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Title [en]
Seaside - A multidisciplinary study of maritime environmental history
Abstract [en]
Within the chosen timeframe of this project ranging from the onset of Neolithic (in Sweden some 6000 years ago), it is quite well known that major changes in land-use have occurred. Deliberate removal of forests, achieved by cutting or fire, has been one of the most significant ways in which humans have modified the environment. Less well known are the environmental effects of historical changes in land-use, especially when it comes to the ecosystem response in coastal and open parts of the Baltic Sea. The overarching aim of this proposed project is to disentangle the long-term of human impact (through the periods of expansion, colonization, deforestation versus the periods of recession, retreat, reforestation) and natural driven processes (e.g. earlier climate change and isostatic uplift) to determine the mutual significance of the multiple stressors resulting in events of hypoxia in the Baltic Sea. The geographical focus is put on the Baltic Sea coastal zone in order to investigate how the ecosystem has responded to changes in land-use, as well as the other way around; how humans responded to changes in the configuration of the landscape (e.g. shifting shorelines). Our study is multidisciplinary and has a unique combination of expertise in both Earth Science and Archaeological Landscape analyze. Methodologically we will focus on a couple of specific small scale Baltic coastal sites chosen carefully from a combination of these two perspectives. The practical fieldwork and the sampling strategy will be a combination of our joint experience from paleoecology and maritime archaeology. Selected area for the case study is Gamlebyviken in the Tjust area, situated in the province of Småland, a rural coastal area exceptionally rich regarding prehistoric remains from different periods, and with a topography which makes it a very well suited place for this kind of study. We believe that the historical development of the selected case study area is representative for many similar areas around the Baltic Sea. Our results can thus be extrapolated and used regionally. The results will be used to obtain an overall picture of environmental change through time, important to consider when aiming for sustainable environmental governance of the whole Baltic Sea. Through our proposed multidisciplinary research strategy, we take a novel holistic approach which will lead to a more integrated view on natural variation, climate change, human impact and adaptation through time.
Publications (5 of 5) Show all publications
Dahl, M., Braun, S., Asplund, M. E., Björk, M., Kaal, J., Linderholm, H. W., . . . Gullström, M. (2026). Coastal land uplift and intensified land-use influence seagrass carbon and nitrogen sink capacity over millennial timescales. Scientific Reports, 16(1), Article ID 16263.
Open this publication in new window or tab >>Coastal land uplift and intensified land-use influence seagrass carbon and nitrogen sink capacity over millennial timescales
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2026 (English)In: Scientific Reports, E-ISSN 2045-2322, Vol. 16, no 1, article id 16263Article in journal (Refereed) Published
Abstract [en]

Seagrass meadows store sedimentary carbon and nitrogen and thus play an important role in climate change mitigation and nutrient retention globally. Here we reconstruct the impact of land-use and coastal land uplift on millennial–scale seagrass (Zostera marina) blue carbon and nitrogen accumulation in the Baltic Sea based on a multiproxy paleoreconstruction approach. We show that increased landscape clearance resulted in higher terrestrial runoff and increased accumulation of carbon and nitrogen, whereas land uplift led to hydrodynamically sheltered environments facilitating seagrass colonization, occurring 1700 and > 4000 years ago. The establishment of the seagrass meadows resulted in enhancement of the quality of carbon and nitrogen stocks with increased lignin contents. Seagrass establishment also likely supported export of organic matter to surrounding unvegetated areas and thereby contributed to carbon and nitrogen accumulation beyond habitat boundaries. The findings show that the long-term carbon and nitrogen accumulation rates and permanence are shaped by land cultivation and geomorphological changes and highlights the importance of seagrass conservation for maintaining thousands of years of sedimentary carbon and nitrogen storage.

Place, publisher, year, edition, pages
Springer Nature, 2026
Keywords
Blue carbon, Baltic sea, Zostera marina, Land-use, Coastal change, Paleoreconstruction
National Category
Environmental Sciences
Research subject
Baltic and East European studies
Identifiers
urn:nbn:se:sh:diva-60193 (URN)10.1038/s41598-026-54674-y (DOI)001778027800002 ()42191823 (PubMedID)2-s2.0-105040409244 (Scopus ID)
Funder
The Foundation for Baltic and East European Studies, 21‐GP‐0005The Foundation for Baltic and East European Studies, 21‐PD2‐0002The Foundation for Baltic and East European Studies, 55/2017Swedish Research Council Formas, 2021‐0128
Available from: 2026-06-03 Created: 2026-06-03 Last updated: 2026-09-02Bibliographically approved
Katrantsiotis, C., Vinogradova, O., Dahl, M., Palm, V., Rönnby, J., Gaillard, M.-J., . . . Andrén, E. (2025). Holocene shoreline displacement, land-cover change and human settlement distribution on the southeast coast of Sweden. Journal of Quaternary Science, 40(1), 124-140
Open this publication in new window or tab >>Holocene shoreline displacement, land-cover change and human settlement distribution on the southeast coast of Sweden
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2025 (English)In: Journal of Quaternary Science, ISSN 0267-8179, E-ISSN 1099-1417, Vol. 40, no 1, p. 124-140Article in journal (Refereed) Published
Abstract [en]

