40 resultados para 020108 Planetary Science (excl. Extraterrestrial Geology)


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Nisäkkäiden levinneisyyteen, niiden morfologisiin ja ekologisiin piirteisiin vaikuttavat ympäristön sekä lyhyet että pitkäkestoiset muutokset, etenkin ilmaston ja kasvillisuuden vaihtelut. Työssä tutkittiin nisäkkäiden sopeutumista ilmastonmuutoksiin Euraasiassa viimeisen 24 miljoonan vuoden aikana. Tutkimuksessa keskityttiin varsinkin viimeiseen kahteen miljoonaan vuoteen, jonka aikana ilmasto muuttui voimakkaasti ja ihmisen toiminta alkoi tulla merkittäväksi. Tämän takia on usein vaikea erottaa, kummasta em. seikasta jonkin nisäkäslajin sukupuutto tai häviäminen alueelta johtui. Aineistona käytettiin laajaa venäjänkielistä kirjallisuutta, josta löytyvät tiedot ovat kääntämättöminä jääneet aiemmin länsimaisen tutkimuksen ulkopuolelle. Työssä käytettiin myös NOW-tietokantaa, jossa on fossiilisten nisäkkäiden löytöpaikat sekä niiden iät.

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In Finland one of the most important current issues in the environmental management is the quality of surface waters. The increasing social importance of lakes and water systems has generated wide-ranging interest in lake restoration and management, concerning especially lakes suffering from eutrophication, but also from other environmental impacts. Most of the factors deteriorating the water quality in Finnish lakes are connected to human activities. Especially since the 1940's, the intensified farming practices and conduction of sewage waters from scattered settlements, cottages and industry have affected the lakes, which simultaneously have developed in to recreational areas for a growing number of people. Therefore, this study was focused on small lakes, which are human impacted, located close to settlement areas and have a significant value for local population. The aim of this thesis was to obtain information from lake sediment records for on-going lake restoration activities and to prove that a well planned, properly focused lake sediment study is an essential part of the work related to evaluation, target consideration and restoration of Finnish lakes. Altogether 11 lakes were studied. The study of Lake Kaljasjärvi was related to the gradual eutrophication of the lake. In lakes Ormajärvi, Suolijärvi, Lehee, Pyhäjärvi and Iso-Roine the main focus was on sediment mapping, as well as on the long term changes of the sedimentation, which were compared to Lake Pääjärvi. In Lake Hormajärvi the role of different kind of sedimentation environments in the eutrophication development of the lake's two basins were compared. Lake Orijärvi has not been eutrophied, but the ore exploitation and related acid main drainage from the catchment area have influenced the lake drastically and the changes caused by metal load were investigated. The twin lakes Etujärvi and Takajärvi are slightly eutrophied, but also suffer problems associated with the erosion of the substantial peat accumulations covering the fringe areas of the lakes. These peat accumulations are related to Holocene water level changes, which were investigated. The methods used were chosen case-specifically for each lake. In general, acoustic soundings of the lakes, detailed description of the nature of the sediment and determinations of the physical properties of the sediment, such as water content, loss on ignition and magnetic susceptibility were used, as was grain size analysis. A wide set of chemical analyses was also used. Diatom and chrysophycean cyst analyses were applied, and the diatom inferred total phosphorus content was reconstructed. The results of these studies prove, that the ideal lake sediment study, as a part of a lake management project, should be two-phased. In the first phase, thoroughgoing mapping of sedimentation patterns should be carried out by soundings and adequate corings. The actual sampling, based on the preliminary results, must include at least one long core from the main sedimentation basin for the determining the natural background state of the lake. The recent, artificially impacted development of the lake can then be determined by short-core and surface sediment studies. The sampling must be focused on the basis of the sediment mapping again, and it should represent all different sedimentation environments and bottom dynamic zones, considering the inlets and outlets, as well as the effects of possible point loaders of the lake. In practice, the budget of the lake management projects of is usually limited and only the most essential work and analyses can be carried out. The set of chemical and biological analyses and dating methods must therefore been thoroughly considered and adapted to the specific management problem. The results show also, that information obtained from a properly performed sediment study enhances the planning of the restoration, makes possible to define the target of the remediation activities and improves the cost-efficiency of the project.

