The hyporheic zone is an ecotone connecting the stream and groundwater ecosystem that plays a significant role for stream biogeochemistry. Water exchange across the stream-sediment interface and biogeochemical reactions in the streambed concur to affect subsurface solute concentrations and eventually nutrient cycling in the fluvial corridor. In this paper we investigate the interplay of hydrological and biogeochemical processes in a duned streambed and their effect on spatial distribution of solutes. We employ a numerical model to simulate the turbulent water flow and the pressure distribution over the dunes, and then to evaluate the flow field and the biogeochemical reactions in the hyporheic sediments. Sensitivity analyses are performed to analyze the influence of hydrological and chemical properties of the system on solute reaction rates. The results demonstrate the effect of stream velocity and sediment permeability on the chemical zonation. Changing sediment permeability as well as stream velocity directly affects the nutrient supply and the residence times in the streambed, thus controlling the reaction rates under the dune. Stream-water quality is also shown to influence the reactive behavior of the sediments. In particular, the availability of dissolved organic carbon determines whether the streambed acts as a net sink or source of nitrate. This study represents a step towards a better understanding of the complex interactions between hydrodynamical and biogeochemical processes in the hyporheic zone.

Nutrient cycling in bedform induced hyporheic zones / Bardini, Laura; Boano, Fulvio; Cardenas, M. B.; Revelli, Roberto; Ridolfi, Luca. - In: GEOCHIMICA ET COSMOCHIMICA ACTA. - ISSN 0016-7037. - STAMPA. - 84:(2012), pp. 47-61. [10.1016/j.gca.2012.01.025]

Nutrient cycling in bedform induced hyporheic zones

BARDINI, LAURA;BOANO, Fulvio;REVELLI, Roberto;RIDOLFI, LUCA
2012

Abstract

The hyporheic zone is an ecotone connecting the stream and groundwater ecosystem that plays a significant role for stream biogeochemistry. Water exchange across the stream-sediment interface and biogeochemical reactions in the streambed concur to affect subsurface solute concentrations and eventually nutrient cycling in the fluvial corridor. In this paper we investigate the interplay of hydrological and biogeochemical processes in a duned streambed and their effect on spatial distribution of solutes. We employ a numerical model to simulate the turbulent water flow and the pressure distribution over the dunes, and then to evaluate the flow field and the biogeochemical reactions in the hyporheic sediments. Sensitivity analyses are performed to analyze the influence of hydrological and chemical properties of the system on solute reaction rates. The results demonstrate the effect of stream velocity and sediment permeability on the chemical zonation. Changing sediment permeability as well as stream velocity directly affects the nutrient supply and the residence times in the streambed, thus controlling the reaction rates under the dune. Stream-water quality is also shown to influence the reactive behavior of the sediments. In particular, the availability of dissolved organic carbon determines whether the streambed acts as a net sink or source of nitrate. This study represents a step towards a better understanding of the complex interactions between hydrodynamical and biogeochemical processes in the hyporheic zone.
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Descrizione: This document is the post-print (i.e. final draft post-refereeing) version of an article published in the journal Geochimica et Cosmochimica Acta. Beyond the journal formatting, please note that there could be minor changes and edits from this document to the final published version. The final published version of this article is accessible from here: http://dx.doi.org/10.1016/j.gca.2012.01.025 This document is made accessible through PORTO, the Open Access Repository of Politecnico di Torino (http://porto.polito.it), in compliance with the Publisher’s copyright policy as reported in the SHERPA-ROMEO website or in the publisher’s website: http://http://www.elsevier.com/ Preferred citation: this document may be cited directly referring to the above mentioned final published version: Bardini L., Boano F., Cardenas M.B., Revelli R., Ridolfi L., 2012, Geochimica et Cosmochimica Acta 84, 47-61.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2494895
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