Inicio  /  Water Research  /  Vol: 99 Par: 0 (2016)  /  Artículo
ARTÍCULO
TITULO

Hydrological conditions control in situ DOM retention and release along a Mediterranean river

A. Butturini    
A. Guarch    
A.M. Romaní    
A. Freixa    
... E. Ejarque    

Resumen

Uncertainties exist regarding the magnitude of in situ dissolved organic matter (DOM) processing in lotic systems. In addition, little is known about the effects of extreme hydrological events on in-stream DOM retention or release during downriver transport. This study quantified the net in-stream retention/release efficiencies (?) of dissolved organic carbon (DOC) and its humic and protein-like fluorescent fractions along a Mediterranean river during drought, baseflow and flood conditions. High performance size exclusion chromatography was used to describe the apparent size distributions of the humic and protein-like DOM moieties. A snapshot mass balance allowed estimating the ? values of DOC and humic and protein-like fractions. Significant DOM net retention (? < 0) was detected during the drought condition and the protein-like fraction was more retained than the humic-like fraction and bulk DOC. In addition, small substances were more efficiently retained than larger substances. DOC retention decreased under baseflow conditions, but it remained significant. The humic and protein-like net efficiencies exhibited high variability, but the net retention were not significant. From a longitudinal perspective, the entire fluvial corridor contributed net retention of DOC and humic and protein-like moieties net retention during drought condition. In contrast, net retention/release efficiencies exhibited spatial variability during baseflow condition. The flood preferentially mobilized large size DOM molecules and the fluvial corridor behaved as a homogeneous passive DOM (? = 0) conduit. This research highlights the relevance of hydrological extreme events on the magnitude of DOM retention/release mass balance and emphasizes the need to perform measurements during these conditions to quantify the impact of fluvial corridors on DOM fate and transport.

 Artículos similares

       
 
Pawel Napiórkowski, Martyna Bakowska, Natalia Mrozinska, Monika Szymanska, Nikola Kolarova and Krystian Obolewski    
The zooplankton community structure and diversity were analysed against the gradient of floodplain lakes connectivity and water level under different flood-pulse dynamics in the Vistula River. The lakes differed in terms of hydrology, among others in the... ver más
Revista: Water

 
Andrea Momblanch, Ian P. Holman and Sanjay K. Jain    
Global change is expected to have a strong impact in the Himalayan region. The climatic and orographic conditions result in unique modelling challenges and requirements. This paper critically appraises recent hydrological modelling applications in Himala... ver más
Revista: Water

 
Vanessa de Arruda Souza, Débora Regina Roberti, Anderson Luis Ruhoff, Tamíres Zimmer, Daniela Santini Adamatti, Luis Gustavo G. de Gonçalves, Marcelo Bortoluzzi Diaz, Rita de Cássia Marques Alves and Osvaldo L. L. de Moraes    
Evapotranspiration (ET) is an important component of the hydrological cycle. Understanding the ET process has become of fundamental importance given the scenario of global change and increasing water use, especially in the agricultural sector. Determinin... ver más
Revista: Water

 
Chengcheng Peng, Hengfei Li, Nan Yang and Mingzhi Lu    
Peatlands store large amounts of carbon in wetland ecosystems. The hydrological conditions within peatlands are important factors that affect the biochemical cycle and patterns of greenhouse gas emissions in these peatlands. This study was carried out in... ver más
Revista: Water

 
Pavel Semkin, Kirill Baigubekov, Yuri Barabanshchikov, Sergey Gorin, Alexey Koltunov, Sergey Sagalaev, Olga Ulanova, Petr Tishchenko, Maria Shvetsova, Elena Shkirnikova, Pavel Tishchenko and Jing Zhang    
Understanding the factors that control carbonate systems is an important goal due to the complex interactions between the hydrophysical and chemical?biological conditions in coastal basins. The results of this paper present the state of the carbonate sys... ver más