In this study, we investigate the interplay between relative sea-level changes, the development of human settlements and land-cover changes in the Vastervik-Gamlebyviken region on the southeast coast of Sweden, an important archaeological area from the Mesolithic until recent times. The reconstruction of shore displacement was based on diatom analysis of radiocarbon-dated sediment cores from three lake basins combined with previously published lake isolation data. The resulting curve was used to construct palaeogeographical maps for selected time windows. Land-cover changes were inferred from pollen data from three lakes using the Landscape Reconstruction Algorithm with its two models REVEALS and LOVE. Our data suggest that people took advantage of the land gained due to an overall fall in relative sea level from similar to 35 to similar to 3 metres above sea level (m a.s.l.) over the last 10 000 years, interrupted by periods of transgression and highstands. A sea-level regression of similar to 16 m occurred between 10 000 and 8500 cal a BP followed by an similar to 3-4-m sea-level rise, reaching similar to 22 m a.s.l. at similar to 7500 cal a BP, which corresponds to the maximum Littorina Sea shoreline in the area. The available archaeological findings for the Mesolithic and Early Neolithic (8950-5450 cal a BP) agree well with the shore displacement curve showing that settlements and human activities were concentrated along or above the shorelines as defined from our study. During the transgression after 8500 cal a BP, however, seasonal settlements were submerged (as shown by findings of polished stone tools and hearths buried in sand) and used again during the subsequent regression after 4600 cal a BP. The Iron Age (2450-900 cal a BP) corresponds partly to a highstand at similar to 11 m a.s.l. between 3600 and 2000 cal a BP and partly to a rapid regression of similar to 8 m between 2000 and 1500 cal a BP, and both periods coincide with known human activities along the contemporaneous shoreline. The rapid regression after 2000 cal a BP corresponds to an increase of both regional and local landscape openness and the beginning of a continuous record of crop cultivation.

Place, publisher, year, edition, pages
John Wiley & Sons, 2025
Keywords
Baltic Sea, diatoms, land-use reconstruction, LOVE model, Neolithic shore displacement, REVEALS model, settlements
National Category
Archaeology Geology Environmental Sciences
Research subject
Baltic and East European studies
Identifiers
urn:nbn:se:sh:diva-55207 (URN)10.1002/jqs.3666 (DOI)001344654300001 ()2-s2.0-85208045566 (Scopus ID)
Funder
The Foundation for Baltic and East European Studies, 55/2017The Foundation for Baltic and East European Studies, 21-PD2-0002
Available from: 2024-11-18 Created: 2024-11-18 Last updated: 2025-10-07Bibliographically approved
Vinogradova, O., Gaillard, M.-J., Andrén, E., Palm, V., Rönnby, J., Dahl, M., . . . Andrén, T. (2024). 3000 Years of past regional and local land-use and land-cover change in the southeastern Swedish coastal area: Early human-induced increases in landscape openness as a potential nutrient source to the Baltic Sea coastal waters. The Holocene, 34(1), 56-73
Open this publication in new window or tab >>3000 Years of past regional and local land-use and land-cover change in the southeastern Swedish coastal area: Early human-induced increases in landscape openness as a potential nutrient source to the Baltic Sea coastal waters
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2024 (English)In: The Holocene, ISSN 0959-6836, E-ISSN 1477-0911, Vol. 34, no 1, p. 56-73Article in journal (Refereed) Published
Abstract [en]

Reconstructions of past land use and related land-cover changes at local and regional scales are needed to evaluate the potential long-term impacts of land use on the coastal waters of the Baltic Sea. In this purpose, we selected the Gamleby area at the Swedish Baltic Sea coast for a case study. We use a new, high resolution pollen record from a small lake (Lillsjön) located 3.6 km NNW of the bay Gamlebyviken and detailed analysis of the available archeological data to reconstruct local land-use changes over the last 3000 years. To estimate land-cover change at local (2–3 km radius area) and regional (50 km radius area) scales we use four additional, published pollen records from two small and two large lakes (25–70 km S of Lillsjön) and the Landscape Reconstruction Algorithm, a pollen-vegetation modeling scheme. Results show that regional and local (small lakes Lillsjön and Hyttegöl) land-cover changes are comparable over the last 1500 years (Late Iron Age to present), and that landscape openness was much larger locally than regionally (difference of 20–40% cover over the last 500 years). The periods of largest potential impacts on the Gamlebyviken Bay from regional and local land use are 200–950 CE (Late Iron Age) and 1450 CE to present, and of lowest potential impacts 950–1450 CE. The question on whether the large landscape openness 1150–50 BCE and significant afforestation 50 BCE–200 CE reconstructed for Lillsjön’s area are characteristic of the Gamlebyviken region will require additional pollen records in the catchment area. 