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This thesis discusses the prehistoric human disturbance during the Holocene by means of case studies using detailed high-resolution pollen analysis from lake sediment. The four lakes studied are situated between 61o 40' and 61o 50' latitudes in the Finnish Karelian inland area and vary between 2.4 and 28.8 ha in size. The existence of Early Metal Age population was one important question. Another study question concerned the development of grazing, and the relationship between slash-and-burn cultivation and permanent field cultivation. The results were presented as pollen percentages and pollen concentrations (grains cm 3). Accumulation values (grains cm 2 yr 1) were calculated for Lake Nautajärvi and Lake Orijärvi sediment, where the sediment accumulation rate was precisely determined. Sediment properties were determined using loss-on-ignition (LOI) and magnetic susceptibility (k). Dating methods used include both conventional and AMS 14C determinations, paleomagnetic dating and varve choronology. The isolation of Lake Kirjavalampi on the northern shore of Lake Ladoga took place ca. 1460 1300 BC. The long sediment cores from Finland, Lake Kirkkolampi and Lake Orijärvi in southeastern Finland and Lake Nautajärvi in south central Finland all extended back to the Early Holocene and were isolated from the Baltic basin ca. 9600 BC, 8600 BC and 7675 BC, respectively. In the long sediment cores, the expansion of Alnus was visible between 7200 - 6840 BC. The spread of Tilia was dated in Lake Kirkkolampi to 6600 BC, in Lake Orijärvi to 5000 BC and at Lake Nautajärvi to 4600 BC. Picea is present locally in Lake Kirkkolampi from 4340 BC, in Lake Orijärvi from 6520 BC and in Lake Nautajärvi from 3500 BC onwards. The first modifications in the pollen data, apparently connected to anthropogenic impacts, were dated to the beginning of the Early Metal Period, 1880 1600 BC. Anthropogenic activity became clear in all the study sites by the end of the Early Metal Period, between 500 BC AD 300. According to Secale pollen, slash-and-burn cultivation was practised around the eastern study lakes from AD 300 600 onwards, and at the study site in central Finland from AD 880 onwards. The overall human impact, however, remained low in the studied sites until the Late Iron Age. Increasing human activity, including an increase in fire frequency was detected from AD 800 900 onwards in the study sites in eastern Finland. In Lake Kirkkolampi, this included cultivation on permanent fields, but in Lake Orijärvi, permanent field cultivation became visible as late as AD 1220, even when the macrofossil data demonstrated the onset of cultivation on permanent fields as early as the 7th century AD. On the northern shore of Lake Ladoga, local activity became visible from ca. AD 1260 onwards and at Lake Nautajärvi, sediment the local occupation was traceable from 1420 AD onwards. The highest values of Secale pollen were recorded both in Lake Orijärvi and Lake Kirjavalampi between ca. AD 1700 1900, and could be associated with the most intensive period of slash-and-burn from AD 1750 to 1850 in eastern Finland.

