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51.
K-Ar age determinations along with optical investigations were used to examine whether glauconite from the Upper Marine Molasse (OMM) is of authigenic, allogenic or transformed origin. For this purpose 16 glauconite samples from 14 different localities were investigated from the Burdigalian Muschelsandstein collected along a traverse from Lake Constance to west of Geneva.Optical observations on washed grain concentrates reveal the presence of different alteration products of biotite, confirming earlier studies. Moreover, thin-section preparations of sample aliquots showed that the glauconite grains contain biotite-relics, which might account for the elevated absolute ages.The optical evidence is confirmed by individual mineral fractions, which show chlorite with biotite-»nucleii«, chlorite-lamellae, and »layered«-glauconites. All these observations point to glauconite genesis by transformation of biotite. The complete transformation from biotite via chlorite to glauconite apparently results in a chemically more stable state.The K-content of the samples varies from 5.6 to 7.0% K2O, indicating mature but not highly evolved glauconite. 19 apparent K-Ar dates range from 17.7 to 34.9 Ma. In comparison with the biostratigraphy and the estimated Burdigalian age of about 18 Ma nearly all dates are too high. These strongly scattered dates are thus stratigraphically meaningless and seem to exclude an authigenic formation of these glauconites from faecal pellets. Furthermore, geologic arguments exclude an allogenic (= detrital) origin.Glauconite genesis in the Upper Marine Molasse must therefore be distinguished from both authigenic and allogenic formation mechanisms. A new term »meta-allogenic« is therefore used to describe glauconite growth by transformation of allogenic mica.
Zusammenfassung Um zu prüfen, ob Glaukonite aus der Oberen Meeresmolasse (OMM) authigen, allothigen oder durch Umwandlung aus anderen Mineralien entstanden sind, wurden sie — nebst mineraloptischen und röntgenographischen Untersuchungen — mit der K-Ar-Methode datiert. Aus 14 verschiedenen Lokalitäten zwischen Bodensee und einigen Kilometern westlich von Genf wurden 16 Glaukonit-Proben aus dem burdigalen Muschelsandstein entnommen.Sedimentpetrologische Studien an Körner-Konzentraten offenbarten verschiedene Umwandlungsprodukte von Biotit. Zudem zeigten Aliquots von Dünnschliff-Präparaten, daß einzelne Körner unterschiedlich große Relikte von Biotit enthalten, die die zu hohen Alterswerte verursachen können.Die verschiedenen Mineralfraktionen bestätigen den Charakter von Übergangsstadien: Chlorit mit Biotit-Kernen, Chloritlamellen und »Schicht«-Glaukonit. Alle diese Beobachtungen deuten auf eine Glaukonitgenese aus der Umwandlung von Biotit. Die vollständige Umwandlung von Biotit über Chlorit zu Glaukonit scheint mit dem End-produkt einen chemisch stabileren Zustand anzustreben.Der K2O-Gehalt aller Proben variert von 5.6 bis 7.0%. Dies weist auf »reifen«, aber nicht hochentwickelten Glaukonit hin. Die 19 K-Ar-»Alter« liegen zwischen 17.7 und 34.9 Ma. Im Vergleich mit der Biostratigraphie und dem geschätzten burdigalen Alter von ca. 18 Ma, sind diese Daten zu hoch und daher stratigraphisch bedeutungslos. Eine authigene Bildung von Glaukonit aus Kotpillen (faecal pellets) muß somit ausgeschlossen werden. Außerdem kommt aus geologischen Gründen eine detritische (allothigene) Herkunft ebenfalls nicht in Betracht.Für die Glaukonit-Genese in der Oberen Meeresmolasse muß daher ein anderer Bildungsprozess verantwortlich sein. Um die Umwandlung von eingeschwemmtem (= allothigenem) Biotit zu Glaukonit zu beschreiben, wurde der neue Term »meta-allothigen« eingeführt.

