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  4. Coarse and Fine Particulate Organic Matter Transport by a Fourth-Order Mountain Stream to Lake Bourget (France)
 
research article

Coarse and Fine Particulate Organic Matter Transport by a Fourth-Order Mountain Stream to Lake Bourget (France)

Gaillard, Jeremie
•
Chanudet, Vincent
•
Cunillera, Guillaume  
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October 1, 2021
Water

Transport of coarse particulate organic matter (CPOM) derived from forest litterfall has been hardly studied in rivers, unlike fine particulate organic matter (FPOM) or dissolved organic matter (DOM). Yet, many rivers are dammed or run into lakes, and there is growing evidence that CPOM accumulation in river delta participates substantially in ecological processes such as greenhouse gas emissions of lakes and reservoirs. We investigated the transport of CPOM and FPOM by the Leysse River (discharge from 0.2 to 106 m(3) s(-1)) to Lake Bourget (France) in relation to aerial litter deposition, river network length, and discharge. Over a 19-month study period, the volume-weighted mean CPOM and FPOM concentrations were 1.3 and 7.7 g m(-3,) respectively. Most CPOM and FPOM transport occurred during major flood events, and there were power relationships between maximum discharge and particulate organic matter (POM) transport during these events. The annual export of CPOM (190 t AFDM) was 85% of the litter accumulation in autumn on permanent sections of the riverbed (224 t AFDM), which suggests that export is a major process compared to breakdown. Export of CPOM was 1.25 t yr(-1) km(-2) of the forested catchment area. This study highlights the need to account for long-range CPOM transport to describe the fate of litter inputs to streams and to quantify the organic matter input and processing in lakes and reservoirs.

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Type
research article
DOI
10.3390/w13192783
Web of Science ID

WOS:000809874000001

Author(s)
Gaillard, Jeremie
Chanudet, Vincent
Cunillera, Guillaume  
Dambrine, Etienne
Date Issued

2021-10-01

Publisher

MDPI

Published in
Water
Volume

13

Issue

19

Article Number

2783

Subjects

Environmental Sciences

•

Water Resources

•

Environmental Sciences & Ecology

•

forest litterfall

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cpom

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fpom

•

river

•

transport

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lake

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leaf-litter breakdown

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allochthonous input

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forest

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carbon

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decomposition

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retention

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dynamics

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export

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temperature

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particles

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
APHYS  
Available on Infoscience
July 4, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/188857
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