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Magnetic susceptibility measurements were performed on freshly fallen Almahata Sitta meteorites. Most recovered samples are polymict ureilites. Those found in the first four months since impact, before the meteorites were exposed to rain, have a magnetic susceptibility in the narrow range of 4.92 ± 0.08 log 10-9 Am2/kg close to the range of other ureilite falls 4.95 ± 0.14 log 10-9 Am2/kg reported by Rochette et al. (2009). The Almahata Sitta samples collected one year after the fall have similar values (4.90 ± 0.06 log 10-9 Am2/kg), revealing that the effect of one-year of terrestrial weathering was not severe yet. However, our reported values are higher than derived from polymict (brecciated) ureilites 4.38 ± 0.47 log 10-9 Am2/kg (Rochette et al. 2009) containing both falls and finds confirming that these are significantly weathered. Additionally other fresh-looking meteorites of non-ureilitic compositions were collected in the Almahata Sitta strewn field. Magnetic susceptibility measurements proved to be a convenient non-destructive method for identifying non-ureilitic meteorites among those collected in the Almahata Sitta strewn field, even among fully crusted. Three such meteorites, no. 16, 25, and 41, were analyzed and their composition determined as EH6, H5 and EL6 respectively (Zolensky et al., 2010). A high scatter of magnetic susceptibility values among small (< 5 g) samples revealed high inhomogeneity within the 2008 TC3 material at scales below 1-2 cm.

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The object of this research is to study the mineralogy of the diabase dykes in Suomussalmi and the relevance of the mineralogy to tectonic events, specifically large block movements in the Archaean crust. Sharp tectonic lines separate two anomalies in the dyke swarms, shown on a geomagnetic map as positive anomalies. In one of these areas, the Toravaara anomaly, the diabases seem to contain pyroxenes as a main component. Outside the Toravaara anomaly hornblende is the main ferromagnesian mineral in diabases. The aim of this paper is to research the differences in the diabases inside and outside the anomalies and interpret the processes that formed the anomalies. The data for this sudy consist of field observations, 120 thin sections, 334 electron microprobe analyses, 19 whole-rock chemical analyses, a U-Pb age analysis and geomagnetic low-altitude aerial survey maps. The methods are interpretation of field observations, chemical analyses, microprobe analyses of single minerals and radiometric age determination, microscopic studies of the thin sections, geothermometers and geobarometers. On the basis of field observations and petrographic studies the diabases in the area are divided into pyroxene diabases, hornblende diabases and the Lohisärkkä porphyritic dyke swarm. Hornblende diabases are found in the entire study area, while the pyroxene diabases concentrate on the area of the Toravaara geomagnetic anomaly. The Lohisärkkä swarm transects the whole area as a thin line from east to west. The diabases are fairly homogenous both chemically and by mineral composition. The few exceptions are part of rarer older swarms or are significantly altered. The Lohisärkkä dyke swarm was dated as 2,21 Ga old, significantly older than the most common 1,98 Ga swarm in the area. The geothermometers applied showed that the diabases on the Toravaara anomaly were stabilized at a much higher temperature than the dykes outside the anomaly. The geobarometers showed the pyroxenes to have crystallized at varying depths. The research showed the Toravaara anomaly to have formed by a vertical block movement, and the fault on its west side to have a total lateral transfer of only a few kilometers. The formation of the second anomaly was also interpreted to be tectonic in nature. In addition, the results of the geothermobarometry uncovered necessary conditions for the study of diabase emplacement depth: the minerals for the study must be chosen by minimum crystallization depth, and a geobarometer capable of determining the magmatic temperature must be used. In addition, it would be more suitable to conduct this kind of study in an area where the dykes are more exposed.

