Fires prime terrestrial organic carbon for riverine export to the global oceans

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作者
Matthew W. Jones
Alysha I. Coppola
Cristina Santín
Thorsten Dittmar
Rudolf Jaffé
Stefan H. Doerr
Timothy A. Quine
机构
[1] University of East Anglia,Tyndall Centre for Climate Change Research, School of Environmental Sciences
[2] University of Zurich,Department of Geography
[3] Department of Earth Sciences,Geological Institute
[4] ETH Zürich,Geography Department, College of Science
[5] Sonneggstrasse 5,Biosciences Department, College of Science
[6] 8092,Research Group for Marine Geochemistry (ICBM
[7] Swansea University,MPI Bridging Group), Institute for Chemistry and Biology of the Marine Environment (ICBM)
[8] Swansea University,Helmholtz Institute for Functional Marine Biodiversity (HIFMB)
[9] University of Oldenburg,Southeast Environmental Research Center and Department of Chemistry and Biochemistry
[10] University of Oldenburg,Geography Department, College of Life and Environmental Science
[11] Florida International University,undefined
[12] University of Exeter,undefined
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摘要
Black carbon (BC) is a recalcitrant form of organic carbon (OC) produced by landscape fires. BC is an important component of the global carbon cycle because, compared to unburned biogenic OC, it is selectively conserved in terrestrial and oceanic pools. Here we show that the dissolved BC (DBC) content of dissolved OC (DOC) is twice greater in major (sub)tropical and high-latitude rivers than in major temperate rivers, with further significant differences between biomes. We estimate that rivers export 18 ± 4 Tg DBC year−1 globally and that, including particulate BC fluxes, total riverine export amounts to 43 ± 15 Tg BC year−1 (12 ± 5% of the OC flux). While rivers export ~1% of the OC sequestered by terrestrial vegetation, our estimates suggest that 34 ± 26% of the BC produced by landscape fires has an oceanic fate. Biogeochemical models require modification to account for the unique dynamics of BC and to predict the response of recalcitrant OC export to changing environmental conditions.
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