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Karsten Rinke

Biographic Data

ID6016947
NAMEKarsten Rinke
GIVEN NAMESKarsten
FAMILY NAMERinke
SIGNATURERINKE K
AFFILIATIONSHelmholtz Centre for Environmental Research
ORCID0000-0003-0864-6722
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS2
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2017
LATEST PUBLICATION YEAR2025
H-INDEX1
  • Temperatures and hypolimnetic oxygen in German lakes: Observations, future trends and adaptation potential

    Open Access•Robert Schwefel, Lipa G T Nkwalale et al.•ARTICLE•AMBIO•2025•Cited by: 1•References: 62

    We investigated trends in temperature, stratification, and hypolimnetic oxygen concentration of German lakes under climate change using observational data and hydrodynamic modelling. Observations from 46 lakes revealed that annually averaged surface temperatures increased by + 0.5 °C between 1990 and 2020 while bottom temperatures remained almost constant. Modelling of 12 lakes predicted further increases in surface temperatures by 0.3 °C/decade …

  • Cascading climate effects in deep reservoirs: Full assessment of physical and biogeochemical dynamics under ensemble climate projections and ways towards adaptation

    Open Access•Chenxi Mi, Tom Shatwell et al.•ARTICLE•AMBIO•2025•Cited by: 1•References: 47

    We coupled twenty-first century climate projections with a well-established water quality model to depict future ecological changes of Rappbode Reservoir, Germany. Our results document a chain of climate-driven effects propagating through the aquatic ecosystem and interfering with drinking water supply: intense climate warming (RCP8.5 scenario) will firstly trigger a strong increase in water temperatures, in turn leading to metalimnetic hypoxia, …

  • Increasing exposure to global climate change and hopes for the era of climate adaptation: An aquatic perspective

    Open Access•Karsten Rinke, Chenxi Mi et al.•ARTICLE•AMBIO•2025•References: 33

    The Anthropocene is characterised by technological innovations, increases in industrial productivity, accelerating globalisation, and a rising computer- and information-based cultural evolution. At the same time , humankind is leaving significant footprints on its environment, with pollution approaching or even trespassing planetary boundaries. Since the 1980s, accelerating climate change has been severely affecting biomes and Earth’s systems wit…

  • Integrated modelling and management of water resources: The ecosystem perspective on the nexus approach

    Open Access•Stephan Hülsmann, Janez Sušnik et al.•ARTICLE•Current Opinion in Environmental…•2019•References: 3

  • Long-term development of hypolimnetic oxygen depletion rates in the large Lake Constance

    Open Access•Justin Rhodes, Justin S Rhodes et al.•ARTICLE•AMBIO•2017•References: 43

  • Temperatures and hypolimnetic oxygen in German lakes: Observations, future trends and adaptation potential

    Open Access•Robert Schwefel, Lipa G T Nkwalale et al.•ARTICLE•AMBIO•2025•Cited by: 1•References: 62

    We investigated trends in temperature, stratification, and hypolimnetic oxygen concentration of German lakes under climate change using observational data and hydrodynamic modelling. Observations from 46 lakes revealed that annually averaged surface temperatures increased by + 0.5 °C between 1990 and 2020 while bottom temperatures remained almost constant. Modelling of 12 lakes predicted further increases in surface temperatures by 0.3 °C/decade …

  • Cascading climate effects in deep reservoirs: Full assessment of physical and biogeochemical dynamics under ensemble climate projections and ways towards adaptation

    Open Access•Chenxi Mi, Tom Shatwell et al.•ARTICLE•AMBIO•2025•Cited by: 1•References: 47

    We coupled twenty-first century climate projections with a well-established water quality model to depict future ecological changes of Rappbode Reservoir, Germany. Our results document a chain of climate-driven effects propagating through the aquatic ecosystem and interfering with drinking water supply: intense climate warming (RCP8.5 scenario) will firstly trigger a strong increase in water temperatures, in turn leading to metalimnetic hypoxia, …

  • Long-term development of hypolimnetic oxygen depletion rates in the large Lake Constance

    Open Access•Justin Rhodes, Justin S Rhodes et al.•ARTICLE•AMBIO•2017•References: 43

  • Integrated modelling and management of water resources: The ecosystem perspective on the nexus approach

    Open Access•Stephan Hülsmann, Janez Sušnik et al.•ARTICLE•Current Opinion in Environmental…•2019•References: 3

  • Temperatures and hypolimnetic oxygen in German lakes: Observations, future trends and adaptation potential

    Open Access•Robert Schwefel, Lipa G T Nkwalale et al.•ARTICLE•AMBIO•2025•Cited by: 1•References: 62

    We investigated trends in temperature, stratification, and hypolimnetic oxygen concentration of German lakes under climate change using observational data and hydrodynamic modelling. Observations from 46 lakes revealed that annually averaged surface temperatures increased by + 0.5 °C between 1990 and 2020 while bottom temperatures remained almost constant. Modelling of 12 lakes predicted further increases in surface temperatures by 0.3 °C/decade …

  • Cascading climate effects in deep reservoirs: Full assessment of physical and biogeochemical dynamics under ensemble climate projections and ways towards adaptation

    Open Access•Chenxi Mi, Tom Shatwell et al.•ARTICLE•AMBIO•2025•Cited by: 1•References: 47

    We coupled twenty-first century climate projections with a well-established water quality model to depict future ecological changes of Rappbode Reservoir, Germany. Our results document a chain of climate-driven effects propagating through the aquatic ecosystem and interfering with drinking water supply: intense climate warming (RCP8.5 scenario) will firstly trigger a strong increase in water temperatures, in turn leading to metalimnetic hypoxia, …

  • Increasing exposure to global climate change and hopes for the era of climate adaptation: An aquatic perspective

    Open Access•Karsten Rinke, Chenxi Mi et al.•ARTICLE•AMBIO•2025•References: 33

    The Anthropocene is characterised by technological innovations, increases in industrial productivity, accelerating globalisation, and a rising computer- and information-based cultural evolution. At the same time , humankind is leaving significant footprints on its environment, with pollution approaching or even trespassing planetary boundaries. Since the 1980s, accelerating climate change has been severely affecting biomes and Earth’s systems wit…

Ecology (5 works) · Environmental Science (5 works) · Biology (4 works) · Ecology (4 works) · Geology (4 works) · Geology (4 works) · Aquatic Ecosystems and Phytoplankton Dynamics (3 works) · Climatology (3 works) · Fish Ecology and Management Studies (3 works) · Adaptation (eye (2 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae