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Estimating aboveground live understory vegetation carbon in the United StatesAuthor(s): Kristofer D Johnson; Grant M Domke; Matthew B Russell; Brian Walters; John Hom; Alicia Peduzzi; Richard Birdsey; Katelyn Dolan; Wenli Huang
Source: Environmental Research Letters. 12(12): 125010. 11p.
Publication Series: Scientific Journal (JRNL)
Station: Northern Research Station
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Using FIA Data to Predict Forest Understory Vegetation Structure
DescriptionDespite the key role that understory vegetation plays in ecosystems and the terrestrial carbon cycle, it is often overlooked and has few quantitative measurements, especially at national scales. To understand the contribution of understory carbon to the United States (US) carbon budget, we developed an approach that relies on field measurements of understory vegetation cover and height on US Department of Agriculture Forest Service, Forest Inventory and Analysis (FIA) subplots. Allometric models were developed to estimate aboveground understory carbon. A spatial model based on stand characteristics and remotely sensed data was also applied to estimate understory carbon on all FIA plots. We found that most understory carbon was comprised of woody shrub species (64%), followed by nonwoody forbs and graminoid species (35%) and seedlings (1%). The largest estimates were found in temperate or warm humid locations such as the Pacific Northwest and southeastern US, thus following the same broad trend as aboveground tree biomass. The average understory aboveground carbon density was estimated to be 0.977 Mg ha-1, for a total estimate of 272 Tg carbon across all managed forest land in the US (approximately 2% of the total aboveground live tree carbon pool). This estimate is more than twice as low as previous FIA modeled estimates that did not rely on understory measurements, suggesting that this pool may currently be overestimated in US National Greenhouse Gas reporting.
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CitationJohnson, Kristofer D; Domke, Grant M; Russell, Matthew B; Walters, Brian; Hom, John; Peduzzi, Alicia; Birdsey, Richard; Dolan, Katelyn; Huang, Wenli. 2017. Estimating aboveground live understory vegetation carbon in the United States. Environmental Research Letters. 12(12): 125010. 11p.
Keywordsunderstory, forest carbon, allometric models
- Predicting understory vegetation structure in selected western forests of the United States using FIA inventory data
- Prescribed fire effects on field-derived and simulated forest carbon stocks over time
- Estimates of carbon stored in harvested wood products from United States Forest Service Pacific Northwest Region, 1909-2012
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