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Picture of Risk Matrix Highlights Knowledge Gaps in Forest Carbon Stocks
NRS-2013-085
Risk Matrix Highlights Knowledge Gaps in Forest Carbon Stocks

Title: Appendix 2: Risk-based framework and risk case studies. Risk case study: a framework for assessing climate change risks to forest carbon stocks

Author: Woodall, Christopher W.; Domke, Grant M.;

Date: 2012

Source: In: Vose, James M.; Peterson, David L.; Patel-Weynand, Toral, eds. Effects of climatic variability and change on forest ecosystems: a comprehensive science synthesis for the U.S. forest sector. Gen. Tech. Rep. PNW-GTR-870. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station: 246-248.

Publication Series: General Technical Report (GTR)

   Note: This article is part of a larger document. View the larger document

Description: Forest ecosystems have the ability to reduce the effects of climate change through the sequestration of carbon (C) (Pan et al. 2011) as well as contribute to net emissions through disturbance events such as wildfires and widespread tree mortality (Kurz et al. 2008). A conceptual framework for assessing climate-change risks to forest ecosystem C stocks facilitates efficient allocation of efforts to monitor and mitigate climate-change effects, and the U.S. National Greenhouse Gas Inventory (NGHGI) of forest C stocks (Heath et al. 2011) may be used as a basis for development of a climate change risk framework for forest C stocks.

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Woodall, Christopher W.; Domke, Grant M. 2012. Appendix 2: Risk-based framework and risk case studies. Risk case study: a framework for assessing climate change risks to forest carbon stocks. In: Vose, James M.; Peterson, David L.; Patel-Weynand, Toral, eds. Effects of climatic variability and change on forest ecosystems: a comprehensive science synthesis for the U.S. forest sector. Gen. Tech. Rep. PNW-GTR-870. Portland, OR: U.S. Department of Agriculture, Forest Service, Pacific Northwest Research Station: 246-248.

 


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