Studies Foresee Dilemma Over Forest Carbon Storage

July 8, 2009 RSS Feed Print

JEFF BARNARD,AP Environmental Writer

GRANTS PASS, Ore.—Scientists conclude in two government-funded studies that forests in the Pacific Northwest have a huge potential to store more carbon to combat global warming, but not if they are heavily thinned to prevent wildfire.

That poses a dilemma to the U.S. Forest Service, which has historically focused on balancing timber production against maintaining fish and wildlife habitat, but is increasingly trying to thin out young trees and brush to control wildfires that regularly cost $1 billion a year.

The stakes are big.

Globally, forests can absorb up to 30 percent of the carbon released by burning fossil fuels.

But when they are clearcut for lumber and to clear farmland, or allowed to burn uncontrollably, they also release huge amounts of carbon, said Steve Running, professor of ecology at the University of Montana and a lead author of the Intergovernmental Panel on Climate Change's latest report on global warming.

"So forests could be a significant part of the solution or could make the problem worse," said Running, who did not take part in either study. "I think this is going to be a very interesting challenge for forest ecosystem management over the next few decades, to see if we can develop a plan of walking the tightrope like this," he said.

Robert Doudrick, Forest Service staff director for research and development, said the two studies offered valuable information to be considered as the Forest Service tries to keep its options open in the face of an uncertain future over climate and energy.

"Whether or not carbon is our primary responsibility has yet to be decided," he said. "Whether biomass supply and an energy future for our country will be more important than wildlife habitat are issues that are yet to be decided. We are required on every piece of property to make that sort of decision.

"The uncertainty out there about the future makes it extremely difficult right now."

The two studies from the Oregon State University Department of Forest Science appear in the journal Ecological Applications.

One of the studies, funded by the U.S. Department of Energy for the U.S. Carbon Cycle Program, examined the amount of biomass — living and dead trees and brush — on 9,000 test plots in Oregon and Northern California from a Forest Service inventory, plus 200 plots monitored by OSU.

It estimated that as long as the forests are not logged or burned, they have the potential to double the amount of carbon stored, though the prospects over the next 50 years are more like 15 percent.

Public forests account for 65 percent of the biomass, which continues to increase even when forests hit more than 300 years old.

The study did not factor in future fires or climate change.

The forests reach a maximum potential for storing carbon at 150 to 200 years old, said lead author Tara Hudiburg, a graduate student at OSU.

Co-author Beverly Law, professor of global change forest science at OSU, said they designed the study because of the growing demand for information about whether forests should be managed as carbon offsets for burning fossil fuels. Currently U.S. forests absorb an estimated 16 percent of the nation's carbon emissions.

Jim Clark, professor of biology and statistics at Duke University and not involved in the study, said the wide range of variability in the amounts of biomass on the forests indicated that soil fertility and rainfall may play a bigger role than just age.

The other study, funded by NASA, used a computer simulation model to analyze thinning treatments on forests in Oregon's Cascade and Coast ranges, and concluded that so many trees and brush have to be removed to significantly reduce the carbon lost to wildfires, that even more carbon is released into the atmosphere by thinning than when the forests burn.

"If you wanted to save one unit of carbon going up in the atmosphere in a fire, you had to remove 10 to 20 units of carbon to achieve that result," said co-author Mark E. Harmon, professor of ecology at OSU.

The reason is that even in severe fires, the bulk of the carbon in the trunks, branches and roots of trees do not burn, so continue to be stored as carbon for many years, Harmon said.

Tags:
environment,
science

Reader Comments Read all comments (1)

Add Your Thoughts
Your comment will be posted immediately, unless it is spam or contains profanity. For more information, please see our Comments FAQ.

An article by Kashian et.al. (2006 Bioscience 56:598-606) shows a trend for carbon storage after fire much different than stated by Harmon. The authors estimate that forests in the Yellowstone ecosystem produced a net loss of C to the atmosphere for 40 years following the 1988 fires. Even after becoming a net sink for C, they estimate it will take the forests 200+ years to gain back all the C lost during the fire and the following 40 years.

It's true that fires do not consume forests, but they do kill them; and after death comes decay and carbon release to the atmosphere. When assessing carbon payoff for an investment in fire prevention, you must look at a long timeframe and consider carbon losses after the fire.

Bruce Meneghin of CO 12:37PM July 10, 2009

National Science Foundation

NSF

Cybersecurity: Training Students

CyberWatch spans all school levels.

Science of Spatial Learning

Center seeks to transform teaching practices.

Studying Carbon in Rivers

Researcher explores physical, chemical and biological interactions.

advertisement

Science Discoveries

Science Discoveries

iTunes icon RSS icon

advertisement