences.
[26] Peter E. Thornton,et al. Generating surfaces of daily meteorological variables over large regions of complex terrain , 1997 .
[27] Corinne Le Quéré,et al. Climate Change 2013: The Physical Science Basis , 2013 .
[28] B. Law,et al. Conifer regeneration in stand-replacement portions of a large mixed-severity wildfire in the Klamath-Siskiyou Mountains , 2009 .
[29] James K. Brown. Handbook for inventorying downed woody material , 1974 .
[30] Joy Nystrom Mast,et al. How resilient are southwestern ponderosa pine forests after crown fires , 2005 .
[31] Sue A. Ferguson,et al. Characteristics of Lightning and Wildland Fire Ignition in the Pacific Northwest , 1999 .
[32] George C. Hurtt,et al. Hurricane Katrina's Carbon Footprint on U.S. Gulf Coast Forests , 2007, Science.
[33] M. Harmon,et al. Fine-root decomposition and N dynamics in coniferous forests of the Pacific Northwest, U.S.A. , 2002 .
[34] Brett A. Morrissette,et al. Intense forest wildfire sharply reduces mineral soil C and N: the first direct evidence , 2008 .
[35] Warren B. Cohen,et al. Scaling net ecosystem production and net biome production over a heterogeneous region in the Western United States , 2007 .
[36] J. Agee,et al. Long-term post-wildfire dynamics of coarse woody debris after salvage logging and implications for soil heating in dry forests of the eastern Cascades, Washington , 2008 .
[37] S. Fitzgerald. Fire ecology of ponderosa pine and the rebuilding of fire-resilient ponderosa pine ecosystems , 2005 .
[38] O. Sun,et al. Disturbance and net ecosystem production across three climatically distinct forest landscapes , 2003 .
[39] Jason P. Kaye,et al. Long‐term impact of a stand‐replacing fire on ecosystem CO2 exchange of a ponderosa pine forest , 2008 .
[40] D. Baldocchi,et al. Estimation of leaf area index in open-canopy ponderosa pine forests at different successional stages and management regimes in Oregon , 2001 .
[41] Christoph Thomas,et al. Seasonal hydrology explains interannual and seasonal variation in carbon and water exchange in a semiarid mature ponderosa pine forest in central Oregon , 2009 .
[42] Christopher B. Field,et al. Postfire response of North American boreal forest net primary productivity analyzed with satellite observations , 2003 .
[43] B. Law,et al. Carbon dynamics of a ponderosa pine plantation following a thinning treatment in the northern Sierra Nevada , 2009 .
[44] N. Benson,et al. Landscape Assessment: Ground measure of severity, the Composite Burn Index; and Remote sensing of severity, the Normalized Burn Ratio , 2006 .
[45] P. Hessburg,et al. Re-examining fire severity relations in pre-management era mixed conifer forests: inferences from landscape patterns of forest structure , 2007, Landscape Ecology.
[46] Susan J. Prichard,et al. An overview of the fuel characteristic classification systemquantifying, classifying, and creating fuelbeds for resource planning. , 2007 .
[47] Jay D. Miller,et al. Quantitative Evidence for Increasing Forest Fire Severity in the Sierra Nevada and Southern Cascade Mountains, California and Nevada, USA , 2009, Ecosystems.
[48] B. Law,et al. Carbon dynamics of Oregon and Northern California forests and potential land-based carbon storage. , 2009, Ecological applications : a publication of the Ecological Society of America.
[49] B. Law,et al. Forest soil respiration across three climatically distinct chronosequences in Oregon , 2005 .
[50] Michael G. Ryan,et al. Production, Respiration, and Overall Carbon Balance in an Old-growth Pseudotsuga-Tsuga Forest Ecosystem , 2004, Ecosystems.
[51] George W. Koch,et al. Carbon protection and fire risk reduction: toward a full accounting of forest carbon offsets , 2008 .
[52] J. Bork. Fire history in three vegetation types on the eastern side of the Oregon Cascades , 1984 .
[53] D. Phillips,et al. Fine root growth and mortality in different-aged ponderosa pine stands , 2008 .
[54] K. Hibbard,et al. Postfire carbon pools and fluxes in semiarid ponderosa pine in Central Oregon , 2007 .
[55] Scott L. Powell,et al. Forest Disturbance and North American Carbon Flux , 2008 .
[56] Richard H. Waring,et al. Combining Remote Sensing and Climatic Data to Estimate Net Primary Production Across Oregon , 1994 .
[57] J. W. Thomas,et al. Wildlife habitats in managed forests--the Blue Mountains of Oregon and Washington , 1981 .
[58] Frederick W. Smith,et al. Patch structure, fire-scar formation, and tree regeneration in a large mixed-severity fire in the South Dakota Black Hills, USA , 2005 .
[59] J. Zavitkovski,et al. Ecological Importance of Snowbrush Ceanothus Velutinus in the Oregon Cascades , 1968 .
[60] S. Running,et al. Numerical Terradynamic Simulation Group 12-1988 Rapid Estimation of Coniferous Forest Leaf Area Index Using a Portable Integrating Radiometer , 2018 .
[61] M. G. Ryan,et al. Carbon Storage on Landscapes with Stand-replacing Fires , 2006 .
[62] F. H. Eyre,et al. Forest cover types of the United States and Canada , 1980 .
[63] M. Hurteau,et al. Fire suppression and fuels treatment effects on mixed-conifer carbon stocks and emissions. , 2009, Ecological applications : a publication of the Ecological Society of America.
[64] O. Masera,et al. North American forests , 2007 .
[65] Beyond annual budgets: carbon flux at different temporal scales in fire-prone Siberian Scots pine forests , 2002 .
[66] B. Law,et al. Changes in carbon storage and fluxes in a chronosequence of ponderosa pine , 2003 .
[67] M. Busse,et al. Changes in ponderosa pine site productivity following removal of understory vegetation , 1996 .
[68] K. Hirsch,et al. Direct carbon emissions from Canadian forest fires, 1959-1999 , 2001 .
[69] W. Cohen,et al. Aerial and satellite sensor detection and classification of western spruce budworm defoliation in a subalpine forest , 1995 .
[70] C. T. Dyrness,et al. Natural Vegetation of Oregon and Washington , 1988 .
[71] Steven W. Running,et al. Ecosystem Disturbance, Carbon, and Climate , 2008, Science.
[72] Carbon storage and fluxes in ponderosa pine forests at different developmental stages , 2001 .
[73] F. Chapin,et al. Principles of Terrestrial Ecosystem Ecology , 2002, Springer New York.
[74] Harold R. Weaver. Ecological Changes in the Ponderosa Pine Forest of the Warm Springs Indian Reservation in Oregon , 1959 .
[75] T. Swetnam,et al. Warming and Earlier Spring Increase Western U.S. Forest Wildfire Activity , 2006, Science.
[76] G. Aplet,et al. Charcoal and carbon storage in forest soils of the Rocky Mountain West , 2008 .
[77] B. Law,et al. Quantifying Char in Postfire Woody Detritus Inventories , 2009 .