Holocene Varved Lake Sediments as Records of Palaeoenvironmental Change and Geomagnetic Palaeosecular Variation in Eastern Finland

dc.contributorMatemaattis-luonnontieteellinen tiedekunta / Faculty of Mathematics and Natural Sciences, Department of Geology; Section of Quarternary Geology-
dc.contributor.authorHaltia-Hovi, Eeva
dc.contributor.departmentfi=Maantieteen ja geologian laitos|en=Department of Geography and Geology|
dc.contributor.facultyfi=Matemaattis-luonnontieteellinen tiedekunta|en=Faculty of Mathematics and Natural Sciences|-
dc.contributor.studysubjectfi=Maaperägeologia|en=Quaternary Geology|
dc.date.accessioned2010-05-25T07:43:33Z
dc.date.available2010-05-25T07:43:33Z
dc.date.issued2010-06-11
dc.description.abstractThis dissertation discusses Holocene palaeoenvironmental and palaeomagnetic secular variation (PSV) records reconstructed from sediments preserved in Lake Lehmilampi (63º37´N, 29º06´E) and Lake Kortejärvi (63º37´N, 28º56´E) in eastern Finland. Several piston and freeze cores were obtained from both lakes for varve and magnetic analyses. Sediment samples were impregnated in low-viscosity epoxy and physical parameters of varves, including varve thickness and relative grey-scale values, were recorded using x-ray densitometry combined with semiautomatic digital image analysis. On average, varve records of Lehmilampi and Kortejärvi cover 5122 and 3902 years, respectively. Past solar activity, as estimated by residual <sub>14</sub>C data, compares favourably with varve thicknesses from Lehmilampi during the last 2000 years. This indicates the potential of clastic-organic varves to record sensitively climatic variations. Bulk magnetic parameters, including magnetic susceptibility together with natural, anhysteretic and isothermal remanent magnetizations, were measured to describe mineral magnetic properties and geomagnetic palaeosecular variation recorded in the sediments. Main stages in the development of the investigated lakes are reflected in the variations in the mineral magnetic records, sediment lithology and composition. Similar variations in magnetic parameters and sediment organic matter suggest contribution of bacterial magnetite in the magnetic assemblages of Lehmilampi. Inclination and relative declination records yielded largely consistent results, attesting to the great potential of these sediments to preserve directional palaeosecular variation in high resolution. The PSV data from Lehmilampi and Kortejärvi were stacked into North Karelian PSV stack, which may be used for dating homogenous lake sediments in the same regional context. Reconstructed millennial variations in relative palaeointensity results are approximately in agreement with those seen in the absolute palaeointensity data from Europe. Centennial variations in the relative palaeointensity, however, are influenced by environmental changes. Caution is recommended when using varved lake sediments in reconstructing relative palaeointensity.en
dc.description.accessibilityfeatureei tietoa saavutettavuudesta
dc.description.notificationSiirretty Doriasta
dc.format.contentfulltext
dc.identifierISBN 978-951-29-4272- 5en
dc.identifier.olddbid65082
dc.identifier.oldhandle10024/61856
dc.identifier.urihttps://www.utupub.fi/handle/11111/28231
dc.identifier.urnURN:ISBN:978-951-29-4272- 5
dc.language.isoengeng
dc.publisherfi=Turun yliopisto|en=University of Turku|
dc.publisherAnnales Universitatis Turkuensis A II 251en
dc.relation.ispartofseriesTurun yliopiston julkaisuja. Sarja AII, Biologica - Geographica – Geologica
dc.relation.issn2343-3183
dc.relation.numberinseries251-
dc.source.identifierhttps://www.utupub.fi/handle/10024/61856
dc.titleHolocene Varved Lake Sediments as Records of Palaeoenvironmental Change and Geomagnetic Palaeosecular Variation in Eastern Finlanden
dc.type.ontasotfi=Artikkeliväitöskirja|en=Doctoral dissertation (article-based)|en

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