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On the spatial heterogeneity of net ecosystem productivity in complex landscapes

Publication ,  Journal Article
Emanuel, RE; Riveros-Iregui, DA; McGlynn, BL; Epstein, HE
Published in: Ecosphere
July 1, 2011

Micrometeorological flux towers provide spatially integrated estimates of net ecosystem production (NEP) of carbon over areas ranging from several hectares to several square kilometers, but they do so at the expense of spatially explicit information within the footprint of the tower. This finer-scale information is crucial for understanding how physical and biological factors interact and give rise to towermeasured fluxes in complex landscapes. We present a simple approach for quantifying and evaluating the spatial heterogeneity of cumulative growing season NEP for complex landscapes. Our method is based on spatially distributed information about physical and biological landscape variables and knowledge of functional relationships between constituent fluxes and these variables. We present a case study from a complex landscape in the Rocky Mountains of Montana (US) to demonstrate that the spatial distribution of cumulative growing season NEP is rather large and bears the imprint of the topographic and vegetation variables that characterize this complex landscape. Net carbon sources and net carbon sinks were distributed across the landscape in manner predictable by the intersection of these landscape variables. We simulated year-to-year climate variability and found that some portions of the landscape were consistently either carbon sinks or carbon sources, but other portions transitioned between sink and source. Our findings reveal that this emergent behavior is a unique characteristic of complex landscapes derived from the interaction of topography and vegetation. These findings offer new insight for interpreting spatially integrated carbon fluxes measured over complex landscapes.

Duke Scholars

Published In

Ecosphere

DOI

EISSN

2150-8925

Publication Date

July 1, 2011

Volume

2

Issue

7

Related Subject Headings

  • 4102 Ecological applications
  • 3103 Ecology
  • 0608 Zoology
  • 0602 Ecology
  • 0501 Ecological Applications
 

Citation

APA
Chicago
ICMJE
MLA
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Emanuel, R. E., Riveros-Iregui, D. A., McGlynn, B. L., & Epstein, H. E. (2011). On the spatial heterogeneity of net ecosystem productivity in complex landscapes. Ecosphere, 2(7). https://doi.org/10.1890/ES11-00074.1
Emanuel, R. E., D. A. Riveros-Iregui, B. L. McGlynn, and H. E. Epstein. “On the spatial heterogeneity of net ecosystem productivity in complex landscapes.” Ecosphere 2, no. 7 (July 1, 2011). https://doi.org/10.1890/ES11-00074.1.
Emanuel RE, Riveros-Iregui DA, McGlynn BL, Epstein HE. On the spatial heterogeneity of net ecosystem productivity in complex landscapes. Ecosphere. 2011 Jul 1;2(7).
Emanuel, R. E., et al. “On the spatial heterogeneity of net ecosystem productivity in complex landscapes.” Ecosphere, vol. 2, no. 7, July 2011. Scopus, doi:10.1890/ES11-00074.1.
Emanuel RE, Riveros-Iregui DA, McGlynn BL, Epstein HE. On the spatial heterogeneity of net ecosystem productivity in complex landscapes. Ecosphere. 2011 Jul 1;2(7).

Published In

Ecosphere

DOI

EISSN

2150-8925

Publication Date

July 1, 2011

Volume

2

Issue

7

Related Subject Headings

  • 4102 Ecological applications
  • 3103 Ecology
  • 0608 Zoology
  • 0602 Ecology
  • 0501 Ecological Applications