Abril, G., Bouillon, S., Darchambeau, F., Teodoru, C.R., Marwick, T.R., Tamooh, F., Ochieng Omengo, F., Geeraert, N., Deirmendjian, L., Polsenaere, P., Borges, A.V., Technical Note: large overestimation of pCO2 calculated from pH and alkalinity in acidic, organic-rich freshwaters. Biogeosciences 12 (2015), 67–78, 10.5194/bg-12-67-2015.
Abril, G., Etcheber, H., Borges, A.V., Frankignoulle, M., Excess atmospheric carbon dioxide transported by rivers into the Scheldt estuary. Comptes Rendus de l'Academie des Sciences-Series IIA-Earth and Planetary Science 330 (2000), 761–768.
Amiotte-Suchet, P., Probst, J.-L., Ludwig, W., Worldwide distribution of continental rock lithology: implications for the atmospheric/soil CO2 uptake by continental weathering and alkalinity river transport to the oceans. Global Biogeochem. Cycles, 17, 2003.
Amundson, R., Stern, L., Baisden, T., Wang, Y., The isotopic composition of soil and soil-respired CO 2. Geoderma 82 (1998), 83–114.
Augusto, L., Bakker, M.R., Morel, C., Meredieu, C., Trichet, P., Badeau, V., Arrouays, D., Plassard, C., Achat, D.L., Gallet-Budynek, A., Merzeau, D., Canteloup, D., Najar, M., Ranger, J., Is “grey literature” a reliable source of data to characterize soils at the scale of a region? A case study in a maritime pine forest in southwestern France. Eur. J. Soil Sci. 61 (2010), 807–822, 10.1111/j.1365-2389.2010.01286.x.
Barth, J.A.C., Cronin, A.A., Dunlop, J., Kalin, R.M., Influence of carbonates on the riverine carbon cycle in an anthropogenically dominated catchment basin: evidence from major elements and stable carbon isotopes in the Lagan River (N. Ireland). Chem. Geol. 200 (2003), 203–216.
Bertran, P., Allenet, G., Gé T., Naughton, F., Poirier, P., Goñi, M.F.S., Coversand and pleistocene palaeosols in the landes region, southwestern france. J. Quaternary Sci. 24 (2009), 259–269.
Bertran, P., Bateman, M.D., Hernandez, M., Mercier, N., Millet, D., Sitzia, L., Tastet, J.-P., Inland aeolian deposits of south-west France: facies, stratigraphy and chronology. J. Quaternary Sci. 26 (2011), 374–388.
Borges, A.V., Do we have enough pieces of the jigsaw to integrate CO2 fluxes in the coastal ocean?. Estuaries 28 (2005), 3–27.
Brunet, F., Gaiero, D., Probst, J.-L., Depetris, P.J., Gauthier Lafaye, F., Stille, P., δ13C tracing of dissolved inorganic carbon sources in Patagonian rivers (Argentina). Hydrological Processes 19 (2005), 3321–3344.
Butman, D., Raymond, P.A., Significant efflux of carbon dioxide from streams and rivers in the United States. Nat. Geosci 4 (2011), 839–842, 10.1038/ngeo1294.
Cai, W.-J., Guo, X., Chen, C.-T.A., Dai, M., Zhang, L., Zhai, W., Lohrenz, S.E., Yin, K., Harrison, P.J., Wang, Y., A comparative overview of weathering intensity and HCO 3- flux in the world's major rivers with emphasis on the Changjiang, Huanghe, Zhujiang (Pearl) and Mississippi Rivers. Continental Shelf Res. 28 (2008), 1538–1549.
Cerling, T.E., Solomon, D.K., Quade, J., Bowman, J.R., On the isotopic composition of carbon in soil carbon dioxide. Geochimica et Cosmochimica Acta 55 (1991), 3403–3405.
Ciais, P., Sabine, C., Bala, G., Bopp, L., Brovkin, V., Canadell, J., Chhabra, A., DeFries, R., Galloway, J., Heimann, M., Jones, C., Le Quéré C., Myeni, R., Piao, S., Thornton, P., Carbon and other biogeochemical cycles, in: Climate Change 2013: The Physical Science Basis. Contribution of Working Group I to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. 2013, Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA, 465–570.
Clark, I., Fritz, P., Environmental Isotopes in Hydrology. 1997, Lewis Publishers, Boca Raton, Fla.
Cole, J.J., Caraco, N.F., Carbon in catchments: connecting terrestrial carbon losses with aquatic metabolism. Mar. Freshwater Res. 52 (2001), 101–110.