Place, publisher, year, edition, pages
Sage Publications, 2024
Keywords
Archeological data, Gamlebyviken, Landscape Reconstruction Algorithm, Late Holocene, pollen analysis, REVEALS and LOVE models
National Category
Environmental Sciences Geology
Research subject
Baltic and East European studies
Identifiers
urn:nbn:se:sh:diva-52570 (URN)10.1177/09596836231200433 (DOI)001084189400001 ()2-s2.0-85174272828 (Scopus ID)
Funder
The Foundation for Baltic and East European Studies, 21-PD2-0002The Foundation for Baltic and East European Studies, 55/2017
Available from: 2023-10-26 Created: 2023-10-26 Last updated: 2025-12-18Bibliographically approved
Andrén, E., Vinogradova, O., Lönn, M., Belle, S., Dahl, M., Palm, V., . . . Andrén, T. (2024). Modern land use changes drive shifts in nutrient cycling and diatom assemblages in the Baltic Sea coastal zone: A millennial perspective with a case study from Gamlebyviken, Swedish east coast. Quaternary Science Reviews, 346, Article ID 109058.
Open this publication in new window or tab >>Modern land use changes drive shifts in nutrient cycling and diatom assemblages in the Baltic Sea coastal zone: A millennial perspective with a case study from Gamlebyviken, Swedish east coast
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2024 (English)In: Quaternary Science Reviews, ISSN 0277-3791, E-ISSN 1873-457X, Vol. 346, article id 109058Article in journal (Refereed) Published
Abstract [en]

This study aims to investigate and disentangle the impact of land use and climate variability on the Baltic Sea coastal zone from a millennial perspective. To assess the environmental status of the coastal zone we make use of siliceous microfossils (mainly diatoms), stable nitrogen and carbon isotopes, organic carbon accumulation rates, and lithological changes analyzed in a sediment core collected in Gamlebyviken, Swedish east coast, dated to cover the last 3000 years. Changes in land use and vegetation cover are modelled using pollen stratigraphical data to obtain the percentage coverage of coniferous woodland (Pinus and Picea), deciduous woodland, wetland (Cyperaceae), grassland (including Juniperus) and cropland (cereals) while changes in climatic conditions are assessed through well-documented climatic periods that have occurred in the Baltic Sea region. The reconstructed regional vegetation cover shows that already 3000 years ago, humans used the landscape for both animal husbandry (grasslands) and farming (cropland), but the impact on the Baltic coastal waters was minor. The diatom accumulation rates were quite high (similar to 3100-2600 cal yr BP) containing taxa indicative of high nutrient conditions/upwelling, and stable carbon isotopes show that the carbon was produced in the basin but did not result in elevated organic carbon accumulation rates. A gradual change to less marine conditions in Gamlebyviken from about 2500 to 1400 cal yr BP can be attributed to the ongoing land uplift which resulted in a more enclosed embayment with only a narrow inlet area today. The Medieval Climate Anomaly (1000-700 cal yr BP/950-1250 CE) is a time where extensive eutrophication is registered in the open Baltic Sea, but afforestation is recorded between 1000 and 500 cal yr BP and attributed to the expansion of spruce favored by land-use reorganization with a transition from a one-course rotation system to the three-course rotation system fully established in southern Sweden in the 13th century, and only minor environmental change is recorded in the coastal zone. The Little Ice Age is documented in our data between 400 and 250 cal yr BP/1550-1700 CE as a decrease in regional cropland (cereals) cover, possibly indicating years of poor crop harvest, and changes in the Baltic coastal zone are evidenced as low carbon and diatom accumulation rates, increase in benthic diatom taxa (low turbidity), and high abundance in diatom taxa associated with sea ice indicating a cold climate. The most significant changes occurred from about 100 cal yr BP/1850 CE up to present, with a maximum regional cover of grassland and cropland (ca. 35%) at the expense of deciduous woodland, and major changes indicative of a highly eutrophic environment recorded in the coastal zone. Organic carbon accumulation rates peaked in 1968 CE at approximately 134 g C m(2) yr(-1) before subsequently declining to present-day values of 53 g C m(2) yr(-1), mirroring a similar trend observed in diatom accumulation rates. The high organic carbon accumulation rate shows that deep unvegetated accumulation bottoms in the coastal Baltic Sea serve as carbon sinks and are worth exploring for their potential in mitigating climate change. Variation partitioning shows that 26% of the variance in the diatom assemblages is associated with land use changes. The variables grassland, cropland, and stable nitrogen isotopes are accordingly strong predictors of environmental change in the Baltic coastal zone as reflected by the diatom assemblages.

