4.7 Article

Retracing cyanobacteria blooms in the Baltic Sea

Related references

Note: Only part of the references are listed.
Review Geosciences, Multidisciplinary

Global climate change and the Baltic Sea ecosystem: direct and indirect effects on species, communities and ecosystem functioning

Markku Viitasalo et al.

Summary: Climate change has a significant impact on species, communities, and ecosystem functioning in the Baltic Sea, affecting phytoplankton, zooplankton, benthic organisms, and zoobenthos. The effects vary depending on the species and area, with potential consequences for nutrient cycling, eutrophication, and food web dynamics.

EARTH SYSTEM DYNAMICS (2022)

Article Engineering, Environmental

Nitrogen fixation estimates for the Baltic Sea indicate high rates for the previously overlooked Bothnian Sea

Malin Olofsson et al.

Summary: It was found that dense blooms of diazotrophic filamentous cyanobacteria are formed every summer in the Baltic Sea, contributing significantly to nitrogen fixation. The estimated nitrogen fixation rates exceed external nitrogen loading in some regions, highlighting the importance of such estimates for ecosystem management.

AMBIO (2021)

Article Environmental Sciences

Trend correlations for coastal eutrophication and its main local and whole-sea drivers-Application to the Baltic Sea

Guillaume Vigouroux et al.

Summary: The study in the Baltic Sea reveals that different coastal waters have varying levels of eutrophication impact and key influencing factors, highlighting the need to distinguish between more and less isolated coastal waters. Trends in eutrophication in open sea and coastal waters are related to climatic and hydrospheric drivers, while coastal waters are significantly influenced by anthropogenic land-based nutrient loads and sea ice cover duration.

SCIENCE OF THE TOTAL ENVIRONMENT (2021)

Article Ecology

Modeling cyanobacteria life cycle dynamics and historical nitrogen fixation in the Baltic Proper

Jenny Hieronymus et al.

Summary: By introducing a cyanobacteria life cycle model, researchers have successfully improved the representation of cyanobacteria in the Baltic Sea within a three-dimensional coupled model, enhancing their ability to predict seasonal patterns. This model can be utilized to continuously predict internal nitrogen loads in Baltic Sea ecosystem management.

BIOGEOSCIENCES (2021)

Review Ecology

Cyanobacteria blooms in the Baltic Sea: a review of models and facts

Britta Munkes et al.

Summary: The ecosystem of the Baltic Sea is endangered by eutrophication, with international management efforts hindered by factors like cyanobacteria blooms. The lack of comprehensive understanding of controlling cyanobacteria blooms contributes to uncertainties in model-based projections for the Baltic Sea's warming future.

BIOGEOSCIENCES (2021)

Article Marine & Freshwater Biology

Cyanobacterial blooms in the Baltic Sea: Correlations with environmental factors

Mati Kahru et al.

HARMFUL ALGAE (2020)

Article Geosciences, Multidisciplinary

MOMSO 1.0-an eddying Southern Ocean model configuration with fairly equilibrated natural carbon

Heiner Dietze et al.

GEOSCIENTIFIC MODEL DEVELOPMENT (2020)

Article Geosciences, Multidisciplinary

A new perspective on environmental controls of marine nitrogen fixation

A. Landolfi et al.

GEOPHYSICAL RESEARCH LETTERS (2015)

Article Geosciences, Multidisciplinary

MOMBA 1.1-a high-resolution Baltic Sea configuration of GFDL's Modular Ocean Model

H. Dietze et al.

GEOSCIENTIFIC MODEL DEVELOPMENT (2014)

Article Multidisciplinary Sciences

Climate Change and Eutrophication Induced Shifts in Northern Summer Plankton Communities

Sanna Suikkanen et al.

PLOS ONE (2013)

Article Geosciences, Multidisciplinary

Impacts of using spectral nudging on regional climate model RCA4 simulations of the Arctic

P. Berg et al.

GEOSCIENTIFIC MODEL DEVELOPMENT (2013)

Article Meteorology & Atmospheric Sciences

137Cs off Fukushima Dai-ichi, Japan - model based estimates of dilution and fate

H. Dietze et al.

OCEAN SCIENCE (2012)

Article Geosciences, Multidisciplinary

The influence of increasing water turbidity on the sea surface temperature in the Baltic Sea: A model sensitivity study

Ulrike Loptien et al.

JOURNAL OF MARINE SYSTEMS (2011)

Article Ecology

Modelling cyanobacteria in shallow coastal seas

Inga Hense et al.

ECOLOGICAL MODELLING (2010)

Article Geosciences, Multidisciplinary

Magnitude of oceanic nitrogen fixation influenced by the nutrient uptake ratio of phytoplankton

Matthew M. Mills et al.

NATURE GEOSCIENCE (2010)

Article Geosciences, Multidisciplinary

On the dynamics of oxygen, phosphorus and cyanobacteria in the Baltic Sea; A model study

Kari Eilola et al.

JOURNAL OF MARINE SYSTEMS (2009)

Review Oceanography

Contribution of oxygen minimum zone waters to the coastal upwelling off Mauritania

Mirjam S. Glessmer et al.

PROGRESS IN OCEANOGRAPHY (2009)

Review Environmental Sciences

Climate change: a catalyst for global expansion of harmful cyanobacterial blooms

Hans W. Paerl et al.

ENVIRONMENTAL MICROBIOLOGY REPORTS (2009)

Article Geosciences, Multidisciplinary

Upwelling in the Baltic Sea - A review

Andreas Lehmann et al.

JOURNAL OF MARINE SYSTEMS (2008)

Article Ecology

Regulative feedback mechanisms in cyanobacteria-driven systems: a model study

Inga Hense

MARINE ECOLOGY PROGRESS SERIES (2007)

Article Environmental Sciences

The Baltic Algae Watch System - a remote sensing application for monitoring cyanobacterial blooms in the Baltic Sea

Martin Hansson et al.

JOURNAL OF APPLIED REMOTE SENSING (2007)

Review Marine & Freshwater Biology

Importance of the diazotrophs as a source of new nitrogen in the ocean

J LaRoche et al.

JOURNAL OF SEA RESEARCH (2005)

Article Marine & Freshwater Biology

First observation of microcystin-LR in pelagic cyanobacterial blooms in the northern Baltic Sea

KM Karlsson et al.

HARMFUL ALGAE (2005)

Article Marine & Freshwater Biology

Baltic Sea eutrophication:: area-specific ecological consequences

C Rönnberg et al.

HYDROBIOLOGIA (2004)

Article Engineering, Environmental

Hypoxia in the Baltic Sea and basin-scale changes in phosphorus biogeochemistry

DJ Conley et al.

ENVIRONMENTAL SCIENCE & TECHNOLOGY (2002)

Article Environmental Sciences

Experimental simulations with an ecosystem model of the Baltic Sea: A nutrient load reduction experiment

T Neumann et al.

GLOBAL BIOGEOCHEMICAL CYCLES (2002)

Article Geosciences, Multidisciplinary

Towards a 3D-ecosystem model of the Baltic Sea

T Neumann

JOURNAL OF MARINE SYSTEMS (2000)