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Factors Governing Biodegradability of Dissolved Natural Organic Matter in Lake Water
- Source :
- Water, Vol 13, Iss 2210, p 2210 (2021), Water, Volume 13, Issue 16
- Publication Year :
- 2021
-
Abstract
- Dissolved Natural Organic Matter (DNOM) is a heterogeneous mixture of partly degraded, oxidised and resynthesised organic compounds of terrestrial or aquatic origin. In the boreal biome, it plays a central role in element cycling and practically all biogeochemical processes governing the physico-chemistry of surface waters. Because it plays a central role in multiple aquatic processes, especially microbial respiration, an improved understanding of the biodegradability of the DNOM in surface water is needed. Here the current study, we used a relatively cheap and non-laborious analytical method to determine the biodegradability of DNOM, based on the rate and the time lapse at which it is decomposed. This was achieved by monitoring the rate of oxygen consumption during incubation with addition of nutrients. A synoptic method study, using a set of lake water samples from southeast Norway, showed that the maximum respiration rate (RR) and the normalised RR (respiration rate per unit of carbon) of the DNOM in the lakes varied significantly. This RR is conceived as a proxy for the biodegradability of the DNOM. The sUVa of the DNOM and the C:N ratio were the main predictors of the RR. This implies that the biodegradability of DNOM in these predominantly oligotrophic and dystrophic lake waters was mainly governed by their molecular size and aromaticity, in addition to its C:N ratio in the same manner as found for soil organic matter. The normalised RR (independently of the overall concentration of DOC) was predicted by the molecular weight and by the origin of the organic matter. The duration of the first phase of rapid biodegradation of the DNOM (BdgT) was found to be higher in lakes with a mixture of autochthonous and allochthonous DNOM, in addition to the amount of biodegradable DNOM.
- Subjects :
- chemistry.chemical_classification
browning
Biogeochemical cycle
DNOM
Water supply for domestic and industrial purposes
Chemistry
Soil organic matter
Geography, Planning and Development
boreal lakes
Hydraulic engineering
Aquatic Science
Dystrophic lake
Biodegradation
Biochemistry
sUVa
Nutrient
biodegradability
Environmental chemistry
Organic matter
nutrient status
Respiration rate
TC1-978
Surface water
TD201-500
Water Science and Technology
Subjects
Details
- ISSN :
- 20734441
- Database :
- OpenAIRE
- Journal :
- Water, Vol 13, Iss 2210, p 2210 (2021), Water, Volume 13, Issue 16
- Accession number :
- edsair.doi.dedup.....e5b8ce6bdae2485f23dd964c6e784f1a