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    • Rangeland Ecology & Management, Volume 63 (2010)
    • Rangeland Ecology & Management, Volume 63, Number 2 (March 2010)
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    Influence of Prescribed Fire on Ecosystem Biomass, Carbon, and Nitrogen in a Pinyon Juniper Woodland

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    Author
    Rau, Benjamin M.
    Tausch, Robin
    Reiner, Alicia
    Johnson, Dale W.
    Chambers, Jeanne C.
    Blank, Robert R.
    Lucchesi, Annmarrie
    Issue Date
    2010-03-01
    Keywords
    carbon storage
    ecosystem maintenance
    fuels management
    
    Metadata
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    Citation
    Rau, B. M., Tausch, R., Reiner, A., Johnson, D. W., Chambers, J. C., Blank, R. R., & Lucchesi, A. (2010). Influence of prescribed fire on ecosystem biomass, carbon, and nitrogen in a pinyon juniper woodland. Rangeland Ecology & Management, 63(2), 197-202.
    Publisher
    Society for Range Management
    Journal
    Rangeland Ecology & Management
    URI
    http://hdl.handle.net/10150/642778
    DOI
    10.2111/REM-D-09-00088.1
    Additional Links
    https://rangelands.org/
    Abstract
    Increases in pinyon and juniper woodland cover associated with land-use history are suggested to provide offsets for carbon emissions in arid regions. However, the largest pools of carbon in arid landscapes are typically found in soils, and aboveground biomass cannot be considered long-term storage in fire-prone ecosystems. Also, the objectives of carbon storage may conflict with management for other ecosystem services and fuels reduction. Before appropriate decisions can be made it is necessary to understand the interactions between woodland expansion, management treatments, and carbon retention. We quantified effects of prescribed fire as a fuels reduction and ecosystem maintenance treatment on fuel loads, ecosystem carbon, and nitrogen in a pinyon-juniper woodland in the central Great Basin. We found that plots containing 30% tree cover averaged nearly 40000 kg ha-1 in total aboveground biomass, 80000 kg ha-1 in ecosystem carbon (C), and 5000 kg ha-1 in ecosystem nitrogen (N). Only 25% of ecosystem C and 5% of ecosystem N resided in aboveground biomass pools. Prescribed burning resulted in a 65% reduction in aboveground biomass, a 68% reduction in aboveground C, and a 78% reduction in aboveground N. No statistically significant change in soil or total ecosystem C or N occurred. Prescribed fire was effective at reducing fuels on the landscape and resulted in losses of C and N from aboveground biomass. However, the immediate and long-term effects of burning on soil and total ecosystem C and N is still unclear. 
    Type
    text
    Article
    Language
    en
    ISSN
    0022-409X
    ae974a485f413a2113503eed53cd6c53
    10.2111/REM-D-09-00088.1
    Scopus Count
    Collections
    Rangeland Ecology & Management, Volume 63, Number 2 (March 2010)

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