Résumé Afin de rechercher si les glauconites de la OMM (= molasse marine supérieure) sont authigènes, allothigènes ou proviennent de la transformation d'autres minéraux, on les a datées par la méthode K-Ar, conjointement à une étude optique et röntgenographique. 14 localités, situées depuis de lac de Constance jusqu'à quelques kilomètres à l'ouest de Genève, ont fourni 16 échantillons de glauconite du Muschelsandstein burdigalien.L'étude optique des grains, effectuée sur des concentrés, a révélé divers produits de transformation de la biotite. En outre, les examens en coupes minces ont montré, dans les grains de glauconite, des restes de biotite d'importance variable. Ces restes de biotite peuvent être responsables de valeurs trop élevées obtenues dans les mesures d'âge.L'examen des diverses fractions minérales permet de préciser les stades de transformation: chlorite avec noyaux de biotite, lamelles de chlorite et glauconite »stratifiées«. Toutes ces observations indiquent une genèse de la glauconite par transformation de la biotite. La transformation complète de la biotite en chlorite puis en glauconite semble ainsi correspondre à un état chimique plus stable.La teneur en K2O de tous les échantillons varie entre 5,6 et 7,0%, indiquant une glauconite »mature«, mais pas très évoluée. Les 19 »âges« K-Ar sont compris entre 17,7 et 34,9 Ma. Comparés à la biostratigraphie et à l'âge burdigalien, estimé à environ 18 Ma, ces résultats sont nettement trop élevés et ne présentent donc aucune valeur stratigraphique. Il faut ainsi exclure une formation authigène de la glauconite à partir de pelotes fécales. De plus, une origine détritique (= allothigène) ne peut être envisagée pour des raisons géologiques.En conséquence, c'est bien un processus différent qui est responsable de la genése de la glauconite dans la OMM. Le terme nouveau »méta-allogénique« est proposé pour indiquer la transformation de la biotite détritique en glauconite.

- , , , (OMM) , , /. 14- 16 . - . , . : , « ». , . , , . K2O 5,6 7,0%. / 17,7 34,9 . , 18 . (faecal pellets) . , ., . , «-».
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Interannual to multidecadal modes in ocean/atmosphere dynamics in the North Atlantic region have been identified using sea salt aerosol proxy records from northern Greenland ice cores over the last 1,000 years. Sea salt concentrations show a consistent relationship with anomalies in the meridional pressure gradient over the North Atlantic region over all considered time scales. These pressure anomalies are connected to shifts in storm tracks, leading to lower pressure and higher storm activity, hence, higher sea salt export over the Greenland ice sheet. Two modes of long-term variability with a period of 10.4 years and 62 years could be identified. The latter is connected to long-term changes in sea surface temperature (SST) as documented by a high correlation of North Atlantic SST with our sea salt record over the last 150 years. Long-term reconstruction of these modes shows that the 10.4-year cycle has been a phenomenon persistent over the last millennium while the 62-year cycle has been mainly active after 1700. Accordingly, the longer-term persistence of this multidecadal variability in sea salt points also to significant variations in SST over the last 300 years.  相似文献   
55.
Locations of the Eger Rift, Cheb Basin, Quaternary volcanoes, crustal earthquake swarms and exhalation centers of CO2 and 3He of mantle origin correlate with the tectonic fabric of the mantle lithosphere modelled from seismic anisotropy. We suggest that positions of the seismic and volcanic phenomena, as well as of the Cenozoic sedimentary basins, correlate with a “triple junction” of three mantle lithospheres distinguished by different orientations of their tectonic fabric consistent within each unit. The three mantle domains most probably belong to the originally separated microcontinents – the Saxothuringian, Teplá-Barrandian and Moldanubian – assembled during the Variscan orogeny. Cenozoic extension reactivated the junction and locally thinned the crust and mantle lithosphere. The rigid part of the crust, characterized by the presence of earthquake foci, decoupled near the junction from the mantle probably during the Variscan. The boundaries (transitions) of three mantle domains provided open pathways for Quaternary volcanism and the ascent of 3He- and CO2-rich fluids released from the asthenosphere. The deepest earthquakes, interpreted as an upper limit of the brittle–ductile transition in the crust, are shallower above the junction of the mantle blocks (at about 12 km) than above the more stable Saxothuringian mantle lithosphere (at about 20 km), probably due to a higher heat flow and presence of fluids.  相似文献   
