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Maren Voss

Biographic Data

ID6016450
NAMEMaren Voss
GIVEN NAMESMaren
FAMILY NAMEVoss
SIGNATUREVOSS M
AFFILIATIONSLeibniz Institute for Baltic Sea Research Warnemünde
ORCID0000-0002-5827-9062
VERIFIEDYes
TOTAL WORKS5
TOTAL CITATIONS31
AUTHOR COUNT5
EDITOR COUNT0
FIRST PUBLICATION YEAR2007
LATEST PUBLICATION YEAR2023
H-INDEX2
  • The East Gotland Basin (Baltic Sea) as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

    Open Access•Jérôme Kaiser, Serena Abel et al.•ARTICLE•The Anthropocene Review•2023•Cited by: 2•References: 93

    The short sediment core EMB201/7-4 retrieved from the East Gotland Basin, central Baltic Sea, is explored here as a candidate to host the stratigraphical basis for the Anthropocene series and its equivalent Anthropocene epoch, still to be formalized in the Geological Time Scale. The core has been accurately dated back to 1840 CE using a well-established event stratigraphy approach. A pronounced and significant change occurs at 26.5 cm (dated 1956…

  • Factors regulating the coastal nutrient filter in the Baltic Sea

    Open Access•Jacob Carstensen, Daniel J Conley et al.•ARTICLE•AMBIO•2020•Cited by: 1•References: 103

    The coastal zone of the Baltic Sea is diverse with strong regional differences in the physico-chemical setting. This diversity is also reflected in the importance of different biogeochemical processes altering nutrient and organic matter fluxes on the passage from land to sea. This review investigates the most important processes for removal of nutrients and organic matter, and the factors that regulate the efficiency of the coastal filter. Nitro…

  • Hypoxia in the Baltic Sea

    Open Access•Jacob Carstensen, Daniel J Conley et al.•ARTICLE•AMBIO•2014•Cited by: 10•References: 65

    Hypoxia has occurred intermittently over the Holocene in the Baltic Sea, but the recent expansion from less than 10 000 km(2) before 1950 to >60 000 km(2) since 2000 is mainly caused by enhanced nutrient inputs from land and atmosphere. With worsening hypoxia, the role of sediments changes from nitrogen removal to nitrogen release as ammonium. At present, denitrification in the water column and sediments is equally important. Phosphorus is curren…

  • The global nitrogen cycle in the twenty-first century

    Open Access•David Fowler, Mhairi Coyle et al.•ARTICLE•Philosophical Transactions of the…•2013

    Global nitrogen fixation contributes 413 Tg of reactive nitrogen (N r ) to terrestrial and marine ecosystems annually of which anthropogenic activities are responsible for half, 210 Tg N. The majority of the transformations of anthropogenic N r are on land (240 Tg N yr −1 ) within soils and vegetation where reduced N r contributes most of the input through the use of fertilizer nitrogen in agriculture. Leakages from the use of fertilizer N r cont…

  • Internal Ecosystem Feedbacks Enhance Nitrogen-fixing Cyanobacteria Blooms and Complicate Management in the Baltic Sea

    Emil Vahtera, Daniel J Conley et al.•ARTICLE•AMBIO•2007•Cited by: 18•References: 55

    Eutrophication of the Baltic Sea has potentially increased the frequency and magnitude of cyanobacteria blooms. Eutrophication leads to increased sedimentation of organic material, increasing the extent of anoxic bottoms and subsequently increasing the internal phosphorus loading. In addition, the hypoxic water volume displays a negative relationship with the total dissolved inorganic nitrogen pool, suggesting greater overall nitrogen removal wit…

  • Internal Ecosystem Feedbacks Enhance Nitrogen-fixing Cyanobacteria Blooms and Complicate Management in the Baltic Sea

    Emil Vahtera, Daniel J Conley et al.•ARTICLE•AMBIO•2007•Cited by: 18•References: 55

    Eutrophication of the Baltic Sea has potentially increased the frequency and magnitude of cyanobacteria blooms. Eutrophication leads to increased sedimentation of organic material, increasing the extent of anoxic bottoms and subsequently increasing the internal phosphorus loading. In addition, the hypoxic water volume displays a negative relationship with the total dissolved inorganic nitrogen pool, suggesting greater overall nitrogen removal wit…

  • Hypoxia in the Baltic Sea

    Open Access•Jacob Carstensen, Daniel J Conley et al.•ARTICLE•AMBIO•2014•Cited by: 10•References: 65

    Hypoxia has occurred intermittently over the Holocene in the Baltic Sea, but the recent expansion from less than 10 000 km(2) before 1950 to >60 000 km(2) since 2000 is mainly caused by enhanced nutrient inputs from land and atmosphere. With worsening hypoxia, the role of sediments changes from nitrogen removal to nitrogen release as ammonium. At present, denitrification in the water column and sediments is equally important. Phosphorus is curren…

