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Growth response, toxin/pigment/nutrient content and photophysiological parame...
The effect of different light intensities (20, 100 and 200 μmol photons m-2 s-1) on the growth response, toxin/pigment/nutrient content and photophysiology of Alexandrium... -
Indoor laboratory experiment testing the effect of different nitrogen sources...
The effect of different nitrogen sources (N-deplete, NO3-, NH4+, Urea) on the growth response and toxin content of Alexandrium pseudogonyaulax, isolated in 2020 from the Danish... -
Borehole temperature data profiles over depth in sediment core PG2411-1 in Po...
Refer to dataset doi:10.1594/PANGAEA.922218 for all raw temperature measurements at 10 minute intervals from 17.04.2017 23:00 to 22.04.2017 14:40 (local Tiksi time).The... -
Glacier mass and area changes on the Kenai Peninsula, Alaska, 1986–2016
Several studies reported glaciers on the Kenai Peninsula in Alaska have experienced widespread recession since the Little Ice Age Maximum. However, most studies have been... -
Long-term temperature, pressure and sound speed data from seafloor stations c...
In-situ measurements of pressure (kPa), high-resolution temperature data (°C) and sound speed (m/s) were acquired by a total of 23 stations. The stations were deployed on the... -
Thaw depth of tree mounds from northeastern Siberia (S4)
This dataset has no description
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Soil moisture of tree mounds from northeastern Siberia (S2)
This dataset has no description
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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... -
Degraded photopigment contents in sinking diatom aggregates incubated in rota...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Average unsaturation degree (AUD) of lipids in 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... -
Cumulative total carbon loss through aerobic respiration and leakage of disso...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Leakage of dissolved organic carbon (DOC) from settled Skeletonema marinoi ce...
The effect of increasing hydrostatic pressure on the microbial degradation, the organic matter composition, and the microbiome of 'marine snow' particles was studied in... -
Leakage of dissolved organic carbon (DOC) and photopigments from the diatom S...
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... -
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... -
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... -
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... -
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... -
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...