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Particulate Organic Carbon Flux Estimated With Video Plankton Recorder and Ma...
Particulate Organic Carbon (POC) fluxes are poorly constrained globally. Optical methods pose an efficient non-invasive alternative to catching physical particles in order to... -
Size bins for aggregates exposed to varying concentrations of microfibres
Microfibre abundance in aggregates were defined by counting microfibres observed in images of aggregates and then extrapolated per mm of the aggregate imaged. Microfiber... -
Microfibre abundance in aggregates exposed to varying concentrations of micro...
Aggregate size or ECD is measured in mm. The video recordings were used to determine size-specific sinking velocities of the individually formed aggregates based on the method... -
Physical properties of aggregates exposed to varying concentrations of microf...
Size, volume and settling velocity were measured by making a recording of the rotating tanks using a commercial digital single-lens reflex camera (Canon) equipped with a... -
Microfibers analysis on diatom aggregates of skeletonema marinoi in laborator...
Plastics are pervasive in marine ecosystems and ubiquitous in both shallow and deep oceans. Microfibers, amongst other microplastics, accumulate in deep sea sediments at... -
Abundance of free-living microorganisms in the water surrounding sinking diat...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Pressure-induced leakage of dissolved organic matter (DOM) from diatom-bacter...
Model diatom aggregates were produced from the diatom Skeletonema marinoi and the natural microbial community of seawater collected in Oeresund (Stief et al. 2023), Central... -
Pressure-induced leakage of dissolved organic matter (DOM) from different dia...
Four diatom strains obtained from different culture collections were grown to stationary phase in L1 medium plus silicate (Guillard & Hargraves 1993) at 15°C under a... -
Microbial cell abundance in sinking diatom aggregates incubated in rotating p...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Effects of increasing hydrostatic pressure on sinking diatom aggregates
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Particulate amino acid and carbohydrates and particulate organic carbon and n...
We collected in situ marine snow aggregates with a Marine Snow Catcher (MSC). The MSC allows studying the composition of suspended and fast-sinking organic matter from intact in... -
Particulate amino acid and carbohydrates and particulate organic carbon and n...
We collected in situ marine snow aggregates with a Marine Snow Catcher (MSC). The MSC allows studying the composition of suspended and fast-sinking organic matter from intact in... -
Cumulative carbon loss through aerobic respiration from sinking diatom aggreg...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Cumulative carbon loss through leakage of dissolved organic carbon (DOC) from...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Dissolved organic carbon (DOC) concentrations in the water surrounding sinkin...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Oxygen consumption rate of sinking diatom aggregates incubated in rotating pr...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Oxygen concentrations in the water surrounding sinking diatom aggregates incu...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Lipid contents in sinking diatom aggregates incubated in rotating pressure an...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Photopigment contents in sinking diatom aggregates incubated in rotating pres...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Exoenzyme activities associated with sinking diatom aggregates incubated in r...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in...
