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Short term fluctuations in dissolved organic matter concentrations in streamflow draining a forested watershed and their relation to the catchment budget

Identifieur interne : 001578 ( Istex/Checkpoint ); précédent : 001577; suivant : 001579

Short term fluctuations in dissolved organic matter concentrations in streamflow draining a forested watershed and their relation to the catchment budget

Auteurs : I. D. L. Foster [Royaume-Uni] ; I. C. Grieve [Royaume-Uni]

Source :

RBID : ISTEX:9732791CAA233B8BF87ADB8617CD420DC89FE631

English descriptors

Abstract

Dissolved organic matter (DOM) concentrations in throughfall, throughflow, and runoff were recorded in a small (95 ha) woodland catchment in North Warwickshire for a period of eight weeks following a prolonged dry spell. DOM is shown to be positively related to stream discharge over the sampling period, although distinctive flushing effects were identified. The net contribution of DOM to total dissolved solids load carried in the river was only 2.4 per cent, and represented significantly less than published carbon losses by mineralization of soil organic matter. Throughfall inputs were some 100 times higher than streamflow outputs from the catchment.

Url:
DOI: 10.1002/esp.3290070503


Affiliations:


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ISTEX:9732791CAA233B8BF87ADB8617CD420DC89FE631

Le document en format XML

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<title level="j">Earth Surface Processes and Landforms</title>
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<div type="abstract" xml:lang="en">Dissolved organic matter (DOM) concentrations in throughfall, throughflow, and runoff were recorded in a small (95 ha) woodland catchment in North Warwickshire for a period of eight weeks following a prolonged dry spell. DOM is shown to be positively related to stream discharge over the sampling period, although distinctive flushing effects were identified. The net contribution of DOM to total dissolved solids load carried in the river was only 2.4 per cent, and represented significantly less than published carbon losses by mineralization of soil organic matter. Throughfall inputs were some 100 times higher than streamflow outputs from the catchment.</div>
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