996 resultados para Carlander-Reutenfelt, Torsten


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Invokaatio: I.N.J.

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Variantti A.

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Variantti B.

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Variantti A.

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Variantti A.

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Invokaatio: I.N.J.

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Dedikaatio: Andreas Mathesius, Bartholdus Vaehl, Ericus Cajanus, Birgerus Bratt, Isaacus Wasbohm, Gabriel Werander.

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Die Dissertation beschäftigt sich mit der komparativen Analyse der deutschen und französischen Innovationssysteme. Ausgehend von der evolutorisch-orientierten Innovationsforschung und der Institutionenökonomik werden die Akteure und deren Interaktionen in den jeweiligen institutionellen Rahmenbedingungen in beiden Innovationssystemen untersucht. Die Arbeit beleuchtet dieses Thema aus verschiedenen Perspektiven und zeichnet sich durch ein breites Methodenspektrum aus. Die Grenzen und Defizite des linearen Innovationsmodells werden aufgezeigt und für ein systemisches, interaktives Verständnis der Entstehung von Innovationen plädiert. Dieses interaktive Modell wird auf die Ebene des nationalen Innovationssystems transponiert, und damit wird der konzeptionelle Rahmen für die weitere Analyse geschaffen. Für die Gestaltung der Innovationssysteme wird die Bedeutung der institutionellen Konfigurationen betont, die von den Innovationsakteuren gewählt werden. Hierfür werden jeweils die Fallbeispiele Frankreich und Deutschland ausführlich untersucht und nach der gleichen Systematik empirisch betrachtet und schließlich werden beide Innovationssysteme systematisch verglichen. Dabei wird auch auf die Pfadabhängigkeiten in beiden Innovationssystemen eingegangen, sowie auf die Notwendigkeit der Berücksichtigung kultureller und historischer Eigenarten der verglichenen Länder. Expertengespräche mit deutschen und französischen Experten, ergänzen die zuvor erzielten Ergebnisse der Arbeit: Durch eine interdisziplinäre Herangehensweise werden politikwissenschaftliche und ökonomische Ansätze miteinander verknüpft, sowie kulturelle Eigenarten berücksichtigt, die Innovationssysteme beeinflussen können. In seinen Schlussfolgerungen kommt der Verfasser zu dem Ergebnis, dass „lernende Politik“ über institutionellen Wandel und Wissenstransfer ein wichtiger Faktor bei der Gestaltung hybrider Institutionen und der staatlichen Innovationspolitik von der „Missions- zur Diffusionsorientierung“ hin ist. Die Betrachtung zweier nationaler Systeme sowie deren Einbindung in internationale Kontexte führt zum Ergebnis, dass die Steuerung der Schnittstelle „Forschung-Industrie“, insbesondere die Rolle der Universitäten und Forschungseinrichtungen in heterogenen Kooperationspartnerschaften, über neue forschungs-und technologiepolitische Instrumente über transnationales Lernen von Institutionen geschehen kann. Dieser institutionelle Wandel wird als Lernprozess betrachtet, der im Übergang zur wissensbasierten Wirtschaft als “comparative institutional advantage“ ein wichtiger Faktor bei der Gestaltung der Institutionen und der staatlichen Technologiepolitik ist.

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An important feature of maintaining the agricultural stability in millennia-old mountain oases of northern Oman is the temporary abandonment of terraces. To analyse the effects of a fallow period on soil microbial performance, i.e. microbial activity and microbial biomass, samples of eight terrace soils abandoned for different periods were collected in situ, assigned to four fallow age classes and incubated for 30 days in the laboratory after rewetting. The younger fallow age classes of 1 and 5 years were based on the records of the farmers’ recollections, the two older fallow age classes of 10–20 and 25–60 years according to the increase in the D -to- L ratio of valine and leucine enantiomers. The increase in these two ratios was in agreement with that of the D -to- L ratio of lysine. The strongest relationship was observed between the increase in the D -to- L ratio of lysine and the decrease in soil microbial biomass C. However, the most stringent coherence between the increase in fallow age and soil properties was revealed by the decreases in cumulative respiration and net N mineralisation rates with decreasing availability of substrate to soil microorganisms. During the 30-day incubation following rewetting, relative changes in microbial activity (respiration and net N mineralisation) and microbial biomass (C and N)indices were similar in the eight terrace soils on a fallow age-class-specific level, indicating that the same basic processes occurred in all of the sandy terrace soils investigated.

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Our knowledge of the agricultural sustainability of the millennia-old mountain oases in northern Oman is restricted in particular with respect to C and N turnover. A laboratory study was conducted (1) to analyse the effects of rewetting and drying on soil microorganisms after adding different manures, (2) to investigate the effects of mulching or incorporating of these manures, and (3) to evaluate the relationships between C and N mineralisation rates and manure quality indices. During the first 9-day rewetting and drying cycle, i.e. the “mulch” period, the content of extractable organic C decreased by approximately 40% in all four treatments. During the second 9-day rewetting and drying cycle, i.e. the “incorporation” period, this fraction decreased insignificantly in almost all treatments. The control and mature manure treatments form the first pair with a low percentage of total organic C evolved as CO2 (0.3% in 18 days) and a considerable percentage of total N mineralised as NH4 and NO3 (1% in 18 days), the fresh and immature manure treatments form the second pair with a higher amount of total organic C evolved as CO2 (0.5% in 18 days) and no net N mineralisation. During the first 9-day rewetting and drying cycle, the contents of microbial biomass C and biomass N increased by approximately 150% in all four treatments. During the second 9-day rewetting and drying cycle, no further increase was observed in the control and immature manure treatments and a roughly 30% increase in the other two treatments.

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For millennia oasis agriculture has been the backbone of rural livelihood in the desertic Sultanate of Oman. However, little is known about the functioning of these oasis systems, in particular with respect to the C turnover. The objective was to determine the effects of crop, i.e. alfalfa, wheat and bare fallow on the CO2 evolution rate during an irrigation cycle in relation to changes in soil water content and soil temperature. The gravimetric soil water content decreased from initially 24% to approximately 16% within 7 days after irrigation. The mean CO2 evolution rates increased significantly in the order fallow (27.4 mg C m^−2 h^−1) < wheat (45.5 mg C m^−2 h^−1) < alfalfa (97.5 mg C m^−2 h^−1). It can be calculated from these data that the CO2 evolution rate of the alfalfa root system was nearly four times higher than the corresponding rate in the wheat root system. The decline in CO2 evolution rate, especially during the first 4 days after irrigation, was significantly related to the decline in the gravimetric water content, with r = 0.70. CO2 evolution rate and soil temperature at 5 cm depth were negatively correlated (r = -0.56,n = 261) due to increasing soil temperature with decreasing gravimetric water content.

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