  • The East Gotland Basin (Baltic Sea) as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

    Open Access•Jérôme Kaiser, Serena Abel et al.•ARTICLE•The Anthropocene Review•2023•Cited by: 2•References: 93

    The short sediment core EMB201/7-4 retrieved from the East Gotland Basin, central Baltic Sea, is explored here as a candidate to host the stratigraphical basis for the Anthropocene series and its equivalent Anthropocene epoch, still to be formalized in the Geological Time Scale. The core has been accurately dated back to 1840 CE using a well-established event stratigraphy approach. A pronounced and significant change occurs at 26.5 cm (dated 1956…

  • Factors regulating the coastal nutrient filter in the Baltic Sea

    Open Access•Jacob Carstensen, Daniel J Conley et al.•ARTICLE•AMBIO•2020•Cited by: 1•References: 103

    The coastal zone of the Baltic Sea is diverse with strong regional differences in the physico-chemical setting. This diversity is also reflected in the importance of different biogeochemical processes altering nutrient and organic matter fluxes on the passage from land to sea. This review investigates the most important processes for removal of nutrients and organic matter, and the factors that regulate the efficiency of the coastal filter. Nitro…

  • Internal Ecosystem Feedbacks Enhance Nitrogen-fixing Cyanobacteria Blooms and Complicate Management in the Baltic Sea

    Emil Vahtera, Daniel J Conley et al.•ARTICLE•AMBIO•2007•Cited by: 18•References: 55

    Eutrophication of the Baltic Sea has potentially increased the frequency and magnitude of cyanobacteria blooms. Eutrophication leads to increased sedimentation of organic material, increasing the extent of anoxic bottoms and subsequently increasing the internal phosphorus loading. In addition, the hypoxic water volume displays a negative relationship with the total dissolved inorganic nitrogen pool, suggesting greater overall nitrogen removal wit…

  • The global nitrogen cycle in the twenty-first century

    Open Access•David Fowler, Mhairi Coyle et al.•ARTICLE•Philosophical Transactions of the…•2013

    Global nitrogen fixation contributes 413 Tg of reactive nitrogen (N r ) to terrestrial and marine ecosystems annually of which anthropogenic activities are responsible for half, 210 Tg N. The majority of the transformations of anthropogenic N r are on land (240 Tg N yr −1 ) within soils and vegetation where reduced N r contributes most of the input through the use of fertilizer nitrogen in agriculture. Leakages from the use of fertilizer N r cont…

  • Hypoxia in the Baltic Sea

    Open Access•Jacob Carstensen, Daniel J Conley et al.•ARTICLE•AMBIO•2014•Cited by: 10•References: 65

    Hypoxia has occurred intermittently over the Holocene in the Baltic Sea, but the recent expansion from less than 10 000 km(2) before 1950 to >60 000 km(2) since 2000 is mainly caused by enhanced nutrient inputs from land and atmosphere. With worsening hypoxia, the role of sediments changes from nitrogen removal to nitrogen release as ammonium. At present, denitrification in the water column and sediments is equally important. Phosphorus is curren…

  • Factors regulating the coastal nutrient filter in the Baltic Sea

    Open Access•Jacob Carstensen, Daniel J Conley et al.•ARTICLE•AMBIO•2020•Cited by: 1•References: 103

    The coastal zone of the Baltic Sea is diverse with strong regional differences in the physico-chemical setting. This diversity is also reflected in the importance of different biogeochemical processes altering nutrient and organic matter fluxes on the passage from land to sea. This review investigates the most important processes for removal of nutrients and organic matter, and the factors that regulate the efficiency of the coastal filter. Nitro…

  • The East Gotland Basin (Baltic Sea) as a candidate Global boundary Stratotype Section and Point for the Anthropocene series

    Open Access•Jérôme Kaiser, Serena Abel et al.•ARTICLE•The Anthropocene Review•2023•Cited by: 2•References: 93

    The short sediment core EMB201/7-4 retrieved from the East Gotland Basin, central Baltic Sea, is explored here as a candidate to host the stratigraphical basis for the Anthropocene series and its equivalent Anthropocene epoch, still to be formalized in the Geological Time Scale. The core has been accurately dated back to 1840 CE using a well-established event stratigraphy approach. A pronounced and significant change occurs at 26.5 cm (dated 1956…

Biology (4 works) · Ecology (4 works) · Environmental Science (4 works) · Chemistry (3 works) · Geology (3 works) · Geology (3 works) · Marine and coastal ecosystems (3 works) · Oceanography (3 works) · Baltic sea (2 works) · Ecology (2 works)

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