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Evaluating carbon storage, timber harvest, and habitat possibilities for a Western Cascades (USA) forest landscape.
Kline, Jeffrey D; Harmon, Mark E; Spies, Thomas A; Morzillo, Anita T; Pabst, Robert J; McComb, Brenda C; Schnekenburger, Frank; Olsen, Keith A; Csuti, Blair; Vogeler, Jody C.
Affiliation
  • Kline JD; USDA Forest Service, Pacific Northwest Research Station, 3200 SW Jefferson Way, Corvallis, Oregon, 97331, USA. JKline@fs.fed.us.
  • Harmon ME; Forest Ecosystems and Society, Oregon State University, 321 Richardson Hall, Corvallis, Oregon, 97331, USA.
  • Spies TA; USDA Forest Service, Pacific Northwest Research Station, 3200 SW Jefferson Way, Corvallis, Oregon, 97331, USA.
  • Morzillo AT; Department of Natural Resources and the Environment, University of Connecticut, 1376 Storrs Road, Storrs, Connecticut, 06269, USA.
  • Pabst RJ; Forest Ecosystems and Society, Oregon State University, 321 Richardson Hall, Corvallis, Oregon, 97331, USA.
  • McComb BC; Department of Fisheries and Wildlife, Oregon State University, 104 Nash Hall, Corvallis, Oregon, 97331, USA.
  • Schnekenburger F; Forest Ecosystems and Society, Oregon State University, 321 Richardson Hall, Corvallis, Oregon, 97331, USA.
  • Olsen KA; Forest Ecosystems and Society, Oregon State University, 321 Richardson Hall, Corvallis, Oregon, 97331, USA.
  • Csuti B; Institute for Natural Resources, Oregon State University, PO Box 751, Portland, Oregon, 97331, USA.
  • Vogeler JC; Laboratory for Applications of Remote Sensing in Ecology, USDA Forest Service and Oregon State University, 3200 SW Jefferson Way, Corvallis, Oregon, 97331, USA.
Ecol Appl ; 26(7): 2044-2059, 2016 Oct.
Article in En | MEDLINE | ID: mdl-27755743
Forest policymakers and managers have long sought ways to evaluate the capability of forest landscapes to jointly produce timber, habitat, and other ecosystem services in response to forest management. Currently, carbon is of particular interest as policies for increasing carbon storage on federal lands are being proposed. However, a challenge in joint production analysis of forest management is adequately representing ecological conditions and processes that influence joint production relationships. We used simulation models of vegetation structure, forest sector carbon, and potential wildlife habitat to characterize landscape-level joint production possibilities for carbon storage, timber harvest, and habitat for seven wildlife species across a range of forest management regimes. We sought to (1) characterize the general relationships of production possibilities for combinations of carbon storage, timber, and habitat, and (2) identify management variables that most influence joint production relationships. Our 160 000-ha study landscape featured environmental conditions typical of forests in the Western Cascade Mountains of Oregon (USA). Our results indicate that managing forests for carbon storage involves trade-offs among timber harvest and habitat for focal wildlife species, depending on the disturbance interval and utilization intensity followed. Joint production possibilities for wildlife species varied in shape, ranging from competitive to complementary to compound, reflecting niche breadth and habitat component needs of species examined. Managing Pacific Northwest forests to store forest sector carbon can be roughly complementary with habitat for Northern Spotted Owl, Olive-sided Flycatcher, and red tree vole. However, managing forests to increase carbon storage potentially can be competitive with timber production and habitat for Pacific marten, Pileated Woodpecker, and Western Bluebird, depending on the disturbance interval and harvest intensity chosen. Our analysis suggests that joint production possibilities under forest management regimes currently typical on industrial forest lands (e.g., 40- to 80-yr rotations with some tree retention for wildlife) represent but a small fraction of joint production outcomes possible in the region. Although the theoretical boundaries of the production possibilities sets we developed are probably unachievable in the current management environment, they arguably define the long-term potential of managing forests to produce multiple ecosystem services within and across multiple forest ownerships.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Carbon / Forests / Forestry Type of study: Prognostic_studies Limits: Animals Country/Region as subject: America do norte Language: En Journal: Ecol Appl Year: 2016 Document type: Article Affiliation country: United States Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Carbon / Forests / Forestry Type of study: Prognostic_studies Limits: Animals Country/Region as subject: America do norte Language: En Journal: Ecol Appl Year: 2016 Document type: Article Affiliation country: United States Country of publication: United States