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Effects of global warming on animal distribution and performance become visible in many marine ecosystems. The present study was designed to develop a concept for a cause and effect understanding with respect to temperature changes and to explain ecological findings based on physiological processes. The concept is based on a wide comparison of invertebrate and fish species with a special focus on recent data obtained in two model species of fish. These fish species are both characterized by northern and southern distribution limits in the North Atlantic: eelpout (Zoarces viviparus), as a typical non-migrating inhabitant of the coastal zone and the cod (Gadus morhua), as a typical inhabitant of the continental shelf with a high importance for fisheries.Mathematical modelling demonstrates a clear significant correlation between climate induced temperature fluctuations and the recruitment of cod stocks. Growth performance in cod is optimal at temperatures close to 10°C, regardless of the population investigated in a latitudinal cline. However, temperature specific growth rates decrease at higher latitudes. Also, fecundity is less in White Sea than in North and Baltic Sea cod or eelpout populations. These findings suggest that a cold-induced shift in energy budget occurs which is unfavorable for growth performance and fecundity. Thermal tolerance limits shift depending on latitude and are characterized by oxygen limitation at both low or high temperatures. Oxygen supply to tissues is optimized at low temperature by a shift in hemoglobin isoforms and oxygen binding properties to lower affinities and higher unloading potential. Protective stimulation of heat shock protein synthesis was not observed.According to a recent model of thermal tolerance the downward shift of tolerance limits during cold adaptation is associated with rising mitochondrial densities and, thus, aerobic capacity and performance in the cold, especially in eurythermal species. At the same time the costs of mitochondrial maintenance reflected by mitochondrial proton leakage should rise leaving a lower energy fraction for growth and reproduction. The preliminary conclusion can be drawn that warming will cause a northern shift of distribution limits for both species with a rise in growth performance and fecundity larger than expected from the Q10 effect in the north and lower growth or even extinction of the species in the south. Such a shift may heavily affect fishing activities in the North Sea.  相似文献   
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The mid Hudson River is a heterotrophic system where allochthonous inputs apparently fuel the largest proportion of secondary production and ecosystem metabolism. We have analyzed a 6-yr dataset collected quarterly at six stations spanning a 150-km reach to assess variability at inter- and intra-annual time scales and regional spatial scales. The major components of the lower food web: bacterial biomass, detrital particulate organic carbon (POC), and dissolved organic carbon (DOC), show surprisingly discordant patterns in temporal and spatial variability. Bacterial abundance shows significant variability at all three scales, but the interannual variability is by far the greatest. DOC concentrations showed greatest variability among years, with intra-annual and spatial variability roughly equal. Freshwater flow is commonly considered a major driving force in river-estuarine variability but simple discharge was not a strong predictor of any component of suspended matter or DOC. For organisms in the Hudson River food web, these multiple scales of variability indicate highly unpredictable food resources in time and space, and these fluctuations may contribute to the variability in higher trophic levels.  相似文献   
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Rice is the major staple food of Asia, and an important source of employment and income in rural areas, particularly in low-income countries. Research has contributed significantly in achieving food security by increasing the yield potential of rice in irrigated systems, reducing the crop maturity period and achieving yield stability by developing resistance against major insects and diseases in the modern high-yielding varieties. Poverty is, however, still extensive in fragile rainfed rice ecosystems where rice yield has remained low, as scientists have yet to develop high-yielding varieties resistant to abiotic stresses and problem soils. Rice production needs to be increased by another 70% over the next 30 years to meet growing food needs. This has to be achieved with less land, less water, and less labor to accommodate the demand for these inputs from the expanding nonagricultural sectors. The challenge to the rice research community is to make further shifts in yield potential of rice for the irrigated systems, to close the yield gaps in the rainfed systems through developing resistance of high yielding varieties to abiotic stresses, and greater understanding of the interactions between genotypes and environment, developing durable resistance against pests and diseases to reduce farmers' dependence on harmful agrochemicals, and to increase efficiency in the use of water, labor and fertilizers. As further intensification of rice cultivation is inevitable, scientists must understand the negative environmental side-effects of increasing rice productivity, to develop appropriate mitigation options.  相似文献   
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