Cole, J.J., Prairie, Y.T., Caraco, N.F., McDowell, W.H., Tranvik, L.J., Striegl, R.G., Duarte, C.M., Kortelainen, P., Downing, J.A., Middelburg, J.J., Melack, J., Plumbing the global carbon cycle: integrating inland waters into the terrestrial carbon budget. Ecosystems 10 (2007), 171–184, 10.1007/s10021-006-9013-8.
Corbier, P., Karnay, G., Bourgine, B., Saltel, M., 2010. Gestion des eaux souterraines en région Aquitaine. Reconnaissance des potentialités aquiferes du Mio-Plio-Quaternaire des Landes de Gascogne et du Médoc en relation avec les SAGE. No. Rapport final, BRGM RP 57813.
Craft, J.A., Stanford, J.A., Pusch, M., Microbial respiration within a floodplain aquifer of a large gravel-bed river. Freshwater Biol. 47 (2002), 251–261.
Das, A., Krishnaswami, S., Bhattacharya, S.K., Carbon isotope ratio of dissolved inorganic carbon (DIC) in rivers draining the Deccan Traps, India: sources of DIC and their magnitudes. Earth Planetary Sci. Lett. 236 (2005), 419–429.
Davidson, E.A., Figueiredo, R.O., Markewitz, D., Aufdenkampe, A.K., Dissolved CO2 in small catchment streams of eastern Amazonia: a minor pathway of terrestrial carbon loss. J. Geophys. Res.: Biogeosci., 2010, 115.
Degens, E., Kempe, S., Richey, J.E., Chapter 15, summary Biogeochemistry of major world rivers. Degend, E.T., Kempe, S., Richey, J.E., (eds.) Biogeochemestry of major world river. Scope 42, 1991, Wiley, New York, 323–344.
Deirmendjian, L., Loustau, D., Augusto, L., Lafont, S., Chipeaux, C., Poirier, D., Abril, G., Hydrological and ecological controls on dissolved carbon concentrations in groundwater and carbon export to surface waters in a temperate pine forest watershed. Biogeosci. Discuss. 2017 (2017), 1–34, 10.5194/bg-2017-90.
Diefendorf, A.F., Mueller, K.E., Wing, S.L., Koch, P.L., Freeman, K.H., Global patterns in leaf 13C discrimination and implications for studies of past and future climate. Proc. Natl. Acad. Sci. 107 (2010), 5738–5743.
Doctor, D.H., Kendall, C., Sebestyen, S.D., Shanley, J.B., Ohte, N., Boyer, E.W., Carbon isotope fractionation of dissolved inorganic carbon (DIC) due to outgassing of carbon dioxide from a headwater stream. Hydrological Processes 22 (2008), 2410–2423.
Downing, J.A., Cole, J.J., Duarte, C.M., Middelburg, J.J., Melack, J.M., Prairie, Y.T., Kortelainen, P., Striegl, R.G., McDowell, W.H., Tranvik, L.J., Global abundance and size distribution of streams and rivers. Inland waters 2 (2012), 229–236.
EEA, 2014. Corine Land Cover 2006 raster data. European Environment Agency (EEA), available at: http://www. eea. europa. eu/data-and-maps/data/ds_resolveuid/a645109f7a11d43f5d7e275d81f35c61 3.
Ekblad, A., Nyberg, G., Högberg, P., 13C-discrimination during microbial respiration of added C3-, C4-and 13C-labelled sugars to a C3-forest soil. Oecologia 131 (2002), 245–249.
Epron, D., Etitia, L., Farque, Lucot, É., Badot, P.-M., Soil CO2 efflux in a beech forest: dependence on soil temperature and soil water content. Ann. Forest Sci. 56 (1999), 221–226.
Frankignoulle, M., Borges, A.V., Direct and indirect pCO2 measurements in a wide range of pCO2 and salinity values (The Scheldt Estuary). Aquatic Geochem. 7 (2001), 267–273, 10.1023/A:1015251010481.
Frankignoulle, M., Bourge, I., Wollast, R., Atmospheric CO2 fluxes in a highly polluted estuary (the Scheldt). Limnol. Oceanography, 1996.
Gillikin, D.P., Bouillon, S., Determination of δ18O of water and δ13C of dissolved inorganic carbon using a simple modification of an elemental analyser-isotope ratio mass spectrometer: an evaluation. Rapid Commun. Mass Spectrometry 21 (2007), 1475–1478.
Govind, A., Bonnefond, J.-M., Kumari, J., Moisy, C., Loustau, D., Wigneron, J.-P., Modeling the ecohydrological processes in the Landes de Gascogne. France, S.W., (eds.) Plant Growth Modeling, Simulation, Visualization and Applications (PMA), 2012, 2012 IEEE Fourth International Symposium on. IEEE, 133–140.