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Tutkimus suoritettiin Lammin Tullinkankaan pohjavesialueelta. Tutkimusalueelta valittiin kaksi metsikköä, jossa toisessa pohjavesi on noin metrin syvyydellä maanpinnasta (sarja "vedellinen") ja toisessa noin kahden ja puolen metrin syvyydellä (sarja "vedetön"). Oletuksena oli, että pohjaveden pinnankorkeus vaikuttaa männyn kasvuun alueella, jossa pohjaveden pinta on lähellä maanpintaa. Sarjoja verrattiin toisiinsa sekä ilmasto- ja pohjavesitietoihin. Molemmilta alueilta otettiin yhteensä n. 20 lustonäytettä, joista muodostettiin omat ristiinajoitetut lustokronologiat. Vedellisen sarjan kronologia kattaa vuodet 1872–2008 (137 vuotta) ja vedettömän sarjan kronologia vuodet 1958–2008 (51 vuotta). Vedellisen alueen männyt korreloivat negatiivisesti touko- ja kesäkuun pohjaveden pinnankorkeuden kanssa sekä positiivisesti kesäkuun sademäärän ja helmikuun lämpötilan kanssa. Vedettömän alueen männyt korreloivat negatiivisesti toukokuun sademäärän ja marraskuun lämpötilan kanssa sekä positiivisesti maaliskuun sademäärän kanssa, mutta eivät ollenkaan pohjaveden pinnankorkeuden kanssa. Vedellisen alueen kronologiaa käytettiin monimuuttujaregressiossa selittävänä tekijänä selittämässä toukokuun pohjaveden pinnankorkeutta. Vedellisen kronologian ja toukokuun pohjaveden pinnankorkeuden välisen mallin korjattu selitysaste oli 0,37 ja korrelaatiokerroin 0,62. Ristiinvalidoidutu rekonstruktiomalli kattaa vuodet 1880– 2002. Rekonstruoidusta pinnankorkeusmallista rekonstruoitiin spektrianalyysin avulla tilastollisesti merkitsevä 23,81 a jaksollisuus.

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Tutkielma tarkastelee itäisellä Etelämantereella, läntisellä Kuningatar Maudin Maalla olevien jäätikön pinnanalaisten järvien (frozen lake) veden hydrogeokemiallisia ominaisuuksia. Keskeisin tutkimusalue on Vestfjellavuoristoketjun (73 74 °S, 13 16 °W) pohjoisimman vuoren, Basenin läheisyydessä sijaitseva jäätikön pinnanalainen järvi (Basen-järvi). Vertailevia tutkimuksia tehtiin lisäksi Plogenin ja Fossilryggenin nunatakkien läheisyydessä sekä Heimefrontfjellan vuoristoalueella. Tutkielma on Suomen Akatemian rahoittama grant # 54087 -hanke, ja siinä yhdistyvät Suomen tutkimusaseman, Aboan lähellä tehty geologinen, hydrogeologinen sekä glasiologinen tutkimus. Tutkimuksessa selvitetään Basenin jäätikön pinnanalaisen järven kemiallinen koostumus ja sen paikallinen ja ajallinen vaihtelu. Kemiallisen koostumuksen perusteella selvitetään myös ionien lähteet. Näytteenotto suoritettiin FINNARP 2003/04 Etelämanner-tutkimusretkellä. Basen -järveltä ja sen vieressä sijaitsevalta Basen -vuorelta kerättiin vesi-, suola-, kivi- ja moreeninäytteitä. Suola-, kivi- ja moreeninäytteillä selvitetään näytteissä silmillä havaittavan mineraalisaostuman koostumus. Kiinteän faasin kasvihuoneilmiö luo otolliset mahdollisuudet Basenin jäätikön pinnanalaisen järven synnylle ja kehitykselle. Basen -järven veden kemiallinen koostumus vaihtelee alueellisesti ja ajallisesti ja se on syntynyt kolmen komponentin yhteisvaikutuksesta: purovesien, nunatakilta sulavien lumien sekä sulaneen jään yhteisvaikutuksesta. Suurin vaikutus Basenin järven kemialliseen koostumukseen on kuitenkin Basenin rinteiltä virtaavilla purovesillä. Korkeimmat ionipitoisuudet havaittiin nunatakin reunan läheisyydessä. Basenin järven veden ionit ovat enimmäkseen ei-meriperäisiä. Runsain ioni on kalsium, jonka suurin lähde on jurakautisessa basaltissa esiintyvä mantelikarbonaatti. Basenin -järven vaiheista eteläisen talven aikana ei ole tietoa ja se, mitä talven aikana tapahtuu ja mikä saa veteen liuenneiden komponenttien pitoisuuden alenemaan, on vielä selvittämättä ja säilyy mahdollisena aiheena tulevaisuuden tutkimuksille.