Small-scale topography explains patterns and dynamics of dissolved organic carbon exports from the riparian zone of a temperate, forested catchment
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Published:2021-11-30
Issue:12
Volume:25
Page:6067-6086
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ISSN:1607-7938
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Container-title:Hydrology and Earth System Sciences
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language:en
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Short-container-title:Hydrol. Earth Syst. Sci.
Author:
Werner Benedikt J., Lechtenfeld Oliver J.ORCID, Musolff Andreas, de Rooij Gerrit H.ORCID, Yang Jie, Gründling Ralf, Werban UlrikeORCID, Fleckenstein Jan H.ORCID
Abstract
Abstract. Export of dissolved organic carbon (DOC) from riparian zones (RZs) is
an important component of temperate catchment carbon budgets, but
export mechanisms are still poorly understood. Here we show that DOC
export is predominantly controlled by the microtopography of the RZ
(lateral variability) and by riparian groundwater level dynamics
(temporal variability). From February 2017 until July 2019 we studied
topography, DOC quality and water fluxes and pathways in the RZ
of a small forested catchment and the receiving stream in central
Germany. The chemical classification of the riparian groundwater and
surface water samples (n=66) by Fourier transform ion cyclotron
resonance mass spectrometry revealed a cluster of plant-derived,
aromatic and oxygen-rich DOC with high concentrations
(DOCI) and a cluster of microbially processed, saturated
and heteroatom-enriched DOC with lower concentrations
(DOCII). The two DOC clusters were connected to locations
with distinctly different values of the high-resolution topographic
wetness index (TWIHR; at 1 m resolution) within the study
area. Numerical water flow modeling using the integrated surface–subsurface model HydroGeoSphere revealed that surface runoff from high-TWIHR zones associated with the DOCI cluster
(DOCI source zones) dominated overall discharge generation
and therefore DOC export. Although corresponding to only 15 % of the
area in the studied RZ, the DOCI source zones contributed
1.5 times the DOC export of the remaining 85 % of the area
associated with DOCII source zones. Accordingly, DOC quality
in stream water sampled under five event flow conditions (n=73) was
closely reflecting the DOCI quality. Our results suggest
that DOC export by surface runoff along dynamically evolving surface
flow networks can play a dominant role for DOC exports from RZs with
overall low topographic relief and should consequently be considered
in catchment-scale DOC export models. We propose that proxies of
spatial heterogeneity such as the TWIHR can help to
delineate the most active source zones and provide a mechanistic basis
for improved model conceptualization of DOC exports.
Publisher
Copernicus GmbH
Subject
General Earth and Planetary Sciences,General Engineering,General Environmental Science
Reference89 articles.
1. Abbott, B. W., Baranov, V., Mendoza-Lera, C., Nikolakopoulou, M., Harjung, A., Kolbe, T., Balasubramanian, M. N., Vaessen, T. N., Ciocca, F., Campeau, A., Wallin, M. B., Romeijn, P., Antonelli, M., Goncalves, J., Datry, T., Laverman, A. M., de Dreuzy, J. R., Hannah, D. M., Krause, S., Oldham, C., and Pinay, G.: Using multi-tracer inference to move beyond single-catchment ecohydrology, Earth-Sci. Rev., 160, 19–42, https://doi.org/10.1016/j.earscirev.2016.06.014, 2016. 2. Allen, R. G., Pereira, L. S., Raes, D., and Smith, M.:
Crop evapotranspiration. Guidelines for computing crop water
requirements, in: Irrigation and Drainage, edited by: FAO, FAO, Rome, 1998. 3. Andersson, J.-O. and Nyberg, L.: Using official map data on topography, wetlands and vegetation cover for prediction of stream water chemistry in boreal headwater catchments, Hydrol. Earth Syst. Sci., 13, 537–549, https://doi.org/10.5194/hess-13-537-2009, 2009. 4. Battin, T. J., Kaplan, L. A., Newbold, J. D., and Hendricks, S. P.: A mixing model analysis of stream solute dynamics and the contribution of a hyporheic zone to ecosystem function, Freshwater Biol., 48, 995–1014, https://doi.org/10.1046/j.1365-2427.2003.01062.x, 2003. 5. Battin, T. J., Kaplan, L. A., Findlay, S., Hopkinson, C. S., Marti, E., Packman, A. I., Newbold, J. D., and Sabater, F.: Biophysical controls on organic carbon fluxes in fluvial networks, Nat. Geosci., 1, 95–100, https://doi.org/10.1038/ngeo101, 2008.
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