Gran, G., Determination of the equivalence point in potentiometric titrations of seawater with hydrochloric acid. Oceanol. Acta 5 (1952), 209–218.
Hall, R.O. Jr, Tank, J.L., Baker, M.A., Rosi-Marshall, E.J., Hotchkiss, E.R., Metabolism, gas exchange, and carbon spiraling in rivers. Ecosystems 19 (2016), 73–86.
Hartmann, J., Lauerwald, R., Moosdorf, N., A brief overview of the GLObal RIver CHemistry Database, GLORICH. Procedia Earth Planetary Sci. 10 (2014), 23–27.
Hotchkiss, E.R., Hall, R.O. Jr, Sponseller, R.A., Butman, D., Klaminder, J., Laudon, H., Rosvall, M., Karlsson, J., Sources of and processes controlling CO2 emissions change with the size of streams and rivers. Nat. Geosci. 8 (2015), 696–699.
Johnson, M.S., Lehmann, J., Riha, S.J., Krusche, A.V., Richey, J.E., Ometto, J.P.H., Couto, E.G., CO2 efflux from Amazonian headwater streams represents a significant fate for deep soil respiration. Geophys. Res. Lett., 35, 2008.
Jolivet, C., Augusto, L., Trichet, P., Arrouays, D., 2007. Forest soils in the Gascony Landes Region: formation, history, properties and spatial varaibility [WWW Document]. URL http://hdl.handle.net/2042/8480.
Kätterer, T., Reichstein, M., Andrén, O., Lomander, A., Temperature dependence of organic matter decomposition: a critical review using literature data analyzed with different models. Biol. Fertility Soils 27 (1998), 258–262.
Kohn, M.J., Carbon isotope compositions of terrestrial C3 plants as indicators of (paleo) ecology and (paleo) climate. Proc. Natl. Acad. Sci. 107 (2010), 19691–19695.
Kokic, J., Wallin, M.B., Chmiel, H.E., Denfeld, B.A., Sobek, S., Carbon dioxide evasion from headwater systems strongly contributes to the total export of carbon from a small boreal lake catchment. J. Geophys. Res.: Biogeosci., 120, 2015, 10.1002/2014JG002706.
Lauerwald, R., Hartmann, J., Moosdorf, N., Kempe, S., Raymond, P.A., What controls the spatial patterns of the riverine carbonate system? – a case study for North America. Chem. Geol. 337 (2013), 114–127.
Legigan, P., 1979. L’élaboration de la formation du sable des Landes, dépôt résiduel de l'environnement sédimentaire pliocène-pléïstocène centre aquitain. Institut de géologie du Bassin d'Aquitaine.
Lewis, E., Wallace, D., Allison, L.J., 1998. Program developed for CO2 system calculations. Carbon Dioxide Information Analysis Center, managed by Lockheed Martin Energy Research Corporation for the US Department of Energy Tennessee.
Lloyd, J., Taylor, J.A., On the temperature dependence of soil respiration. Funct. Ecol., 1994, 315–323.
Ludwig, W., Amiotte-Suchet, P., Munhoven, G., Probst, J.-L., Atmospheric CO2 consumption by continental erosion: present-day controls and implications for the last glacial maximum. Global Planetary Change 16 (1998), 107–120.
Macdonald, M.J., Minor, E.C., Photochemical degradation of dissolved organic matter from streams in the western Lake Superior watershed. Aquatic Sci. 75 (2013), 509–522.
Marx, A., Dusek, J., Jankovec, J., Sanda, M., Vogel, T., Geldern, R., Hartmann, J., Barth, J.A.C., A review of CO2 and associated carbon dynamics in headwater streams: a global perspective. Rev. Geophys., 2017.
Meybeck, M., Global chemical weathering of surficial rocks estimated from river dissolved loads. Am. J. Sci., 1987, 401–428.
Millero, F.J., The thermodynamics of the carbonate system in seawater. Geochimica et Cosmochimica Acta 43 (1979), 1651–1661.
Miyajima, T., Miyajima, Y., Hanba, Y.T., Yoshii, K., Koitabashi, T., Wada, E., Determining the stable isotope ratio of total dissolved inorganic carbon in lake water by GC/C/IIRMS. Limnol. Oceanography 40 (1995), 994–1000.
Moody, C.S., Worrall, F., Sub-daily rates of degradation of fluvial carbon from a peat headwater stream. Aquatic Sci. 78 (2016), 419–431.
