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  • Articles  (1)
  • OceanRep  (2)
  • 1980-1984  (3)
  • 1
    ISSN: 0003-3146
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology , Physics
    Description / Table of Contents: Isotactic polypropylen films were highly stretched and annealed during 20 s under stretching tension at temperatures up to 206°C at maximum. The melting behaviour of these films was investigated by using a differential scanning calorimeter (DSC  -  1 B). Two melting peaks at about 165 and 174°C respectively, were observed. The heat of fusion of the former peak predominates, if the film temperature during annealing exceeds 190°C. Its position is independent of the stretching ratio. This melting peak is assigned to crystalline domains, which show a long identity period of 140 to 160 Å and corresponds to an amorphous orientation factor of 0 to -0.2. The higher melting peak appears during stretching. This peak is assigned to crystalline domains, which show a long identity period longer than 200 Å and corresponds to an amorphous orientation factor of 0.4 to 0.5. This fraction refers obviously to the paracrystalline building blocks of the microfibrils, which are transformed at a film temperature higher than 190°C to a greater part into smaller lamellaforming paracrystallites. The transformation of the fibrillar into a lamellar texture was visualised by transmission electronmicroscopy.
    Notes: Isotaktische Polypropylen-Folien wurden hoch verstreckt und unter Streckspannung bei Temperaturen bis maximal 206°C während 20 s getempert. Das Schmelzverhalten dieser Folien wurde mittels DSC verfolgt. Es wurden zwei Schmelzpeaks registriert, die bei ca. 165°C und 174°C auftreten. Die Schmelzenthalpie des erstgenannten Peaks überwiegt, wenn die Folientemperatur beim Tempern auf über 190°C angehoben wird. Seine Lage ist unabhängig vom Streckverhältnis. Dieser Schmelzpeak konnte einer kristallinen Phase mit einer Langperiode von 140 bis 160 Å bei nichtorientierten, zwischenkristallinen Bereichen zugeordnet werden. Der 2. Schmelzpeak entsteht beim Verstrecken. Seine Temperatur steigt mit zunehmendem Streckverhältnis an. Er wurde auf eine kristalline Phase mit einer Langperiode von über 200 Å bei einer mittleren amorphen Orientierungsfunktion der zwischenkristallinen Regionen von 0,4-0,5 zurückgeführt. Bei dieser Fraktion handelt es sich offenbar um die parakristallinen Bausteine der Mikrofibrillen, welche sich bei Folientemperaturen von über 190°C zum größeren Teil in kleinere Lamellen-bildende Parakristalle umwandeln. Der übergang der Fibrillen- in eine Lamellentextur wurde elektronenmikroskopisch sichtbar gemacht.
    Additional Material: 15 Ill.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2022-05-25
    Description: Both Podon leuckarti and Evadne nordmanni play a predominant role in the plankton community of Kiel Fjord in summer. Increase and decrease of the populations were recorded through short-term sampling from May to the beginning of July. Abundance in relation to temperature and salinity, body size, number of embryos per female and the occurrence of permanent eggs were investigated. Podon leuckarti reached its peak at the end of May, two weeks earlier than Evadne normanni; the maximum abundance was 6500 individuals · m-3 and 8900 individuals · m-3 respectively. The rapid increase of both populations is characterized by an exponential growth phase. The estimated doubling time ranged from 0.5 to 4.3 days. With increasing temperature, body size and number of embryos per female decreased. An inspection of the stomach content showed that both species apparently had fed mainly on phytoplankton.
    Type: Article , NonPeerReviewed
    Format: text
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  • 3
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    Unknown
    Institut für Meereskunde
    Publication Date: 2022-05-24
    Description: The main studies on phytoplankton ecology carried out in Kiel Bight during the last decades are briefly reviewed. Special emphasis is laid on the hydrographical structure of this transitional area between the Baltic Sea and the North Sea, as it strongly affects the seasonal cycle of phytoplankton standing stock and species succession through vertical stratification and advection processes. Both these hydrographical features prevail during the growth period of phytoplankton and are responsible for large variations in population density and nutrient supply. The seasonal species succession is also influenced by advection. The annual primary production figure of about 150 g C·m-2 approaches the upper limit of values recorded for other parts of the western and southern Baltic. Total irradiation appears to exert the strongest influence on the seasonal cycle of primary production as long as water temperatures are low, giving way in summer to temperature as the determining factor for the production rate.
    Type: Article , NonPeerReviewed
    Format: text
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