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  5. Sediment organic carbon burial in agriculturally eutrophic impoundments over the last century

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Article
en
2008

Sediment organic carbon burial in agriculturally eutrophic impoundments over the last century

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0 Files

en
2008
Vol 22 (1)
Vol. 22
DOI: 10.1029/2006gb002854

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Carlos M. Duarte
Carlos M. Duarte

King Abdullah University of Science and Technology

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John Downing
J. J. Cole
Jack J. Middelburg
+5 more

Abstract

We estimated organic carbon (OC) burial over the past century in 40 impoundments in one of the most intensively agricultural regions of the world. The volume of sediment deposited per unit time varied as a function of lake and watershed size, but smaller impoundments had greater deposition and accumulation rates per unit area. Annual water storage losses varied from 0.1–20% and were negatively correlated with impoundment size. Estimated sediment OC content was greatest in lakes with low ratios of watershed to impoundment area. Sediment OC burial rates were higher than those assumed for fertile impoundments by previous studies and were much higher than those measured in natural lakes. OC burial ranged from a high of 17,000 g C m −2 a −1 to a low of 148 g C m −2 a −1 and was significantly greater in small impoundments than large ones. The OC buried in these lakes originates in both autochthonous and allochthonous production. These analyses suggest that OC sequestration in moderate to large impoundments may be double the rate assumed in previous analyses. Extrapolation suggests that they may bury 4 times as much carbon (C) as the world's oceans. The world's farm ponds alone may bury more OC than the oceans and 33% as much as the world's rivers deliver to the sea.

How to cite this publication

John Downing, J. J. Cole, Jack J. Middelburg, R. G. Striegl, Carlos M. Duarte, Pirkko Kortelainen, Yves T. Prairie, Keith Allen Laube (2008). Sediment organic carbon burial in agriculturally eutrophic impoundments over the last century. , 22(1), DOI: https://doi.org/10.1029/2006gb002854.

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Publication Details

Type

Article

Year

2008

Authors

8

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1029/2006gb002854

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