Dataset

Dataset: Physical, chemical, and biological water column characteristics in June 2015 in Kongsfjorden

Poll, van de, W. (Creator), Kulk, G. (Creator), Rozema, P. (Creator), Brussaard, C. P. D. (Creator), Visser, R. (Creator), Buma, A. (Creator), PANGAEA, Data Publisher for Earth & Environmental Science, 2017

Dataset

Description

Glacial meltwater discharge in fjords on the west coast of Spitsbergen is increasing due to climate change. The influence of this discharge on phytoplankton nutrient limitation, composition, productivity and photophysiology was investigated in central (M) and inner (G) Kongsfjorden (79°N, 11°40'E). Freshwater influx intensified stratification during June 2015, coinciding with surface nutrient depletion. Surface nutrient concentrations were negatively correlated with stratification strength at station M. Here, nitrate addition assays revealed increasing N limitation of surface phytoplankton during the second half of June, which was followed by a pronounced compositional change within the flagellate-dominated phytoplankton community as dictyochophytes (85% of chl a) were replaced with smaller haptophytes (up to 60% of chlorophyll a) and prasinophytes (20% of chlorophyll a). These changes were less pronounced at station G, where surface phosphate, ammonium and nitrate concentrations were occasionally higher, and correlated with wind direction, suggesting wind-mediated transport of nutrient-enriched waters to this inner location. Therefore, glacial meltwater discharge mediated nutrient enrichment in the inner fjord, and enhanced stratification in inner and central Kongsfjorden. Surface chlorophyll a and water column productivity showed 3–4-fold variability, and did not correlate with nutrient limitation, euphotic zone depth, or changed taxonomic composition. However, the maximum carbon fixation rate and photosynthetic efficiency showed weak positive correlations to prasinophyte, cryptophyte, and haptophyte chlorophyll a. The present study documented relationships between stratification, N limitation, and changed phytoplankton composition, but surface chlorophyll a concentration, phytoplankton photosynthetic characteristics, and water column productivity in Kongsfjorden appeared to be driven by mechanisms other than N limitation.
Date made available2017
PublisherPANGAEA, Data Publisher for Earth & Environmental Science
Date of data production5-Jun-2015 - 29-Jun-2015
Geospatial polygon (coordinate pairs that describe the corners of a shape in decimal format, separated by commas)Median Latitude: 78.925683 * Median Longitude: 12.197150 * South-bound Latitude: 78.905717 * West-bound Longitude: 12.018817 * North-bound Latitude: 78.945650 * East-bound Longitude: 12.375483
Access to the dataset Open
Contact researchdata@rug.nl

    Keywords on Datasets

  • Climate change, Glacial meltwater, Phytoplankton, Stratification, carbon fixation rate, photosynthetic efficiency, Kongsfjorden
Related Publications
  1. Contrasting glacial meltwater effects on post-bloom phytoplankton on temporal and spatial scales in Kongsfjorden, Spitsbergen

    van de Poll, W., Kulk, G., Rozema, P., Brussaard, CPD., Visser, R. & Buma, A., Jul-2018, In : Elementa: Science of the Anthropocene. 60, 1

    Research output: Contribution to journalArticleAcademicpeer-review

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ID: 71242791