Publications des scientifiques de l'IRD

Fabre Clément, Wei X., Sauvage S., Le T. P. Q., Ouillon Sylvain, Orange Didier, Herrmann Marine, Sánchez-Péreza J. M. (2023). Assessing fluvial organic carbon flux and its response to short climate variability and damming on a large-scale tropical Asian river basin. Science of the Total Environment, 903, p. 166589 [19 p.]. ISSN 0048-9697.

Titre du document
Assessing fluvial organic carbon flux and its response to short climate variability and damming on a large-scale tropical Asian river basin
Année de publication
2023
Type de document
Article référencé dans le Web of Science WOS:001082294400001
Auteurs
Fabre Clément, Wei X., Sauvage S., Le T. P. Q., Ouillon Sylvain, Orange Didier, Herrmann Marine, Sánchez-Péreza J. M.
Source
Science of the Total Environment, 2023, 903, p. 166589 [19 p.] ISSN 0048-9697
Fluvial organic carbon (OC) transfer is an essential resource for downstream ecosystems. Multiple factors affect its transfer process, e.g., climate or anthropogenic activities. Quantifying OC fluxes with fine spatiotemporal resolution is challenging in anthropised catchments. This study aims to quantify daily OC dynamics and to assess the impacts of short climate variability and damming on OC spatiotemporal transfer processes in a large tropical Asian river basin (the Red River) for an extended period (2003-2013) by combining empirical equations with modelling outputs. Firstly, empirical equations for calculating dissolved (DOC) and particulate OC (POC) concentrations were calibrated based on in-situ sampling data. Then, simulated daily discharge (Q) and suspended sediment concentrations were used to quantify daily OC fluxes. Results show that the parameters of the DOC and POC equations well represent the subbasins characteristics, underlining the effects of soil OC content, mean annual Q and Chlorophyll a. DOC and POC exports reached 222 and 406 kt yr(-1) at the basin outlet, accounting for 0.38 % of the total OC (TOC) exported by Asian rivers to the ocean. However, the specific yields of DOC (1.62 t km(-2) yr(-1)) and POC (2.96 t km(-2) yr(-1)) of the Red River basin were similar to 1.5 times those of other Asian basins. By comparing a reference scenario (without dams) to current conditions, we estimated 12 % and 88 % decreases in DOC and POC fluxes between 2008-2013 and 2003-2007, mainly due to damming. This study shows that climate variability may not impact OC dynamics in rivers as it explained <2 % of the variations. However, dam management, especially recent ones operating since 2008, deeply influences OC variations as the POC/TOC ratio decreased from 86 % to 47 %. Damming significantly decreased POC exports due to sediment retention, altering the equilibrium of OC cycling downstream, which may impact the food chain.
Plan de classement
Sciences fondamentales / Techniques d'analyse et de recherche [020] ; Sciences du milieu [021] ; Hydrologie [062]
Description Géographique
CHINE ; LAOS ; VIET NAM
Localisation
Fonds IRD [F B010090328]
Identifiant IRD
fdi:010090328
Contact