Moreaux, V., Lamaud, É., Bosc, A., Bonnefond, J.-M., Medlyn, B.E., Loustau, D., 2011. Paired comparison of water, energy and carbon exchanges over two young maritime pine stands (Pinus pinaster Ait.): effects of thinning and weeding in the early stage of tree growth. Tree physiology tpr048.
O'Leary, M.H., Carbon isotopes in photosynthesis. Bioscience, 1988, 328–336.
Öquist, M.G., Wallin, M., Seibert, J., Bishop, K., Laudon, H., Dissolved inorganic carbon export across the soil/stream interface and its fate in a boreal headwater stream. Environ. Sci. Technol. 43 (2009), 7364–7369.
Polsenaere, P., Abril, G., Modelling CO2 degassing from small acidic rivers using water pCO2, DIC and δ13C-DIC data. Geochimica et Cosmochimica Acta 91 (2012), 220–239, 10.1016/j.gca.2012.05.030.
Polsenaere, P., Savoye, N., Etcheber, H., Canton, M., Poirier, D., Bouillon, S., Abril, G., Export and degassing of terrestrial carbon through watercourses draining a temperate podzolized catchment. Aquatic Sci. 75 (2013), 299–319.
Raymond, P.A., Hartmann, J., Lauerwald, R., Sobek, S., McDonald, C., Hoover, M., Butman, D., Striegl, R., Mayorga, E., Humborg, C., Kortelainen, P., Dürr, H., Meybeck, M., Ciais, P., Guth, P., Global carbon dioxide emissions from inland waters. Nature 503 (2013), 355–359, 10.1038/nature12760.
Raymond, P.A., Zappa, C.J., Butman, D., Bott, T.L., Potter, J., Mulholland, P., Laursen, A.E., McDowell, W.H., Newbold, D., Scaling the gas transfer velocity and hydraulic geometry in streams and small rivers. Limnol. Oceanography: Fluids Environ. 2 (2012), 41–53.
Roberts, B.J., Mulholland, P.J., Hill, W.R., Multiple scales of temporal variability in ecosystem metabolism rates: results from 2 years of continuous monitoring in a forested headwater stream. Ecosystems 10 (2007), 588–606.
Salomons, W., Mook, W.G., Isotope geochemistry of carbonates in the weathering zone. Handbook Environ. Isotope Geochem. 2 (1986), 239–269.
Stallard, R.F., Terrestrial sedimentation and the carbon cycle: coupling weathering and erosion to carbon burial. Global Biogeochem. Cycles 12 (1998), 231–257.
Stumm, W., Morgan, J.J., Chemical equilibria and rates in natural waters. Aquatic Chem., 1996, 521–531.
Thivolle-Cazat, A., Najar, M., Évolution de la productivité et de la récolte du pin maritime dans le massif Landais. Evaluation de la disponibilité future en Gironde. Revue forestière française 53 (2001), 351–355.
Venkiteswaran, J.J., Schiff, S.L., Wallin, M.B., Large carbon dioxide fluxes from headwater boreal and sub-boreal streams. PLoS One, 9, 2014, e101756, 10.1371/journal.pone.0101756.
Vernier, F., Castro, A., 2010. Critère Préservation de l'environnement Sous-critère Eau.
Vidon, P., Allan, C., Burns, D., Duval, T.P., Gurwick, N., Inamdar, S., Lowrance, R., Okay, J., Scott, D., Sebestyen, S., Hot spots and hot moments in riparian zones: Potential for improved water quality management. 2010, Wiley Online Library.
Vogel, J.C., Ehleringer, J.R., Hall, A.E., Farquhar, G.D., Variability of carbon isotope fractionation during photosynthesis. Stable Isotopes and Plant Carbon-Water Relations, 1993, Academic Press Inc., 29–46.
Wachniew, P., Isotopic composition of dissolved inorganic carbon in a large polluted river: the Vistula, Poland. Chem. Geol. 233 (2006), 293–308.
Wallin, M.B., Grabs, T., Buffam, I., Laudon, H., Ågren, A., Öquist, M.G., Bishop, K., Evasion of CO2 from streams – the dominant component of the carbon export through the aquatic conduit in a boreal landscape. Glob Change Biol. 19 (2013), 785–797, 10.1111/gcb.12083.
Weiss, R., Carbon dioxide in water and seawater: the solubility of a non-ideal gas. Marine Chem. 2 (1974), 203–215.
Zhang, J., Quay, P.D., Wilbur, D.O., Carbon isotope fractionation during gas-water exchange and dissolution of CO 2. Geochimica et Cosmochimica Acta 59 (1995), 107–114.