Frontiers in Marine Science · 2021 · 32 citations · 130 references
Particulate Organic CarbonEutrophicationEngineeringMarine ChemistryMarine SystemsOceanographyCoastal WaterEnvironmental DriversEarth ScienceOrganic GeochemistryOrganic CarbonNutrient StoichiometryOceanic SystemsCoastal GeochemistryBiogeochemistrySediment-water InteractionSedimentologyTime Series AnalysisPhytoplankton EcologyCoastal SystemsSouthwestern Baltic SeaMarine BiologyOrganic Matter Fractions
Dissolved and particulate organic carbon (DOC, POC) and nitrogen (DON, PON) constitute essential nutrient and energy sources to heterotrophic microbes in aquatic systems. Especially in the shallow coastal ocean, the concentrations are highly variable on short timescales, and cycling is heavily affected by different sources and environmental drivers. We analyzed surface water organic carbon and nitrogen concentrations determined weekly from 2010 to 2020 in the nearshore southwestern Baltic Sea (Heiligendamm, Germany) in relation to physical, chemical and biological parameters available since 1988. Mixing of low-DOC North Sea water with high-DOC Baltic Sea water, as well as in situ primary production, were confirmed as the main drivers of organic carbon and nitrogen concentrations. Tight coupling between POC, PON, chlorophyll a and phytoplankton carbon with DON seasonal dynamics corroborated the close relationship between phytoplankton production and degradation of organic nutrients with preferential remineralization of nitrogen. Significant changes in air and water temperature, salinity, and inorganic nutrients over time indicated effects of climate change and improved water quality management in the eutrophic Baltic Sea. Bulk organic nutrient concentrations did not change over time, while the salinity-corrected fraction of the DOC increased by about 0.6 μmol L –1 yr –1 . Concurrently, chlorophyll a and Bacillariophyceae and Cryptophyceae carbon increased, denoting a potential link to primary productivity. The high variability of the shallow system exacerbates the detection of trends, but our results emphasize the value of these extended samplings to understand coupled biogeochemical cycling of organic matter fractions and to detect trends in these important carbon reservoirs.
130
The NCEP/NCAR 40-Year Reanalysis Project
Eugenia Kalnay, Masao Kanamitsu, Robert Kistler et al. · Bulletin of the American Meteorological Society · 1996 · 29K citations
The Ecological Role of Water-Column Microbes in the Sea
F Azam, Tom Fenchel, JG Field et al. · Marine Ecology Progress Series · 1983 · 5.4K citations · Full text