Place, publisher, year, edition, pages
Elsevier, 2024
Keywords
Late Holocene, Micropaleontology, Diatoms, Stable isotopes, Organic carbon accumulation rate, Pollen, REVEALS model, LOVE model, Vegetation history, Eutrophication, Bronze Age
National Category
Environmental Sciences Archaeology Geology
Research subject
Baltic and East European studies
Identifiers
urn:nbn:se:sh:diva-55812 (URN)10.1016/j.quascirev.2024.109058 (DOI)001361731100001 ()2-s2.0-85209237673 (Scopus ID)
Funder
The Foundation for Baltic and East European Studies, 55/2017The Foundation for Baltic and East European Studies, 21-PD2-0002
Available from: 2024-12-09 Created: 2024-12-09 Last updated: 2025-10-07Bibliographically approved
Katrantsiotis, C., Dahl, M., Palm, V., Rönnby, J., Andrén, T. & Andrén, E. (2023). Holocene relative sea level changes in the Vastervik-Gamlebyviken region on the southeast coast of Sweden, southern Baltic Sea. Boreas, 52(2), 206-222
Open this publication in new window or tab >>Holocene relative sea level changes in the Vastervik-Gamlebyviken region on the southeast coast of Sweden, southern Baltic Sea
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2023 (English)In: Boreas, ISSN 0300-9483, E-ISSN 1502-3885, Vol. 52, no 2, p. 206-222Article in journal (Refereed) Published
Abstract [en]

We reconstruct the Holocene shore displacement of the Vastervik-Gamlebyviken area on the southeast coast of Sweden, characterised by a maritime cultural landscape and archaeological significance since the Mesolithic. Sediment cores were retrieved from four lake basins that have been raised above sea level due to the postglacial land uplift and eustatic sea level changes after the melting of the Fennoscandian Ice Sheet. The cores were radiocarbon dated and analysed for loss on ignition and diatoms. The isolation thresholds of the basins were determined using LiDAR data. The results provide evidence for the initiation of the first Littorina Sea transgression in this area at 8.5 thousand calibrated years before present (cal. ka BP). A relative sea level rise by similar to 7 m a.s.l. is recorded between 8.0 and 7.5 cal. ka BP with a highstand at similar to 22 m a.s.l. between 7.5 and 6.2 cal. ka BP. These phases coincide with the second and third Littorina Sea transgressions, respectively, in the Blekinge area, southern Sweden and are consistent with the final deglaciation of North America. After 6.2 cal. ka BP, the relative sea level dropped below 22 m a.s.l., and remained at similar to 20 m a.s.l. until 4.6 cal. ka BP coinciding with the fourth Littorina Sea transgression in Blekinge. From 4.6 to 4.2 cal. ka BP, the shore displacement shows a regression rate of 10 mm a(-1) followed by a slowdown with a mean value of 4.6 mm a(-1) until 1.6 cal. ka BP, when the relative sea level dropped below 3.3 m a.s.l. The Middle to Late Holocene highstand and other periods of minor sea level transgressions and/or higher salinity between 6.2 and 1.7 cal. ka BP are attributed to a combination of warmer climate and higher inflow of saline waters in the southern Baltic Sea due to stronger westerlies, caused by variations in the North Atlantic atmospheric patterns.

Place, publisher, year, edition, pages
John Wiley & Sons, 2023
National Category
Archaeology Earth and Related Environmental Sciences
Research subject
Baltic and East European studies
Identifiers
urn:nbn:se:sh:diva-50107 (URN)10.1111/bor.12605 (DOI)000864284500001 ()2-s2.0-85139201509 (Scopus ID)
Funder
The Foundation for Baltic and East European Studies, 55/2017The Foundation for Baltic and East European Studies, 21-PD2-0002
Available from: 2022-10-21 Created: 2022-10-21 Last updated: 2025-10-07Bibliographically approved
Co-InvestigatorAndrén, Thomas
Co-InvestigatorRönnby, Johan
Principal InvestigatorAndrén, Elinor
Co-InvestigatorHolmlund, Joakim
Co-InvestigatorVinogradova, Olena
Co-InvestigatorPalm, Veronica
Coordinating organisation
Södertörn University
Funder
Period
2018-01-01 - 2020-12-31
Keywords [sv]
Östersjö- och Östeuropaforskning
Keywords [en]
Baltic and East European studies
National Category
GeologyArchaeology
Identifiers
DiVA, id: project:1691Project, id: 55/2017_OSS

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